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#5759db 1 5 #5759db 1 5 #5759db 1 5 #5759db 1 5 #5759db 1 5 #5759db 1 5 #5759db 1 5 #5759db 1 46 #b7db57 1 46 #b7db57 1 46 #b7db57 1 37 #db5766 6 37 #db5766 1 37 #db5766 1 37 #db5766 1 37 #db5766 2 64 #dbd957 1 64 #dbd957 3 9 #82db57 2 11 #db579b 2 4 #dbca57 1 19 #57b5db 2 19 #57b5db 2 11 #db579b 1 56 #8257db 7 56 #8257db 3 56 #8257db 1 56 #8257db 3 56 #8257db 1 56 #8257db 2 56 #8257db 1 56 #8257db 1 22 #57dbae 1 22 #57dbae 1 11 #db579b 1 11 #db579b 7 22 #57dbae 2 97 #57db69 1 73 #57ccdb 1 97 #57db69 1 11 #db579b 1 11 #db579b 1 97 #57db69 3 40 #db57b2 2 40 #db57b2 2 40 #db57b2 2 40 #db57b2 1 18 #57dba6 1 52 #57dbd4 1 18 #57dba6 1 18 #57dba6 1 18 #57dba6 1 20 #c757db 1 18 #57dba6 10 18 #57dba6 1 52 #57dbd4 1 4 #dbca57 1 18 #57dba6 1 4 #dbca57 1 18 #57dba6 1 18 #57dba6 1 4 #dbca57 1 25 #5770db 2 25 #5770db 2 60 #6b57db 1 19 #57b5db 2 20 #c757db 1 18 #57dba6 1 18 #57dba6 1 18 #57dba6 1 18 #57dba6 1 20 #c757db 2 16 #db7657 1 16 #db7657 1 19 #57b5db 1 64 #dbd957 1 32 #57db97 2 32 #57db97 1 25 #5770db 1 3 #c7db57 1 48 #57d3db 1 50 #5796db 1 1 #db57d8 1 3 #c7db57 1 73 #57ccdb 3 18 #57dba6 4 29 #db575e 15 73 #57ccdb 1 18 #57dba6 1 18 #57dba6 1 29 #db575e 1 29 #db575e 1 29 #db575e 1 29 #db575e 1 29 #db575e 1 29 #db575e 1 29 #db575e 1 29 #db575e 1 29 #db575e 1 29 #db575e 1 3 #c7db57 1 3 #c7db57 1 3 #c7db57 1 37 #db5766 1 37 #db5766 3 6 #db9c57 2 6 #db9c57 3 14 #99db57 2 6 #db9c57 1 37 #db5766 2 37 #db5766 1 6 #db9c57 1 6 #db9c57 1 6 #db9c57 1 26 #57db9e 1 67 #db7d57 3 67 #db7d57 1 11 #db579b 1 104 #9257db 8 11 #db579b 1 11 #db579b 8 11 #db579b 1 104 #9257db 1 104 #9257db 1 104 #9257db 1 11 #db579b 1 63 #7adb57 4 104 #9257db 1 104 #9257db 1 11 #db579b 1 63 #7adb57 2 104 #9257db 2 74 #57db8f 1 74 #57db8f 1 11 #db579b 1 104 #9257db 1 63 #7adb57 1 104 #9257db 1 104 #9257db 2 63 #7adb57 1 104 #9257db 1 11 #db579b 1 63 #7adb57 1 74 #57db8f 1 67 #db7d57 1 25 #5770db 3 50 #5796db 1 50 #5796db 1 50 #5796db 1 50 #5796db 1 50 #5796db 1 50 #5796db 1 25 #5770db 2 25 #5770db 1 25 #5770db 1 25 #5770db 1 25 #5770db 1 37 #db5766 1 58 #57db80 2 58 #57db80 2 11 #db579b 1 11 #db579b 1 21 #579edb 3 17 #b057db 1 17 #b057db 1 17 #b057db 1 17 #b057db 1 17 #b057db 1 17 #b057db 1 17 #b057db 1 17 #b057db 1 17 #b057db 1 17 #b057db 1 21 #579edb 1 21 #579edb 1 34 #89db57 1 34 #89db57 2 75 #db8d57 2 75 #db8d57 1 59 #5761db 1 53 #63db57 1 18 #57dba6 1 53 #63db57 1 59 #5761db 3 59 #5761db 1 59 #5761db 1 18 #57dba6 1 53 #63db57 1 59 #5761db 6 53 #63db57 6 73 #57ccdb 1 10 #7b57db 1 52 #57dbd4 2 9 #82db57 3 8 #db57c1 3 52 #57dbd4 1 52 #57dbd4 1 52 #57dbd4 1 9 #82db57 1 8 #db57c1 1 5 #5759db 1 11 #db579b 1 5 #5759db 1 5 #5759db 1 5 #5759db 1 5 #5759db 1 11 #db579b 1 5 #5759db 5 5 #5759db 3 26 #57db9e 1 26 #57db9e 1 26 #57db9e 1 26 #57db9e 1 19 #57b5db 1 19 #57b5db 1 19 #57b5db 1 19 #57b5db 2 33 #6bdb57 3 33 #6bdb57 4 4 #dbca57 1 33 #6bdb57 1 in SF-MC group 1.0 are mainly located at the junction 1.0 used for imaging of 1.0 consist of 1.0 exhibit varying mechanical properties over different length scales due to 1.0 are consistent across length scales 1.0 is more sensitive to differences between time-dependent mechanical responses for large and small contact radii than viscoelastic analysis 1.0 applicable to 1.0 insufficient for guiding proper repair 1.0 is linked to 1.0 greater than that associated with a single fracture surface or the nucleation of dislocations 1.0 distinct levels facilitate numerous dissipation mechanisms 1.0 concept is important in understanding the mechanical properties 1.0 mechanisms 1.0 mechanisms 1.0 mechanisms 1.0 determine 1.0 applicable 1.0 Relevant For Understanding Buckling Behavior 1.0 used for 1.0 are primary proxies for 1.0 is crucial for 1.0 requirement for 1.0 requirement for 1.0 requirement for 1.0 requirement for 1.0 benefits from 1.0 Accelerates 1.0 promotes 1.0 integrates with 1.0 is a part of 1.0 can provide 1.0 promotes 1.0 occurs in 1.0 occurs 1.0 occurs either at the edge or center 1.0 used for 1.0 promote 1.0 affected by pore size 1.0 is promoted in radial defect area of rabbits after degradation of hydroxyapatite (HA) scaffolds 1.0 increases 1.0 increases 1.0 release behavior is studied for 1.0 can have specific binding 1.0 form ionic bonds with carboxyl groups 1.0 Are attracted to 1.0 evaluation of 1.0 Larger areas not observed at 6 and 12 weeks post-surgery 1.0 Larger areas observed compared to Collagen Scaffold group at 6 and 12 weeks post-surgery 1.0 influences 1.0 influences 1.0 technology based on 1.0 most important 1.0 collects blood flow information from OCT data by coherently analyzing the inherent scattering characteristics of moving 1.0 extracts 1.0 visualizes 1.0 produces 1.0 is promoted in radial defect area of rabbits after degradation of hydroxyapatite (HA) scaffolds 1.0 Red blood cells can be encapsulated through coaxial e-spin within core-sheath fibers. 1.0 influences 1.0 in SF-MC group at 6 weeks after surgery,in SF-MC group at 12 weeks after surgery 2.0 increased neovascularization supporting bone regeneration surpassing autogenous bone grafts due to 1.0 is greater than that in 1.0 is larger than that in,still larger than that in 2.0 promote 1.0 Neovascularization is a more specific term for neovascularization. 1.0 occurs in 1.0 occurs at different 1.0 follows 1.0 increases at 6 and 12 weeks post-repair 1.0 Promotion at days 7 and 14 1.0 facilitate 1.0 affecting for L929 mouse fibroblasts 1.0 increased due to softer extracellular matrix (ECM) provided by fibrin gels 1.0 not negatively affecting over time 1.0 not exhibiting for L929 mouse fibroblasts and human mesenchymal stem cells 1.0 confirmed for L929 mouse fibroblasts and human mesenchymal stem cells 1.0 affecting hydrogel structure 1.0 behavior investigated for potential biomedical applications 1.0 inhibition ensuring controlled hydrogel degradation 1.0 affecting mechanical properties or cell behavior over time 1.0 behavior of 1.0 used as scaffolds for tissue engineering 1.0 used as reactive crosslinkers to reinforce 1.0 influence 1.0 Analyze within fiber architecture 1.0 deeply affect 1.0 deeply affect 1.0 prevail over 1.0 for 1.0 Behavior of cells in response to their environment. 1.0 can promote 1.0 can promote 1.0 investigates effect on 1.0 controls 1.0 follows 1.0 covered by 1.0 is 1.0 Affect 1.0 promotes substantial 1.0 enhanced via activation of FAK and ERK1/2 pathways 1.0 enhances 1.0 decreases 1.0 decreases 1.0 facilitates 1.0 promotes 1.0 promotes 1.0 promotes 1.0 quantified via Picogreen dsDNA assay on days 14 and 28 of the culture period,quantified via Picogreen dsDNA assay after removal from media and washing with PBS on days 14 and 28 of the culture period 2.0 quantified via Picogreen dsDNA assay on days 14 and 28 of the culture period,quantified via Picogreen dsDNA assay after removal from media and washing with PBS on days 14 and 28 of the culture period 2.0 promote 1.0 promote 1.0 determined by 1.0 measured using 1.0 provides improved microenvironment for 1.0 significantly increases 1.0 plays a role in 1.0 Is affected by 1.0 support 1.0 improved 1.0 does not significantly impact during or immediately after fabrication 1.0 required for good printability and cell survival 1.0 decreases 1.0 decreases 1.0 of salting out 1.0 commonly used agents such as glutaraldehyde and polyepoxy compounds can cause 1.0 present major challenges due to 1.0 present major challenges due to 1.0 does not significantly increase 1.0 evaluated using 1.0 measured by release of 1.0 demonstrate 1.0 comparison 1.0 has 1.0 has 1.0 present in 1 should be considered in 1.0 derived from 1.0 found in crustaceans, insects, fungi, and mollusks 1 after cellulose 1.0 forms the structure of 1.0 drugs 1.0 Amorphous regions provide some plasticity to chitin. 1.0 High moisture content can lead to increased solubility of chitin. 1.0 The orientation of microfibrils can affect the mechanical properties of chitin. 1.0 Temperature can affect the crystallinity and solubility of chitin. 1.0 Low solubility is a result of high crystallinity. 1.0 is 1 forms 1.0 contains 1.0 is related to 1.0 enables 1.0 is related to 1 is composed of 1.0 has a higher Young's modulus than 1.0 counteract repulsive forces for assembly 1.0 isInterconnectedBy 1.0 isComposedOf 1.0 isControlledByMicrocracksAheadOfMainCrackTip 1.0 mayContributeToMaterialsStrengthAndToughnessThroughComplexNetwork 1.0 providesAdditionalPathsForStressTransfer 1.0 formsCompositeMaterialWith 1.0 isContributedSignificantlyBy 1 improvesThroughTougheningMechanisms 1 Depends on 1.0 Has value of 1.0 is affected by 1.0 can be disassembled into 1.0 has in physiological conditions due to presence of proteins 1.0 is observed at very alkaline pH due to structural reorganization without affecting polymorphism 1.0 is miscible with 1.0 is mixed with 1.0 consist of 1.0 primarily composed of 1.0 is primarily composed of 1.0 Used for 1.0 extraction 1.0 extraction from shrimp shells, squid pens, and krill 1.0 is 1.0 endows 1.0 endows 1.0 mainly consist of 1.0 combined with to facilitate neuroblastoma cell differentiation 1.0 can be processed into 1.0 produce 1.0 functionalized with 1.0 is mixed with 1.0 are constructed with 1.0 binding requires highly acidic molecules 1.0 interlocks through hydrogen bonding,interlocks through covalent bonds formed between PEGDMA and CS 2.0 function as 1.0 can improve 1.0 is being blended with 1.0 can enhance 1.0 is a component of 1.0 incorporated into 1.0 involved in 1.0 used to create mesopores 1.0 used to create mesopores 1.0 is a type of 1.0 comparison 1.0 involved in 1.0 denatures 1.0 is a type of 1.0 derived from 1.0 is 1.0 found in 1 include 1.0 similar cracks to 1.0 display 1.0 similar strength to 1 provide 1.0 are studied 1.0 is a type of 1.0 embedded in 1.0 is used to visualize the distribution of orientation along the plane including the trabecular longitudinal axis defined by the intensity ratio of (002)/(310) 1.0 is an approximation for the intensity of at different angles 1.0 can be quantitatively determined for through least squares fitting using parameters a, b, c, and μ 1.0 can be quantitatively determined for through least squares fitting using parameters a, b, c, and μ 1.0 is an approximation for the intensity of at different angles 1.0 is an approximation for the intensity of at different angles 1.0 is related to through the intensity ratio I(002)/I(310) 1.0 is related to through the intensity ratio I(002)/I(310) 1.0 allows for the determination of orientation and preferred direction through least squares fitting using parameters a, b, c, and μ 1.0 is an approximation for the intensity of at different angles 1.0 includes 1.0 possess 1.0 representative biomaterial for 1.0 have more sui degradability than 1.0 have 1.0 exhibit 1.0 can stimulate 1.0 exhibit 1.0 mimics 1.0 process related to 1.0 process related to 1.0 include 1.0 simultaneously exhibit on different length scales 1.0 Cell-laden hydrogels can be used to create cartilage zones. 1.0 introduced with homogenous cellular distribution 1.0 co-deposited in layer-by-layer fashion 1.0 Gradient configurations are used to create gradient scaffolds. 1.0 due to 1.0 due to 1.0 due to 1.0 Exhibits 1.0 Demonstrates 1.0 Up to 1.0 contains 1.0 Osteochondral function requires a multi-zonal structure. 1.0 OC defects are a type of defect that require tissue engineering techniques for repair. 1.0 OC scaffolds can be made using Polylactic Acid as a material. 1.0 low 1.0 promotes healing and osseointegration 1.0 is used for 1.0 is used to mimic native zonal architecture 1.0 produced for 1.0 Poly(lactic acid) (PLA) is a specific type of polymer material, while PLA is a specific abbreviation or acronym for Poly(lactic acid). 1.0 Further research is needed to improve scaffold design and structure. 1.0 enables 1.0 requires optimization 1.0 Scanning Electron Microscopy Imaging can be used to analyze the osteochondral function of scaffolds. 1.0 used to investigate surface morphology 1.0 confirmed homogeneous integration of PVA into helical structure and absence of macroscopic phase segregation for 1.0 uses 1.0 The beam diameter is used for scanning electron microscopy (SEM). 1.0 Scanning electron microscopy (SEM) is complementary to CPL. 1.0 The exposure time is used for scanning electron microscopy (SEM). 1.0 The goniometric stage is used for scanning electron microscopy (SEM). 1.0 The sample-detector distance is used for scanning electron microscopy (SEM). 1.0 Scanning electron microscopy (SEM) is complementary to data collection at Leica DM RXA2 microscope. 1.0 Scanning electron microscopy (SEM) is an alternative to SAXS/WAXS. 1.0 Specimens are analyzed using scanning electron microscopy (SEM). 1.0 Evaluate 1.0 used for study 1.0 reveals 1.0 reveals 1.0 Used for characterization at 5 kV 1.0 fractured_specimens_fixed_and_observed_using 1.0 used for visualization 1.0 includes 1.0 study 1.0 is an example of 1.0 revealed 1.0 revealed 1.0 revealed 1.0 reveals 1.0 were characterized using 1.0 exhibits 1.0 exhibits 1.0 exhibits 1.0 over the bottom HfO2 layer 1.0 exhibits 1.0 confirms 1.0 Used for characterization at 5 kV 1.0 is observed under 1.0 selective cellularization enabled 1.0 efficient repair 1.0 Needed 1.0 For soft tissue repair and replacement 1.0 Is needed 1.0 needed to understand how soft- and hard-tissue interactions vary with age, across skeletal regions, and among species 1.0 needed to understand whether such tissue interactions vary with age, across skeletal regions, and among species 1.0 Further research is needed to fully understand the properties and optimize the use of ChNFs in biomedical applications. 1.0 Further research is needed to fully understand the properties and optimize the use of CNFs in biomedical applications. 1.0 needed to optimize 1.0 needed to determine whether it affects comparative studies 1.0 Can build upon this framework to provide more detailed insights 1.0 demonstrate 1.0 Such as 1.0 Utilizing 1.0 is an attractive choice for 1.0 Is a type of 1.0 Result from 1.0 inspired by 1.0 inspired by 1.0 have 1.0 Are distributed within 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 show 1.0 replaced traditional toxic solvents for 1.0 display 1 functionality 1 provide functionalities 1 possess 1 functionality 1 functionality 1 functionality 1 possess 1 can be integrated 1 display 1 display 1 suitable for 1 Are 1 provide functionalities 1 Are 1 benefit from metal-ligand coordination bonds, 1 have exceptional properties for 1 allow for simultaneous contribution to 1 have exceptional properties for 1 have exceptional properties for 1 allow for simultaneous contribution to 1 are attributed to exceptional properties for 1 allow for simultaneous contribution to 1 have exceptional properties for 1 allow for simultaneous contribution to 1 have exceptional properties for 1 allow for simultaneous contribution to 1 reveal the existence of 1 is attributed to the exceptional properties for 1 is an example of 1 is an example of 1 provide functionalities 1 Analyzing 1 Both contribute to overall mechanical properties 1 exhibit 1 discussed by 1 Are suitable for due to their properties. 1 Are associated with due to their properties. 1 Are suitable for due to their properties. 1 Are associated with due to their properties. 1 Are suitable for due to their properties. 1 Offer due to their properties. 1 Offer due to their properties. 1 Offer advantages over due to unique properties such as mechanical flexibility, large specific surface areas, biocompatibility, and biodegradability.,Are surpassed by due to their unique properties.,Are surpassed by due to their unique properties. 1 Continue to inspire engineers and materials scientists 1 Are suitable for due to their properties. 1 Analyzed within materiomics 1 difference in design leads to superior structural properties 1 possess functional gradients 1 enable self-healing capabilities 1 optimize performance 1 are highly specialized for functions 1 offer potential benefits due to unique features 1 provide control over contact phenomena 1 provide control over contact phenomena 1 optimize performance 1 differ in self-healing capabilities 1 Continue to inspire engineers and materials scientists 1 Multi-scale toughening mechanisms are drawn from biological materials 1 better match complexity and properties 1 used for digitally capturing 1 used for digitally capturing 1 found in 1 Exhibit localized deformation bands 1 Contribute to overall mechanical properties 1 Alpha-chitin exhibits 1 biological materials include mineralized tissues such as bone and teeth. 1 contain 1 contain 1 contain 1 contain 1 are constituent components of 1 provide functionalities 1 is limited for mass production and utilization in daily life applications 1 is defined as a sudden loss of function or capacity to provide service during expected lifetime 1 Governs unique mechanical properties and functional behavior at multiple length scales 1 Rupture of chemical bonds controlled 1 Placed with atomistic or molecular precision 1 Rupture of chemical bonds controlled 1 Rupture of chemical bonds controlled 1 Mechanism exhibited 1 Mechanism exhibited 1 is used for visualizing 1 applies to 1 typically have lower values below or far below 1 provide 1 reveal the existence of 1 is 1 reveal the existence of 1 is essential 1 require careful handling 1 offer 1 are necessary for connecting mechanisms at different scales 1 Limit predictive capabilities 1 includes 1 manipulates 1 provides surface for growth 1 is controlled by the interplay of properties at various scales 1 are utilized to transmit 1 are utilized to transmit signals to 1 may result in failure of intended function 1 are utilized to regulate 1 have significant implications for 1 Found in 1 Examples of materials 1 allow for efficient use of resources 1 allow for the formation of complex structures 1 through self-assembly,enables exceptional,through the adjustment of physical properties 1 during growth 1 include 1 are a common structural motif 1 often rely on diverse chemical compositions 1 applies to 1 include 1 Elucidate for Biological Materials 1 Governs How They are Synergistically Integrated at Multiple Scales 1 Simulate Behavior at Different Length Scales 1 compared to 1 can be achieved through controlled synthesis and hierarchical assembly of nanoscale to microsacle building blocks despite relatively weak constituents 1 are part of 1 is hierarchically organized at the nanoscale 1 Biological materials have impact resistance 1 nature 1 resulting from growth 1 structure 1 characteristic 1 behavior 1 Overarching term for biological materials such as extracellular matrix (ECM) and its constituent proteins. 1 are most resistant when collagen fibers are oriented parallel to 1 under dry conditions increases fracture resistance,provides insights into designing materials with improved fracture resistance 1 under wet conditions enhances fracture resistance 1 due to 1 is a type of 1 Used at larger scales 1 Used to predict excitation and reactive properties of molecules in 1 found in 1 present challenges for processing 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 provide functionalities 1 is exhibited due to hierarchical microstructures that allow for damage tolerance at multiple length scales 1 provide functionalities 1 provide functionalities 1 contain 1 resembles 1 provides 1 serves as 1 is a type of 1 can be integrated 1.0 such as alginate, polyacrylamide, poly(methyl methacrylate), poly(ethylene oxide), and poly(vinyl alcohol) 1.0 produced through self-assembly processes 1.0 inspired by 1.0 have 1.0 have 1.0 researches 1.0 and flexibility 1.0 developed by 1.0 uses 1.0 by understanding the underlying principles that govern the behavior of calcareous skeletal elements 1.0 display 1.0 describe synthesis and characterization 1.0 display 1.0 display 1.0 Has 1 Has 1 have 1.0 must have 1.0 high 1.0 can affect 1.0 have 1.0 have 1.0 offer distinct advantages for biomedical optics 1.0 has 1.0 sameAs 1 crucial factor for design 1.0 have 1.0 enhance 1.0 provide 1.0 enhances 1.0 promote 1 is 1.0 provides information about 1.0 have 1.0 exhibits 1.0 possesses 1.0 has 1.0 has 1.0 maintains 1.0 The process of modifying graphene to enhance its properties that leads to biocompatibility with biological systems. 1.0 Have 1.0 has 1.0 shows exceptional 1.0 exhibits 1.0 Has been demonstrated 1.0 does not alter 1.0 improves for biological applications 1.0 has 1.0 Improves 1.0 Are 1.0 can improve 1.0 contributes to 1.0 are affected by,are affected by,are affected by,are affected by 4.0 Enhanced By Modification 1.0 exhibits 1.0 has due to its abundance, biodegradability, and renewability 1.0 have 1.0 exhibits 1.0 exhibits 1.0 has 1 exhibit promising 1.0 enhance,can be attributed to 2.0 enhance 1.0 have 1.0 Inherent biological properties lead to superior 1.0 Inherent biological properties lead to superior 1.0 Have limitations 1 Demonstrates 1.0 have 1.0 investigated for biocompatibility 1.0 have 1.0 offer 1 improves 1.0 Has 1 have 1.0 have 1.0 offer distinct advantages for biomedical optics 1.0 Biocomposites can be biodegradable due to the use of biodegradable polymers.,Biocomposites can be biodegradable due to the use of biodegradable polymers and natural fibers. 1 have 1.0 potential for 1 potential for 1.0 can improve 1.0 may have 1.0 not influenced 1.0 has 1.0 Are 1.0 have 1 utilization 1.0 Used for 1.0 offering cost-effective photonic materials 1.0 indicating damage 1 hierarchically structured composites are a type of composite materials 1.0 can 1.0 affects mechanical behavior through initial porosity 1.0 resulting in 1.0 invests effect of hierarchy on strength of 1.0 introduced as applied to understand complex mechanical behavior of wood 1.0 is a type of 1.0 include 1.0 Are 1.0 Can be used in 1.0 Are suitable for 1.0 Are 1.0 Improve gas sensing properties 1.0 Are 1.0 have gained popularity due to their ability to address limitations of current approaches 1.0 is a common mode of failure under impact loads 1.0 depends on the mode of loading 1 enables fabrication of 1.0 consist of 1.0 combine 1.0 offer the potential for 1.0 machineLearningDesignForProperties 1 machineLearningDesignForProperties 1 is used for creating 1.0 enhanced ultimate mechanical properties 1.0 consists of 1.0 applied to 1.0 consisting of 1.0 is 1.0 Used as template for mineralization at room temperature 1.0 Used as template for mineralization at room temperature 1.0 HC-FMs are a type of composite material that are subjected to mechanical stress 1.0 is a type of 1.0 is based on the concept of 1.0 Values 1.0 demonstrate 1.0 forms during cyclic oxidation process 1.0 Includes 1.0 Values 1.0 Applied 1.0 demonstrate 1.0 demonstrate 1.0 demonstrate 1.0 demonstrate 1.0 CFRPs are a type of composite material. 1.0 Subclass relationship 1.0 Subclass relationship 1.0 Subclass relationship 1.0 Subclass relationship 1.0 for composites containing 40 wt % PF resin before and after thermal curing 1.0 values for composites containing 40 wt % PF resin before and after thermal curing 1.0 can be tuned by controlling 1.0 successfully used to fabricate 1.0 promising for 1.0 comparable to widely used polymer materials 1.0 promising for 1.0 promising for 1.0 promising for 1.0 without the use of pigments due to 1.0 confirmed experimentally 1.0 fall approximately at the midpoint between upper and lower bounds of the 'rule of mixtures' 1.0 impact on computed 1.0 impact on computed 1.0 investigation of 1.0 investigation of 1.0 Refer to 1.0 Focus on improving 1.0 requires 1.0 Refers to changes in hardness that occur along a material's length. 1.0 decreases 1.0 increased 1.0 can be improved by 1.0 is affected by 1.0 is affected by 1.0 is affected by 1.0 is affected by 1.0 is affected by 1.0 is affected by 1.0 increases with 1.0 is calculated using 1.0 is calculated using 1.0 Provides 1.0 Measures 1.0 Contributed by metal coordination complexes 1.0 Contribute to 1.0 similar to 1.0 similar to 1.0 Determined through 1.0 emphasized through 1.0 checked after 1.0 increase through 1.0 control through dislocation density 1.0 applicable to materials processing 1.0 applicable to materials processing 1.0 causes a significant change 1.0 applicable to materials processing 1.0 applicable to materials processing 1.0 Is approximately 1.0 measures 1.0 provided value 1.0 has 1.0 increases for elderly individuals 1.0 Also decreases as one moves away from 1.0 Specific mechanical property being measured 1.0 has 1.0 has 1.0 For sample S2 1.0 For sample S1 1.0 Ranges from 1.0 enhances 1.0 has lower values due to 1.0 has 1.0 attributes 1.0 understand 1.0 has 1.0 provides 1.0 improves 1.0 Affects 1.0 can exhibit 1.0 controlled through materials processing and drying treatments 1.0 focus is an optical property that describes the point at which light converges or diverges 1.0 significantly affect 1.0 were determined through 1 determines 1.0 is 1.0 greater than 1.0 is 1.0 greater than 1.0 have higher mechanical properties due to 1.0 hierarchically structured composites have mechanical properties 1.0 improved through 1.0 changed through 1.0 can improve 1.0 can be controlled through 1.0 increase linearly with strain rate but decrease in terms of strain and toughness 1.0 investigated by Gibson and Ashby 1.0 studied for 1 studied for 1.0 contributed by 1.0 Improve 1.0 tuned by controlling 1.0 compatible with biological media for biomedical optics 1.0 are 1 influences 1.0 influences 1.0 influences 1.0 influences 1.0 effect on 1.0 results from 1.0 Mechanical properties is a more general term that includes mechanical behavior. 1 determined through 1.0 Have linear dependence on relative density 1.0 potential improvement 1.0 varies 1.0 affects 1.0 affects 1.0 Biocomposites can have improved mechanical properties due to the addition of mineral fillers. 1 due to 1.0 provides 1.0 investigation reveals 1.0 Analysis through 1.0 restore 1.0 exhibit 1.0 Is significant; impact on electrical conductivity is relatively little due to sporadic crosslinking of a small amount of metal ions 1.0 Is significant; impact on electrical conductivity is relatively little due to sporadic crosslinking of a small amount of metal ions 1.0 investigation of 1.0 between fibers 1.0 advancements in 1.0 exceeding those of native biological composite 1.0 is 1.0 is 1.0 is 1.0 Nanocomposites have improved mechanical properties. 1.0 Exhibit 1.0 Wide-ranging implications for biology,Mechanical sensation transmission,Structural integrity and shape control,Incredible elasticity, strength, and robustness 4.0 are not influenced by 1.0 are determined by 1.0 have 1 changes 1.0 result from 1.0 can be varied independently through STEPS 1.0 can be modulated independently 1.0 improves 1.0 improves 1.0 Investigation of 1.0 investigates 1.0 provides insight into 1.0 comparable to 1.0 aimed to compare 1.0 depend on 1.0 Controls 1 influences significantly 1.0 influences significantly 1.0 impacts 1.0 possesses 1.0 has 1.0 of both 1.0 show 1.0 have 1.0 refers to 1.0 affects 1.0 accurately describes 1.0 Defines solely considering H-bonds as structural elements 1.0 can be modulated through,can be modulated through 2.0 have 1.0 result from 1.0 investigates 1.0 investigated 1.0 optimizing simultaneously 1 assessed through 1.0 enhance 1.0 are in agreement with biological tissues 1.0 Determines 1.0 affects 1.0 determine 1.0 have 1.0 Collagen matrices have an impact on mechanical properties 1.0 has 1 are influenced by H-bonds 1.0 investigation into effects of severe plastic deformation techniques on hardness and ductility 1.0 is related to 1.0 play a significant role in 1.0 determine 1.0 are enhanced through chemical crosslinking with BC nanofibers 1.0 are enhanced by increasing stiffness 1.0 demonstrated positive impact on for cartilage repair 1.0 enhance 1.0 Has 1.0 further improvements may be possible 1.0 allows for measurement of at the nanoscale level 1.0 has 1.0 investigated through 1.0 used to study 1.0 investigated during indentation testing 1.0 reflection of 1.0 measured 1.0 linking their nanoscopic properties to macroscale performance 1.0 Compared to 1.0 change in 1.0 can be controlled through 1.0 correlate with 1.0 Refers to the mechanical behavior of biological tissues with multiple length scales, such as cells, extracellular matrix, and tissue-level structures. 1.0 Describes how mechanical properties are measured or characterized through stiffness profiles. 1.0 effect on is consistent with that found for ceramics fabricated by freeze-casting 1.0 are strongly related to 1.0 used to determine 1.0 can be improved through chemical cross-linking 1.0 investigates 1.0 Characterization via nano-indentation tests 1.0 affects 1.0 exceeds 1.0 Renaming 1 Influenced through morphology and dispersion quality 1.0 Affected through morphology and dispersion quality 1.0 characterizes 1.0 contributes 1.0 improve 1 enhances 1.0 enhances 1.0 Indicates that magnitude of mechanical properties increases with decreasing level 1.0 Major contributory factor regulating mechanical properties from molecular level to fascicle level 1.0 Type of relationship 1 can exhibit values from 2.5 to 8 GPa 1.0 display a range of 2 to 20 GPa for mature fibrils 1.0 influence 1.0 influenced by 1.0 influenced by 1.0 influenced by 1.0 influenced by 1.0 influenced by 1.0 strong in longitudinal direction 1.0 dependence 1.0 influence 1.0 Similar to other protein-based fibers that exhibit hierarchical self-assembly of coiled coil proteins 1.0 Similar to soft and elastic fibers during stretching 1.0 need for 1.0 uncertainty of 1.0 offer new tools to construct over multiple length-scales and dimensions 1.0 approximately 80 GPa 1.0 are calculated for the laminate 1.0 are calculated for the laminate 1.0 around 1.2 GPa 1.0 is influenced by 1.0 is influenced by 1.0 is influenced by 1.0 Assignment 1.0 have higher value than native biofilms 1.0 Measures 1.0 Higher values compared to 1.0 spans over seven orders of magnitude 1.0 increased 1.0 anisotropy ratio 1.0 anisotropy ratio 1.0 anisotropy ratio 1.0 is 1.0 resides between 1.0 found to be around 2 GPa 1.0 results in increased global strength 1.0 variations do not affect global stiffness 1.0 is calculated using 1.0 increases with 1.0 Provides insight into the relationship between cooling kinetics during extrusion and resulting mechanical properties of FDM filaments 1.0 higher elastic modulus than parenchyma cell walls 1.0 closely packed longitudinally and serving as true basic building blocks for constructing individual bamboo fibers,higher than parenchyma cell walls 2.0 Explored by Currey 1.0 Measures 1.0 affecting adhesive behavior 1.0 affects adhesive behavior 1.0 is a more specific term for 1.0 has high stiffness with 1.0 possess 1.0 uniquely obtains an elastic modulus that is similar to the bulk elastic modulus of 1.0 Is approximately 1.0 has 1.0 measures 1.0 measured during nanoindentation testing 1.0 related to stiffness 1.0 measured during nanoindentation testing 1.0 estimation remains challenging due to 1.0 dominates 1.0 can be enhanced through 1.0 has 1.0 has 1.0 has 1.0 For sample S2 1.0 For sample S1 1.0 Ranges from 1.0 effect 1.0 has 1.0 governing 1.0 decrease 1.0 increases with an increase in,and its entanglement with 2.0 both improve due to increased crosslinking density of,however, becomes stiff with a high elastic modulus due to dehydration of the alginate hydrogel when incubated in 3 M HEMA solution 2.0 with optimal concentrations leading to high without compromising elasticity 1.0 due to diverse assembled morphologies of the layers 1.0 Containing 1.0 Modeling 1.0 composed of 1.0 alternating layers of 1.0 determines macroscale moduli 1.0 are embedded in 1.0 compared to 1.0 with decreasing loading rate 1.0 Contribution 1.0 in 1.0 Setting 1.0 is 1.0 is increased by a factor of about 1.3 in normal direction,is nearly the same for observation direction I in transverse direction,is remarkable when comparing observation directions I and II 3.0 with 1.0 assigned to 1.0 has 1.0 maintains 1.0 shows a decrease in fluorescence intensity and a blue shift in the emission peak at lower pH values due to more effective fluorescent radiation transition at higher pH 1.0 exhibits strong luminescence under UV light 1.0 prevents aggregation and quenching via molecule-mediated MMA 1.0 exhibits higher fluorescence intensity than,exhibits strong luminescence under UV light,exhibits a broad emission peak with maximum emission wavelength around 670 nm 3.0 reveals characteristic peaks for 1.0 reveals characteristic peaks for 1.0 was performed on 1.0 is composed of 1.0 Hot pressing for densification 1.0 combined with to promote cell alignment and differentiation 1.0 combined with to promote cell alignment and differentiation 1.0 demonstrates 1.0 undergoes 1.0 is a component of 1.0 is mixed with 1.0 induces changes in rheology of 1.0 affects aggregation of 1.0 promotes faster formation of 1.0 assembles into 1.0 is affected by 1.0 is affected by 1.0 manipulates material structure of 1.0 has lower viscosity than 1.0 forms in aqueous solution,forms slower at lower temperatures 2.0 forms through conformational transition,increases with increasing silk concentration,can be further modified after nanofibril formation,had occurred in the case where silk nanofibrils formed 4.0 can be designed through nanofibril formation 1.0 during nanofibril formation suggests that 1.0 exists in 1.0 comparison 1.0 can be incorporated into for tissue engineering applications 1.0 often blended with PCL for appropriate properties 1.0 Create 1.0 Could improve resolution at the cost of longer manufacturing times 1.0 Involves 1.0 Involves 1.0 Calculated from load-displacement measurements 1.0 Calculated from load-displacement measurements 1.0 Calculated from load-displacement measurements 1.0 Calculated from load-displacement measurements 1.0 have major drawbacks that significantly alter the biomechanical properties when removed 1.0 can be processed into 1.0 is applicable to 1.0 demonstrated positive impact on for cartilage repair 1.0 alginate/polyethylene oxide hybrid solution 1.0 performed until all samples had been collected 1.0 demonstrate 1.0 are evaluated through 1.0 are characterized by 1.0 are evaluated through 1.0 are evaluated through 1.0 are made of 1.0 are characterized by 1.0 involves 1.0 have 1.0 are characterized by 1.0 are incorporated into 1.0 is 1.0 type of 1.0 is the boundary between demineralized and mineralized regions within a scaffold 1.0 Contained in 1.0 Cultured in 1.0 Created by supplementing 1.0 Involved 1.0 Evaluated for suitability in supporting 1.0 are not compatible with 1.0 used for 1.0 Evaluated for suitability in supporting 1.0 Contained in 1.0 Contained in 1.0 Contained in 1.0 Supplemented with 1.0 is dissolved in 1.0 is loaded into 1.0 is incubated in 1.0 are not 1.0 interaction with 1.0 applied in 1.0 involves the development of biocompatible materials for medical applications 1.0 are studied for mechanical properties 1.0 are studied for mechanical properties 1.0 mimic the structure and function of natural biological systems 1.0 provide key insights into biomineralization research 1.0 are essential for characterizing mechanical properties of biomaterials 1.0 differ due to medical device applications through unique biological features 1.0 may degrade or lose properties at high temperatures 1.0 enables processing without thermal degradation 1.0 applications 1.0 used for developing 1.0 used for characterization 1.0 has significant potential in 1.0 may be inspired by 1.0 comprised of 1.0 may be developed using 1.0 reflects 1.0 may have 1.0 have 1.0 aim to adhere to 1.0 Is a type of 1.0 applies to 1.0 interacts with 1.0 nanoparticles made of metallic elements can be used as both metal ion reductants and stabilizers for biomaterial matrices. 1.0 inspires 1.0 inspires 1.0 exhibit 1.0 used 1.0 used 1.0 used 1.0 used for 1.0 used to characterize 1.0 have been studied to develop 1.0 Ability of biomaterials to prevent or inhibit microbial growth. 1.0 Ability of biomaterials to avoid immune system response. 1.0 complex and hierarchical structures 1.0 component 1.0 component 1.0 exhibits toughening and strain hardening behavior attributed to Coulombic interactions during sliding 1.0 enhances overall mechanical strength due to affinity towards charged surfaces and ability to form strong hydrogen bonds 1.0 Include 1.0 Is a strategy for 1.0 Include 1.0 mimic natural bone structure 1.0 May enable the exploitation of superior nanoscale properties for applications 1.0 have been widely used for 1.0 used for characterizing 1.0 promote 1.0 promote 1.0 successfully repair 1.0 promote 1.0 is 1.0 is 1.0 can be measured using peak ratios or intensity ratios of specific sub-bands 1.0 can be measured using peak ratios or intensity ratios of specific sub-bands 1.0 can be measured using peak ratios or intensity ratios of specific sub-bands 1.0 can be measured using peak ratios or intensity ratios of specific sub-bands 1.0 can be measured using peak ratios or intensity ratios of specific sub-bands 1.0 can be measured using peak ratios or intensity ratios of specific sub-bands 1.0 have the potential to reveal 1.0 provide insights into 1.0 should be evaluated before clinical studies 1.0 has significant preclinical applications 1.0 provide insights into 1.0 require careful consideration of 1.0 used for characterization 1.0 identifies coexisting with 1.0 identifies coexisting with 1.0 can detect 1.0 was employed to 1.0 was utilized to 1.0 scaffolds with dominant microporosity and little nanoporosity formed inside had high potential for 1.0 varied inversely related to 1.0 indicates 1.0 indicative of 1.0 Over 1.0 offers three approaches for advancing 1.0 are activated during 1.0 transition into after 1.0 provide reinforcement to compact bone due to directional arrangement 1.0 are separated by 1.0 consist of 1.0 concentrically form 1.0 self-assemble into 1.0 concentrically form 1.0 concentrically form 1.0 is a more specific term for 1.0 act as fiber-reinforced material due to directional arrangement 1.0 consists of bundles of collagen fibrils 1.0 organize into 1 composed of 1.0 are organized into 1.0 Present in 1.0 have 1.0 consist 1.0 influence 1.0 impact 1 characterized by 1.0 aligned parallel 1.0 results from exponential behavior 1.0 is 1.0 Have 1.0 directs mineral deposition within 1.0 are organized into 1.0 are organized into 1.0 are organized into 1.0 attached_to 1.0 oriented 1.0 oriented 1.0 degree of alignment in 1.0 forms 1.0 forms 1.0 forms 1.0 Collagen fibers respond to compression. 1.0 Lignin is a part of collagen fibers. 1.0 Collagen fibers are a part of hemicellulose. 1.0 Collagen fibers are a part of pectin matrix materials. 1.0 provide 1 determine unique mechanical properties 1 influence mechanical behavior,affect mechanical behavior 2.0 influence mechanical behavior 1.0 component 1.0 exposed 1.0 allow for 1 allow for 1.0 provide 1 Collagen fiber bundles span collagen fibers. 1.0 Muscle cells follow preferred orientation of collagen fibers. 1.0 Tenocytes attach to collagen fibers. 1.0 collagen fibers can be generated from atelo-collagen monomers 1.0 collagen fibers are formed by the assembly of collagen monomers 1.0 collagen fiber formation and stability can be affected by ionic strength 1.0 collagen fiber formation and stability can be affected by low pH 1.0 collagen fiber formation and stability can be affected by mechanical strains 1.0 collagen fiber formation and stability can be affected by polyethylene glycol 1.0 collagen fibers can be generated from telo-collagen monomers 1.0 collagen fiber formation and stability can be affected by tensile mechanical forces 1.0 collagen fibers can be drawn from preassembled collagen networks 1.0 remain intact during tensile tests,span the divide between 2.0 remain intact during tensile tests,span the divide between 2.0 are arranged in 1.0 are most resistant when oriented parallel to 1 carry a larger portion of the load,carry a larger portion of the load 2.0 attempts to propagate across 1.0 contain 1.0 Held together by 1.0 Present in 1.0 can withstand 1.0 follow 1.0 contribute significantly to 1.0 Present in 1.0 are much lower than their strength 1.0 due to Rayleigh scattering’s decrease as the scattering center size decreases 1.0 promotes reorganization of 1.0 proposed mixed packing model for understanding mechanical behavior 1.0 Present in 1 Present in 1.0 Embedded in 1 Present in 1.0 Present in 1.0 Present in 1.0 Present in 1.0 degree of alignment in 1.0 Can Be Aligned Through 1.0 Collagen fibers self-assemble at specific pH levels. 1.0 constituent 1.0 property 1.0 contains 1.0 Less integration observed after 2 weeks 1.0 is found in 1.0 is found in 1.0 is a measure of 1.0 flexural strength reached the requirement,compressive strength exceeded 2.0 consistent with observations for recent animals and older specimens with visible diagenetic material 1.0 resists 1.0 and their structural relationship 1.0 carries 1.0 at 1.0 refers 1.0 at 1.0 is highly determined by 1.0 investigated load bearing and found selective stiffening and heterogeneous strain distribution at the lamella level 1.0 investigates behavior of 1.0 explores mechanistic aspects of fracture and R-curve behavior in 1.0 applies elastic-plastic fracture mechanics to study toughness of 1.0 re-evaluates toughness of using new testing method 1.0 initiate 1.0 are recruited by 1.0 differences in arrangement produce 1.0 is substituted for 1.0 Remarkable similarities at nanometer level 1.0 influences 1.0 measured 1.0 influences 1.0 occur during 1.0 differentiate into 1.0 differentiate into 1.0 forms part of 1.0 communicates with through gap junctions 1.0 results from 1.0 are necessary for 1.0 is called the cement line 1.0 are wrapped around osteons 1.0 significantly enhanced perpendicular to 1.0 have consistently higher value than 1.0 is a more specific term for 1.0 formed by 1.0 deflected by,deflected by 2.0 is primarily made up of 1.0 May exhibit crack propagation due to its complex microstructure and porous nature. 1.0 Exhibits a distinct yield point as a result of its unique microstructure and composition. 1.0 Has a lower elastic modulus compared to cortical bone due to its porous microstructure. 1.0 May eventually fracture due to its complex microstructure and porous nature. 1.0 Can withstand high strains due to its unique microstructure and composition. 1.0 Demonstrates nonlinear elastic behavior due to its complex microstructure and composition. 1.0 Undergoes plastic deformation under certain loading conditions due to its complex microstructure and composition. 1.0 May undergo progressive failure due to its complex microstructure and porous nature. 1.0 Has a lower yield strength compared to cortical bone due to its porous microstructure. 1.0 Consists of 1.0 are crucial factors in replicating local microenvironments 1.0 stimulate through interaction with 1.0 provide a template for 1.0 have 1.0 Focused on by van der Linden et al. 1.0 Composed of 1.0 used for predicting fracture properties and patterns 1.0 exhibits 1.0 determined by 1.0 determined by 1.0 Trabecular bone does not naturally express VEGF for angiogenesis. 1.0 Hydroxyapatite scaffolds are designed to degrade into trabecular bone over time. 1.0 L-scaffolds aim to mimic the mechanical properties of trabecular bone. 1.0 MC3T3-E1 cells can differentiate into osteoblasts and form mineralized tissue on trabecular bone. 1.0 Trabecular bone naturally expresses osteogenic markers. 1.0 is involved in 1.0 Can lead to 1.0 consists of mineral matrix primarily composed of hydroxyapatite crystals 1.0 form on 1.0 increase over time 1.0 Directed by chemisorbed oleate ions 1.0 builds up 1.0 Significantly alters mechanical behavior during bone formation 1.0 constituent of 1.0 constituent of 1.0 are composed of 1.0 Analyzed to extract information about crystal orientation and fibril alignment 1.0 present 1.0 present 1.0 mineralized with 1.0 combination with 1.0 has 1.0 has 1.0 is templated by 1.0 formation confirmed 1.0 with 1.0 assumed to have 1.0 causes 1.0 can occur during pretreatments 1.0 Showing Differential Expression Patterns Between 1.0 Type I collagen is downregulated in high density collagen 1.0 Considered as primary organic component throughout 1.0 Necessary for 1.0 is achieved through 1.0 facilitates 1.0 Promote 1.0 applies to 1.0 Hold promise as carriers for drug delivery in strategies for 1.0 modifies 1.0 is a more specific term for 1.0 is part of 1.0 recreate 1.0 coats 1.0 recreate 1.0 allows for flow 1.0 is found in 1.0 is found in 1.0 Promotes spreading of plastic deformation and suppresses damage localization, leading to increased plastic energy dissipation as strain hardening becomes stronger. 1.0 structural similarity to 1.0 leads to 1.0 involves 1.0 manipulates microstructures 1.0 results in 1.0 expels during freezing 1.0 results in 1.0 forms on walls due to tip splitting 1.0 are formed as the solidifying front grows faster with increasing cooling rate 1.0 The presence of ice crystals during freeze-casting can result in preferential lamellar growth. 1.0 Endocarps exhibit compressive strength due to their fibrous structure. 1.0 Endocarps exhibit anisotropic mechanical properties due to their fibrous structure. 1.0 Endocarps exhibit impact resistance due to their fibrous structure. 1.0 Endocarps exhibit Young's modulus due to their fibrous structure. 1.0 are functions of 1.0 has 1.0 experiences 1.0 experiences 1.0 Can be assembled into 1.0 can take on the shape of 1.0 can take on the shape of 1.0 can take on the shape of 1.0 form 1.0 assessed using 1.0 assessed using 1.0 studied using 1.0 can self-assemble into 1.0 can be used for encapsulating 1.0 allows for precise control over protein aggregation 1.0 Contains 1.0 Merges Further Together Due To Clustering Of Hydrophobic Domains 1.0 Transforms Into 1.0 Transforms Into 1.0 Forms 1.0 Contains 1.0 Contains 1.0 Is 1.0 influence on 1.0 measures 1.0 differ due to distinct crystal structures 1.0 differ due to distinct crystal structures 1.0 have 1.0 used for investigating 1.0 investigated via atomic force microscopy imaging and nanoindentation tests 1.0 approximately 3-4 layers of cell wall and a lumen at the center, each layer being around 5-7 micrometers thick 1.0 random orientation in the fiber cell wall,used for investigating,used for investigating 3.0 used for investigating,used for investigating,used for investigating 3.0 results in 1.0 are present 1.0 is due to 1.0 first level of 1.0 Are 1.0 Are Fabricated Using 1.0 Have 1.0 Have 1.0 Exhibit 1.0 Doped with Yttria (Y₂O₃) 1.0 Form Bulk Material 1.0 Form Weak Interface 1.0 distance away from the external surface towards which enamel hardness decreases 1.0 exhibits a graded structure 1.0 serves as a cushion between the stiff enamel and less stiff dentin 1.0 are a part of 1.0 consists of 1.0 exhibits a repeating pattern of structural elements known as,are a repeating pattern of structural elements that can be observed in some types of enamel 2.0 consists of 1.0 forms boundary with 1.0 constituent of 1.0 is a non-crystalline organic-inorganic material that fills the spaces between enamel prisms 1.0 while the lingual side may lack enamel entirely.,may lack enamel entirely 2.0 occurs predominantly on the labial side of incisors,,can occur predominantly on the labial side of incisors 2.0 composed of 1.0 Embedded in a matrix of 1.0 Harder than 1.0 Connected by 1.0 Provides structural cohesion,Provides interlocking 2.0 promising results obtained using pointed or spherical-tipped indenters 1.0 exist in 1.0 Struggle to 1.0 potential applications in 1.0 used as constituent building blocks 1.0 Provide 1 Enhance 1 Direct Crack Propagation into More Tortuous Paths 1.0 compromises mechanical properties 1.0 Are Achieved Through 1.0 Favorable Strength 1.0 Can Inform the Development of New Advanced Composites with 1.0 Can Inform the Development of New Advanced Composites with 1.0 is important for designing structures that can withstand crack propagation and prevent catastrophic failure 1.0 at a fundamental level through in situ characterization will enable manipulation and tailoring of physical processes and parameters associated with self-assembly 1.0 leads to new insights into materials science 1.0 enables creation of novel nanoscale composites 1.0 facilitate 1.0 Limited information results in a lack of understanding due to inadequate or incomplete knowledge or understanding about a subject or topic. 1.0 in ceramics 1.0 for creating 1.0 Freeze-casting can result in the formation of complex, three-dimensional pore structures due to the freezing process. 1.0 Freeze-casting can also result in ordered pore alignment due to the freezing process. 1.0 production method 1.0 method for producing 1.0 increases as a crack propagates 1.0 greater stability compared to initiation fracture toughness values for materials with this behavior 1.0 high-performance materials 1 is separated by 1.0 are 1.0 indicates whether the material can withstand impact or high-stress forces 1.0 varies systematically during amelogenesis 1.0 interacts during amelogenesis 1.0 varies systematically during amelogenesis 1.0 Presence in 1.0 provides 1 provides 1 Part of 1.0 form an intimate mix or composite at all hierarchical levels 1.0 plays a critical role 1.0 replaced with 1.0 is associated with 1 controls balance between 1 improves 1 allows for a high elastic modulus 1 Refer to 1 approaches theoretical 1 approaches theoretical 1 Open questions remain regarding 1 property 1 decreases with increasing humidity 1 Is defined through cascaded activation of disparate properties such as strength and superelasticity 1 affect 1 cause changes 1 reflects 1 and 1 hard materials generally have higher strength compared to soft materials. 1 can exhibit,can be improved by 1 lags behind 1 outperform 1 Provide 1 is 1 is 1 Do not significantly reduce 1 Controls 1 displayed 1 was compared to 1 does not necessarily result in improved 1 varied,at failure 1 significantly improves 1 results in increased 1 results in drastic improvements 1 Provides 1 Reduces strength of body armor materials 1 results in 1 decreases 1 component of 1 provide 1 provide 1 Strength is a mechanical property exhibited by protein filaments. 1 affects under tension 1 Generally ranges from around 100 to 1000 kJ/mol, with single bonds being weaker and multiple bonds being stronger 1 Typically ranging from 10 to 40 kJ/mol 1 is provided through wedge-shaped interlocking 1 hasStrength 1 confirms 1 improve 1 control 1 provide 1 increases 1 quantitatively assessed using notched samples loaded with posterior surface in tension,quantitatively assessed using notched samples loaded with anterior surface in compression 1 Captured 1 varies with 1 based on 1 is 1 improves 1 is significantly smaller than that in compression 1 controls balance between 1 improves 1 has 1.0 showed peak toughness at N=1 1.0 showed peak toughness at N=2 1.0 differed 1.0 exhibited maximum toughness at N=3 1.0 exhibited maximum toughness at N=3 1.0 Refer to 1 can be absorbed during loading 1 trade-offs between 1.0 trade-offs between 1 Focus on improving 1 is 1 is increased by 1.0 cause changes 1 controls 1.0 Increased compared to dry samples,Significantly improved compared to dry samples 2.0 provide 1 resulted in up to 1.0 soft materials generally have lower toughness compared to hard materials. 1.0 increases 1.0 Composites exhibit higher toughness 1.0 through 1 provides 1.0 is due to 1 contribute 1.0 Toughness (dehydrated) is a specific measure of energy required to fracture the dehydrated tibia. 1.0 Toughness (hydrated) is a specific measure of energy required to fracture the hydrated tibia. 1.0 Toughness encompasses Work to fracture (WTF), which is a specific measure of energy required to fracture the tibia. 1.0 have 1.0 Provides 1.0 Contributes 1 refers to 1.0 Contributed by metal coordination complexes 1.0 Contribute to 1.0 achieve without sacrificing 1.0 enhances 1 Exhibit optimal 1.0 Exhibit high 1.0 enormously increased 1.0 hasToughness 1 plays a role in 1.0 Remains Elusive 1.0 increases drastically due to 1.0 exhibits 1 calculated by integrating 1.0 enhances 1.0 Bone exhibits toughness due to its ability to absorb energy and resist fracture or deformation under load. 1 is 1.0 have 1.0 can result from incorporation of rigid phase into polymer matrix 1.0 forced 1.0 is a type of 1.0 exhibits 1.0 is coupled with 1.0 is exhibited 1.0 exhibits 1.0 exhibited 1.0 show 1.0 Contributes to 1.0 Is a characteristic of 1.0 Result in 1.0 Result in 1.0 Contribute to 1.0 result in 1.0 exhibit 1.0 indicates greater ability to absorb energy before fracture 1.0 generally leads to under impact conditions (except for certain species with ring porosity such as white ash, pecan, and white oak) 1.0 formed 1.0 reduced 1.0 demonstrates highest rate constant 1.0 anisotropic Au nanoflowers are a type of gold nanoparticles 1.0 gold nanoparticles are a type of ultra-small gold nanoparticles 1.0 twisted Au nanorods are a type of gold nanoparticles 1.0 segregate to 1.0 gold nanoparticles are a type of electrically conductive materials 1.0 has higher affinity for gold surfaces than linear form due to structural changes in molecular conformations 1.0 color changes observed 1.0 used as binder for closed-packed linear assemblies forming below gelation temperature threshold 1.0 exhibits 1.0 bound to 1.0 conjugated to via antibodies 1.0 conjugated to via antibodies 1.0 conjugated to via antibodies 1.0 generated from 1.0 used to limit growth and modify crystalline structure based on initial biopolymer concentration 1.0 act as mineral precursors and network crosslinkers for ionotropic systems 1.0 influence optical properties explored using Maxwell-Garnett model for effective media containing randomly distributed metallic inclusions 1.0 used as templates for synthesis with tunable density and size based on precursor salt concentration, pH, and reduction time 1.0 used as templates for synthesis through chemical, thermal, or photocatalytic reduction 1.0 resist 1.0 break at 1.0 break at 1.0 exhibits 1.0 Of 20-40 nm. 1.0 coated onto fiber 1.0 reduced to distribute evenly 1.0 exhibit antibacterial properties through the release of 1.0 result in 1.0 cause 1.0 offer 1.0 offer 1.0 cause 1.0 cause 1.0 have with zinc nanoparticles 1.0 color changes observed 1.0 uses 1.0 thickness 1.0 width 1.0 tend to advance until reaching 1.0 than the surrounding bone 1.0 contains 1.0 has a low content of collagen-poor matrix 1.0 is primarily composed of mineral matrix 1.0 provides during fracture processes due to collagen-poor matrix 1.0 Relationship between the two concepts is that 'cement line' is a synonym for 'cement-dentine junction' 1.0 forms at the next hierarchical level 1.0 within these fibrils 1.0 arrangement 1.0 Angular variations 1.0 Collagen fibrils arranged in 1.0 organize into 1.0 is related to 1.0 varies depending on 1.0 have higher axial growth rates 1.0 influences orientation 1.0 penetrated by 1.0 leads to 1.0 richer 1.0 predominantly distributed 1.0 form,interact through hydrophobic interactions and intermolecular hydrogen bonding,lateral interaction 3.0 allow for 1.0 allow for during deformation 1.0 prevent under load 1.0 allow for 1.0 prevent 1.0 are composed of 1.0 provide 1.0 provide 1.0 are arranged in 1.0 are arranged in,are less tightly packed than 2.0 is made of 1.0 revealed by 1.0 measured at 1.0 can have 1.0 downregulates 1.0 allows controlling the diameter and orientation of 1.0 allows controlling the orientation of 1.0 allows controlling the orientation of 1.0 made of 1.0 infiltrate through gap zones 1.0 contribute to 1.0 reproduce 1.0 contribute to 1.0 Occurs at angles between 10-40 degrees 1.0 Exhibit local electrostatic attraction and repulsion due to shear piezoelectricity 1.0 Modulate fibril interactions at multiple length scales 1.0 Has been used to explore orientation within laser focal volumes 1.0 Understands through the mechanism provided by local electrostatic attraction and repulsion due to shear piezoelectricity that modulates fibril interactions at multiple length scales 1.0 Has been used to explore orientation within laser focal volumes 1.0 forms 1.0 are 1.0 within 1.0 exhibits complex heterogeneity 1.0 contrasted with complex heterogeneity 1.0 revealed through SHO model fitting 1.0 exhibits complex heterogeneity 1.0 eliminated through registration and alignment 1.0 used to reduce background noise 1.0 Relationship between the two concepts is that 'collagen fibers (CF)' is a synonym for 'collagen fibrils' 1.0 to remarkable tear resistance and toughness through mechanisms including rotation, straightening, stretching, sliding, and delamination 1.0 during linear stage with strain of 0.037 1.0 Have Increasing Abundance Towards the Periphery 1.0 related to 1.0 arranged in 1.0 further organized into 1.0 surrounded by 1.0 begins at the molecular level 1.0 most common arrangement in mature human bone 1.0 comprises 1.0 consists of 1.0 Significantly decreases as one moves away from 1.0 were tested in compression or by 3- or 4-point bending 1.0 were tested in compression or by 3- or 4-point bending 1.0 similar behavior observed during experiments compared to a specific event 1.0 similar behavior observed during experiments 1.0 similar behavior observed during experiments 1.0 forms at the next hierarchical level 1.0 cover 1.0 branch out into 1.0 are organized into 1.0 is a more specific term for 1.0 are formed by 1.0 split along 1.0 have 1.0 Relevant For Understanding Buckling Behavior 1.0 Determined By 1.0 Relevant For Understanding Buckling Behavior 1.0 Affect Buckling Behavior 1.0 Affect Buckling Behavior 1.0 Bifurcates Into During Postbuckling 1.0 Maintained During Postbuckling 1.0 Embedded In 1.0 Determined By 1.0 arranged in 1.0 is a part of 1.0 is a type of 1.0 is a type of 1.0 is associated with 1.0 found in 1 Similar Chemical Composition 1.0 potential role highlighted by Lin and Xu's study 1.0 is crucial for 1.0 decreased in individuals with osteoporotic fractures 1.0 comparable to 1.0 analyzed by Dong et al.'s synchrotron radiation micro-CT 1.0 used to investigate 1.0 influences local properties, as seen in materials such as squid sucker ring teeth and bamboo 1.0 not uniform 1.0 Significantly impacts 1.0 and 1.0 affects 1.0 is related to 1.0 Spread or arrangement of something over a particular area or volume. 1.0 analyzed by Lin and Xu's atomic force microscopy 1.0 associated with 1.0 type of 1.0 results in 1.0 results in 1.0 results in 1.0 reverses 1.0 reverses 1.0 Indicates a decrease in mineral content, which is a crucial indicator of osteoporosis. 1.0 Indicates an increase in bone fragility, which is a crucial indicator of osteoporosis. 1.0 increased in thinned and porous anterior region of femoral neck compared to intact posterior region 1.0 completes 1.0 have 1.0 varies between women with and without osteoporotic fractures 1.0 critically impacts 1.0 External stimuli can be used to change the shape of nanoparticles through rapid transport and mechanical energy conversion. 1.0 influences 1.0 influences 1.0 consider 1.0 hard particles have arbitrary shape 1.0 varies between women with and without osteoporotic fractures 1.0 Had broad distributions 1.0 Was cut from layered assembly to represent composite membrane 1.0 critically impacts 1.0 of microfibers 1.0 influences 1.0 provides greater control over 1.0 The size of graphene-based devices. 1.0 200 nm 1.0 influences 1.0 likely due to 1.0 could potentially affect 1.0 could potentially affect,depending on 2.0 could potentially affect 1.0 is associated with 1.0 is associated with 1.0 is associated with 1.0 affects the strength of the fiber 1.0 affects 1.0 is related to 1.0 not significantly increased 1.0 is associated with body weight 1.0 Sizes of fibers used in secondary phases may be short or long. 1.0 affects tissue regeneration 1.0 influences peptide binding 1.0 detailed understanding provided by Mader et al.'s quantitative framework 1.0 mimics 1.0 promotes 1.0 promotes 1.0 mimics 1.0 lower in individuals with osteoporosis 1.0 Has a significant effect at larger volume fractions of minerals 1.0 of reinforced tubular area 1.0 of tubular cavity area 1.0 enhances mechanical stability at spine tip 1.0 Has 1.0 Has 1.0 consider 1.0 organized into osteons 1.0 consist 1.0 connected via 1.0 Exhibits 1.0 Up to peak stress 1.0 Until delamination 1.0 Utilizes 1.0 Investigates 1.0 Utilizes 1.0 were used for 1.0 were applied to all samples 1.0 due to 1.0 define forces 1.0 used for 1.0 Use of finite element method (FEM) simulations to study inner MTs 1.0 Use of FEM simulations to study outer MTs 1.0 Achieves better 1.0 Indicates an improvement in both strength and toughness of the adhesive interface 1.0 An increase in adhesive force of over 1.0 Corresponding increase in the imposed displacement at which the first delamination occurred is also significant 1.0 An increase in adhesive force of over 1.0 Reduces stress concentrations 1.0 Reduces 1.0 Delays 1.0 Shows good agreement for 1.0 Discrepancies appear for 1.0 Shows good agreement between analytical and numerical calculations for 1.0 performs 1.0 suggest 1.0 calculated through 1.0 calculated through 1.0 conducted using 1.0 Uses 1.0 Uses 1.0 formed for both monomers and polymers due to larger aspect ratio 1.0 is 1.0 represents 1.0 given by 1.0 given by 1.0 Introduced,Allow us to predict how materials will behave under different deformations 2.0 Depend on 1.0 Relate to macroscopic material responses 1.0 Exhibits 1.0 displayed 1.0 increases logarithmically with,was greatly reduced by 2.0 did not change with 1.0 remains constant after 1.0 did not change with,had the lowest value among 2.0 did not change with 1.0 was measured at 1.0 can lead to 1.0 is lower than that measured in whole geckos under small normal preloads 1.0 computes 1.0 In torsion 1.0 Occurs in 1.0 prevents 1.0 produce 1.0 Contrasts with many engineered materials that show banana-curve behavior where high strength is achieved at the expense of high toughness 1.0 Was ensured at cutoff distance 1.0 was observed in their native environment without affecting their properties due to the low concentration used 1.0 understanding how viruses interact with 1.0 Spreads apart due to 1.0 Slides more against polyethylene chains than against other CNTs 1.0 more readily formed with 1.0 coated with 1.0 possess 1.0 promote 1.0 promote 1.0 possess 1.0 possess 1.0 enhances 1.0 enhances 1.0 CNT shells are shells made of CNTs 1.0 coated on 1.0 can be approximated as 1.0 increases with thicker polymers at longer deposition times 1.0 CNT@Si@C microspheres 1.0 Consistent for all tested crosslink lengths 1.0 Increases 1.0 Exists 1.0 impacts 1.0 Referred to as and corresponds to a value of 10 nanometers by Filleter and Espinosa. 1.0 Investigates effects on mechanical properties 1.0 Affects strength of 1.0 undergoes 1.0 Is sufficient for 1.0 May be more useful at higher hierarchical level than studied here 1.0 Has capacity to combine 1.0 formation after critical strength exceedance 1.0 expulsion prior to failure 1.0 is 1.0 Utilized 1.0 Investigated Properties Under Specific Conditions 1.0 Is a type of 1.0 Is a type of 1.0 is computed using MM-PBSA and LCPO approaches 1.0 plays a role in 1.0 are carried out for 1.0 is carefully equilibrated through 1.0 are utilized to determine 1.0 are subjected to a harmonic force 1.0 is 1.0 has 1.0 describes under varying stress levels 1.0 has 1.0 has 1.0 is 1.0 has 1.0 has 1.0 can be used as 1.0 can be used as 1.0 undergoes 1.0 can be used as 1.0 investigates 1.0 Metric used to quantify reversibility 1.0 undergoes,loaded in,loaded in 3.0 increase across the layers in the linear elastic region 1.0 yield at higher shear stresses than hydrated cases 1.0 yield at lower shear stresses than dry cases 1.0 observed before failure 1.0 occurs during shearing of the layers 1.0 is essentially pressure independent under hydrated conditions due to lubrication processes that only occur in hydrated conditions 1.0 increases the shearing resistance of the interface in dry conditions beyond a shear strain of 0.1 1.0 chain can be made of material 1.0 belongs_to 1.0 shows distinct stages including toe, heel, linear, and failure stages 1.0 is an order of magnitude higher due to inter- and intra-fibrillar sliding 1.0 investigated through a mechanistic quantification approach utilizing small-angle X-ray scattering 1.0 defined by 1.0 must occur 1.0 Observed below 13 wt% crosslink density 1.0 has 1.0 is exhibited 1.0 denotes materials with high mechanical strength due to fiber reinforcement within a hydrogel matrix 1.0 show 1.0 exhibits 1.0 Result in 1.0 Result in 1.0 result in 1.0 have 1.0 mechanism 1.0 capable of 1.0 created by,create 2.0 contributed to,contributes to 2.0 closely related to,closely related to 2.0 has 1.0 represents 1.0 represents 1.0 reproduce 1.0 require 1.0 require 1.0 produced through 1.0 produced through 1.0 added to,added to 2.0 removed by 1.0 removal through 1.0 removal 1.0 adsorption 1.0 is 1.0 formed by 1.0 formed by 1.0 added to 1.0 formed by 1.0 used as base material for 1.0 used to smooth 1.0 is combined with 1.0 starch-derived carbon source is a type of carbon source derived from starch 1.0 consists of 1.0 formed by 1.0 used for 1.0 potential for 1.0 used for high treatment efficiency at high throughput 1.0 used for 1.0 contributes to 1.0 is found responsible for 1.0 is found responsible for 1.0 can be highly present at both macroscopic and nanoscale levels 1.0 of directional freezing 1.0 Show higher tensile strength in longitudinal direction compared to transverse direction 1.0 shows 1.0 anisotropy is a property of fibrous materials such as wood and textiles. 1.0 provide for 'flexible anchoring' configurations 1.0 exhibits at macroscale 1.0 provide 1.0 plays a crucial role in determining 1.0 Behavior observed in cuticle 1.0 leads to 1.0 includes 1.0 prevents dependence on direction in most samples 1.0 are 1.0 leads to 1.0 provides inspiration for 1.0 provides through 1.0 provides 1.0 acts as 1.0 is a part of 1.0 across the growth ring 1.0 have 1.0 from layer to layer 1.0 within each layer 1.0 within each layer 1.0 present in 1.0 present in 1.0 cannot probe without disrupting integrity 1.0 distinguished through 1.0 composed of 1 undergoes 1.0 undergoes 1.0 Lignin is a part of cellulose microfibrils. 1.0 Pectin matrix materials are a part of cellulose microfibrils. 1.0 Cellulose microfibrils are influenced by moisture content. 1.0 provide 1.0 Similarity 1 Similarity 1.0 undergo 1.0 has 1.0 quantitatively connects 1.0 along 1.0 but hydrated cells expand radically as 1.0 through 1.0 which is the ratio between 1.0 stiff fibrils 1.0 enables 1.0 enables 1.0 enables 1.0 enables 1.0 included in expressions for 1.0 attributes 1.0 controls 1.0 indicates through compression-release cycles 1.0 Provides 1.0 is often used to describe 1.0 Relationship between the two concepts is that 'task axis' is a synonym for 'longitudinal axis' 1.0 The orientation of microfibrils can affect the mechanical properties of cellulose. 1.0 without 1.0 plays a critical role in 1.0 is dominant 1.0 crucial for 1.0 promoted growth compared to blank medium 1.0 make mechanical testing nearly impossible 1.0 make mechanical testing nearly impossible 1.0 has property of 1.0 using the tension-shear chain model 1.0 reveals 1.0 affected by 1.0 affected by 1.0 assessed through 1.0 highly correlated with 1.0 gives rise to time-dependent mechanical behavior that can be described using either viscoelastic or poroelastic frameworks 1.0 conducted 1.0 determined 1.0 contributes to hydrophobicity in pristine samples due to increased surface roughness 1.0 facile and effective control through 1.0 absorbs more 1.0 have 1.0 provides 1.0 provides sufficient space for cell growth 1.0 have 1.0 Cells can be encapsulated within porous structures. 1.0 consist of 1.0 includes 1.0 laminates can be made porous through processes such as infusion and compression molding. 1.0 lack channel architecture limiting 1.0 Easily produce 1.0 consist of 1.0 includes 1.0 provide 1.0 provide 1.0 closely resemble 1.0 assists 1.0 assists 1.0 assists 1.0 focuses more on 1.0 infinitely complex due to recursive definitions 1.0 useful tool for describing 1.0 Are being used for designing 1.0 Are being used for modeling 1.0 Are gaining increasing attention for modeling 1.0 Are being used for modeling 1.0 Are being used for modeling 1.0 commonly used for obtaining images from 1.0 offer new opportunities for 1.0 promote 1.0 offer new opportunities for 1.0 offer new opportunities for 1.0 is a type of 1.0 Have been combined 1.0 mimicking 1.0 can draw inspiration from for developing functional materials 1.0 primary mineral component that provides stiffness and strength 1.0 at microscale contributes significantly to tissue mechanics 1.0 Both complexity and indeterminacy are quantified by operators such as composition, union, and inter volume. 1.0 increases 1.0 Can be mimicked 1.0 varies based on 1.0 provides tensile strength 1.0 enables tissue recovery after stretching or compression 1.0 maintains tissue hydration and lubrication between cells 1.0 Predicts Mechanical Behavior of 1.0 Allow for clearer visualization 1.0 covers 1.0 is associated with 1.0 concept implemented in bio-inspired design for improved impact resistance and energy absorption 1.0 applied for 1.0 are inspired by 1.0 Are being used for designing 1.0 offer potential applications in 1.0 physically couple 1.0 physically couple 1.0 generate 1.0 include 1.0 input parameters 1.0 Use of experimental data to validate and refine coarse-grained models 1.0 is validated against 1.0 suitable for 1.0 can be compared to 1.0 resist 1.0 employ 1.0 involve interpolation 1.0 apply 1.0 are often met with a chemical response called mechanotransduction 1.0 responds to 1.0 withstand 1.0 provide parameters 1.0 studies enabled by 1 can predict or study 1.0 analyzes 1 comprises 1.0 has been used to investigate its mechanical properties at large deformations 1.0 Validates predictions 1.0 is a type of 1.0 integrate 1.0 rearrange 1.0 rearrange 1.0 Is a 1.0 utilize 1.0 utilize 1.0 utilize 1.0 Application of tensegrity principles to larger axonemes 1.0 Can be predicted as a function of print parameters for vertically and horizontally printed filaments using Eqs. 16 and 15, respectively 1.0 is a relationship indicating part-whole relationship. 1.0 are composed of 1.0 minimal damage during elasticity measurements 1.0 is a part of 1.0 is a part of 1.0 is a part of 1.0 is a part of 1.0 is a part of 1.0 is a part of 1.0 Cells can be encapsulated using a polymer matrix as an outer layer within e-spin fibers. 1.0 are seeded onto 1.0 are subjected to 1.0 are visualized using 1.0 are transferred to 1.0 are stained with 1.0 are stained with 1.0 devoid of 1.0 Cover entire fiber intersection and fill gaps between fibers 1.0 cultured on 1.0 are 1.0 inclusive hierarchical relation 1.0 describes 1.0 describes 1.0 labels 1.0 exposed to (treated with) 1.0 Affects 1.0 can recognize 1 Strain factor relates 1.0 are controlled by 1.0 successfully adhered and proliferated 1.0 conducted on 1.0 generated for 1.0 indicates 1.0 Important property of materials that affects cell behavior and function through cell stiffness regulation and sensing 1 results in induced internal compression or tension 1.0 constrained can shorten 1.0 elongate 1.0 undergo 1.0 stained 1.0 can be incorporated 1.0 interact 1.0 Suitable material for 1.0 cannot be directly applied to 1.0 is combined with 1.0 is combined with 1.0 promote 1.0 present in 1.0 explored by 1.0 guides mineralization,results in similar size and distribution 2.0 is composed of 1.0 exhibits 1.0 deposits oriented platelet-like structures during bone growth 1 forms staggered architectures during bone growth and shell growth, respectively 1 retains 1.0 simulated using image data obtained from confocal laser scanning microscopy 1.0 was used as 1.0 has been used in,has been used in 2.0 is 1.0 can be seeded with 1.0 can be produced through 1.0 is a 1.0 is an ideal 1.0 has been primarily used in 1.0 has 1.0 made of 1.0 influences 1.0 is 1.0 is composed of 1.0 promotes 1.0 can be processed into 1.0 may be treated through 1.0 have potential applications as 1.0 may be treated through 1.0 can result from 1.0 can result from 1.0 can be processed into 1.0 can be processed into 1.0 can be processed into 1.0 can be processed into 1.0 understanding of structure and function 1.0 have been used for in-vitro intrafibrillar mineralization 1.0 is found in 1 is formed by the self-assembly of tropocollagen molecules 1.0 are physiologically relevant due to its role in providing structural support to organisms, making it a crucial component of bone. 1.0 is composed of 1.0 has been used to determine the precise atomic conformation of 1.0 is part of 1.0 is 1.0 Used in 1.0 Has 1.0 Found In 1.0 Related To 1.0 Exhibits 1.0 Has 1.0 Has 1.0 Excites Local Electromechanical Response Of 1.0 Extracellular matrix proteins include collagen. 1.0 is present on 1.0 is suspended in 1.0 is neutralized using 1.0 is 1.0 is required to prevent spontaneous polymerization when acetic-acid-extracted collagen is used 1.0 undergoes 1.0 is 1.0 has high tensile strength due to 1.0 are made of 1.0 consists of 1.0 applied at microscopic level 1.0 fracture energy calculated between 1.0 Protein that is a major component of ECM and plays a crucial role in cell adhesion and tissue organization. 1 Depends On 1.0 Used As Crosslinking Method 1.0 Used In 1.0 Widely Used for Modification 1.0 Used As Crosslinking Method 1.0 Used As Crosslinking Method 1.0 Requires During Preparation 1.0 Suffers From 1.0 constituent 1.0 provides 1.0 is 1.0 has 1.0 has 1.0 Appears in the Plane of 1.0 provides substrate for 1.0 adjusts 1.0 involves 1.0 forms 1.0 Deposited during long-term cell culture 1.0 is found in 1.0 has 1.0 is found in 1.0 collagen provides strength and stiffness while fibronectin facilitates cell adhesion and migration 1.0 collagen provides strength and stiffness while laminins form a structural barrier and interact with other extracellular matrix proteins 1.0 collagen provides strength and stiffness while proteoglycans provide tissue hydration and lubrication 1.0 is found in 1.0 Nanocomposites can contain collagen. 1.0 Interacts 1 Contributes 1.0 Used in 1.0 Suitable for 1.0 is achieved through 1.0 is obtained through 1.0 reaction 1.0 enhances 1.0 enhances 1.0 can bond with 1.0 undergoes conventional molding process during freeze-casting to yield 1.0 significantly reduces 1.0 forms non-gradient ones at reduced concentration 1.0 pore-forming agent 1.0 offers improved cell-binding capacities due to 1.0 promotes cell spreading and proliferation 1.0 is a component of 1.0 allows for 1.0 Gelatin can be used to create cellular pore morphologies during hydrogel casting. 1.0 Has 1.0 Has 1.0 Suitable material for 1.0 is composed of 1.0 has keratin arranged in layers with diameters ranging from 20-50 mm and thicknesses of 1-3 mm 1.0 has elongated cellular morphology that is tilted towards the internal surface and has larger dimensions than the outer regions,has diameters ranging from 40-65 mm and thicknesses of 6-10 mm 2.0 has keratin arranged in layers with diameters ranging from 20-50 mm and thicknesses of 1.5-3 mm 1.0 is composed of 1.0 composed primarily of 1.0 produce 1.0 contains 1.0 forms 1 disrupts 1 conversion through 1.0 conversion through 1.0 has potential for conversion through 1.0 suitable for 1.0 Produced For 1.0 used for 1.0 Combine natural and synthetic biomaterials. 1.0 Are formed by interlocking polymer networks. 1.0 Create 3D structures by combining soft and rigid biomaterials. 1.0 Create multilayered and multiscale structures that mimic native architecture and function. 1.0 Are derived from natural sources. 1.0 Strive to have the same biological properties and behavior as native tissues. 1.0 Are synthesized chemically. 1.0 promote 1.0 promote 1.0 made from 1.0 mimic 1.0 are uniformly dispersed in 1.0 interactions between 1.0 lacks cell adhesive properties 1.0 suitable fillers for 1.0 lacks cell adhesive properties 1.0 Are being used for designing 1.0 is an example of 1.0 contain 1.0 Acts as barrier to ultrasonic vibrations 1.0 can be used as implants for 1.0 display greatest dissimilarity due to differences in density and microstructure 1.0 has lower stiffness but higher extensibility 1.0 have 1.0 can improve 1.0 induce gelation of 1.0 can improve 1.0 without the need for an external electrical current 1.0 is being used 1.0 through entropically driven repulsion 1.0 initiates 1.0 occurs 1.0 and humans 1.0 or 1.0 converts 1.0 with picojoule sensitivity 1.0 separated 1.0 are being developed 1.0 using 1.0 into 1.0 Merges at nanoscale level through materiomics 1.0 importance discussed in 1 emerged as a promising strategy for constructing complex architectures with high precision in materials fabrication 1.0 applies biological principles to materials design and fabrication 1.0 involves using biological templates as molds, masks or post-treatment media for materials fabrication 1.0 involves developing homogeneous and printable materials with desired components and proper rheological properties for materials fabrication 1 involves 1.0 allow for high accuracy and structural parameter optimization in materials fabrication 1.0 Are subject to materials science research 1.0 require a rigorous understanding 1.0 benefits 1 applied to 1.0 applied to 1.0 applied to 1.0 is a branch of 1.0 is a set of techniques used to modify 1.0 includes 1.0 involves 1.0 is a process used to choose the most appropriate material for a specific application 1.0 is a process used to create 1.0 is a set of techniques used to evaluate 1.0 explored by Liu et al. (2018) 1.0 are promising candidates for applications in 1 Improved 1.0 has potential impact on 1.0 Has potential applications in 1.0 study of 1.0 integration of 1.0 applicationsIn 1.0 involves 1.0 focuses on 1.0 based on 1.0 proposes 1.0 based on 1.0 applies to 1.0 inspired 1.0 through 1.0 can be replicated 1.0 improved 1.0 applications 1.0 found in the Sahara desert 1.0 used 1.0 correlates well with increased 1.0 have lower mechanical performance than 1.0 reduce 1.0 potentially cause 1.0 have evolved 1.0 have evolved 1.0 have evolved 1.0 is highly nonlinear,is evident in both in vivo and in vitro measurements,is attributed to both mechanical and active mechanisms 3.0 grow in magnitude,decrease in wavelength 2.0 contributes to 1.0 are part of,are part of 2.0 are part of,are part of 2.0 have on 1.0 Forms nanostructures through regulating ice crystal growth in nanocomposites 1.0 Merits at larger scales 1.0 can be produced through spinning techniques 1.0 potential for due to excellent proliferation and viability for given cell lines,potential for due to excellent proliferation and viability for given cell lines 2.0 can be produced through ChNF-templated production facilitated by instantaneous and extensive lignin adsorption 1.0 can enable strong coupling of formed nanoparticles to ChNF support 1.0 can exhibit sui properties due to rheological modification 1.0 can self-assemble into 1.0 Increase in strength for biological structures and materials,Increase in strength for biological structures and materials (sensitivity analyses required) 2.0 Increase in strength for crystalline materials 1.0 produces 1.0 forms 1.0 incorporated into 1.0 Containing 1 Extracting 1.0 determines 1.0 Simultaneously controlled through continuous assembly-mineralization approach 1.0 has 1.0 consists of,is designed at the 1 are arranged in 1.0 is primarily subjected to 1.0 is in 1.0 responds to 1.0 Activate 1.0 how cells respond to 1.0 used for 1.0 generate 1.0 lacking 1.0 Self-assembly is used to create complex structures and patterns in synthetic materials. 1 display mechanical properties beyond 1.0 the same level of robustness due to material instabilities 1.0 required 1.0 found in 1.0 Is 1.0 Is 1.0 Is 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 has 1.0 exhibited 1.0 has 1.0 have 1.0 attributed to the appropriate Si-to-CNT-to-C ratio 1.0 is a type of 1.0 is a type of 1.0 was performed on 1.0 evaluation of mechanical behavior under different hydration levels and strain rates 1.0 Subject 1.0 have reported 1.0 calculated through 1.0 Provides valuable material parameters 1.0 are performed on 1.0 Reveal axial splitting cracks in 1.0 Are conducted 1.0 Are conducted 1.0 are conducted to investigate 1.0 is kept constant at 1.0 is varied while 1.0 May vary 1.0 indicated a mean atomic Ca/P ratio of,indicated that the mean atomic Ca/P ratio was within the range used in orthopedic applications 2.0 confirms 1.0 were fabricated using 1.0 was obtained through 1.0 was utilized for 1.0 were produced without altering the microstructure of the final product 1.0 were added as a sacrificial agent during MCGP to generate interconnected macropores,had an average size between 20 and 40 μm during MCGP, while micropores ranged from 1 to 5 μm 2.0 washes 1.0 used to study at the nanoscale level 1.0 enhances contrast, preserves structural details, prevents charging, and is commonly utilized for characterization and analysis at the nanoscale level 1.0 resulted in 1 exhibited 1.0 resulted in 1.0 displayed 1.0 were compared to 1.0 were compared to 1.0 were investigated under 1.0 displayed 1 achieve 1.0 involves mechanical destruction of 1.0 confirmed the presence of hexagonal hydroxyapatite crystalline structure before, during, and after MCGP,confirmed that the hexagonal crystalline structure was maintained before, during, and after MCGP 2.0 Indicate Alignment Parallel to Fiber Long Axis 1.0 XRD was used to examine the phase composition of KCS 1.0 determines 1.0 provides 1.0 determines 1.0 analyze 1.0 are classified into 1.0 Allows for identification of 1.0 Provides 1.0 has 1.0 generates 1.0 provide more space 1.0 such as 1.0 provides 1.0 Generate 1.0 are enhanced due to HA nanostructure coating 1.0 on 1.0 for 1.0 generates 1.0 can develop more effective designs that minimize interlaminar fracture and maximize performance 1.0 similarity 1.0 results in 1.0 understands 1.0 involves 1.0 involves 1.0 have 1.0 Have 1.0 results in 1.0 exhibit 1.0 provides sufficient space for cell growth 1.0 is 1.0 major inorganic component 1 Present discrepancies in biological performance 1.0 Provides 1 Dissolved In 1.0 slow at initial stages followed by accelerated degradation 1.0 affected by breakup into fragments during degradation 1.0 added to 1.0 results in 1.0 prevents 1.0 dampen 1.0 confirms 1.0 upon 1.0 may restrict 1.0 was obtained under 1.0 was obtained under 1.0 focuses on 1.0 is used to investigate crystallization behavior of PLA/CNC composites 1.0 is used to investigate crystallization behavior of PLA/CNC composites 1.0 Are analyzed 1.0 explores 1.0 Are compared 1.0 is titled 1.0 is 1.0 examines 1.0 utilizes 1.0 Are imaged 1.0 Are implanted 1.0 employs 1.0 utilizes 1.0 for 1.0 investigated 1.0 investigated 1.0 under 1.0 provides insights into the mechanical properties of bamboo fibers 1.0 provides insights into the mechanical properties of bamboo fibers 1.0 a study was conducted 1.0 provides 1.0 applied 1.0 investigated 1.0 determined 1.0 conducted on 1.0 determined 1.0 Acknowledges Support From 1.0 provides 1.0 generated 1.0 tested 1.0 provide 1.0 stays in good agreement with 1.0 conducted by Mengi et al. (2000) on fiducials (abalone) shells 1.0 conducted 1.0 strengthens causal inference between air pollution exposure and ASD risk 1.0 Investigates 1.0 has 1.0 has 1.0 optically transparent substrates or precursors for e-skins 1.0 utilize 1.0 used as base materials without extensive digestion or decellularization processes 1.0 is labeled with 1.0 is labeled with 1.0 modified 1.0 used as 1.0 are incorporated during volumetric printing 1.0 increase during printing 1.0 increase during printing 1.0 modified 1.0 appears to be an outstanding manufacturing route 1.0 Is a technique for 1.0 Can be loaded 1.0 Offer 1.0 Can be modulated 1.0 used for producing 1.0 Can be assessed 1.0 Cannot be incorporated into fibers 1.0 Can be created 1.0 Offer 1.0 Can interact with 1.0 Can be used 1.0 Can be loaded 1.0 Can be assessed 1.0 Can be formed 1.0 Facilitate 1.0 Are transferred to 1.0 increases as frequency increases from 1.0 increases as frequency increases from 1.0 Obtained by separating real parts 1.0 increases 1.0 tailor during larger deformations 1.0 exhibits 1.0 possess 1.0 integrates with 1.0 has contributed to 1.0 conventional flexible pressure sensors have lower strain compared to strain 1.0 GFs have lower strain compared to conventional flexible pressure sensors 1.0 GFs have lower strain compared to strain 1.0 At initial elastic deformation stage 1.0 Continuous unfolding 1.0 relates to 1.0 mitigates 1.0 has 1.0 transfers 1.0 due to 1.0 responds to 1.0 catches,responds to,responds to,responds to 4.0 are related to the relationship between strain and structure during bone remodeling 1.0 results in 1.0 normal to,parallel to 2.0 held at constant 1.0 responds to through increased resistance 1.0 responds to through increased resistance 1.0 responds to through increased resistance due to flattening of wrinkles 1.0 is a function of 1.0 Exhibits 1.0 allows for the creation of 1.0 provides 1.0 provides 1.0 is 1.0 produced using 1.0 uses material chemistry and structural engineering 1.0 used for creating 1.0 were compared to demonstrate effectiveness in creating structures that mimic natural materials 1.0 were compared to demonstrate effectiveness in creating structures that mimic natural materials 1.0 is an effective alternative for 1.0 is effective due to its ability to achieve structure control from 1.0 provides crosslinking performances for 1.0 based on 1.0 has expertise in 1.0 Enables Creation of 1.0 Involves 1.0 Allows for Creation of 1.0 Enables Creation of 1.0 is 1.0 is provided by 1.0 convergence 1.0 can be processed into three-dimensional structures through 1.0 combined with 1.0 Can Adjust 1.0 Can Adjust 1.0 used for 1.0 used for 1.0 are synthesized under 1.0 results in 1.0 results in 1.0 results in 1.0 are synthesized under 1.0 often incorporates 1.0 results in 1.0 are synthesized under 1.0 can inform the development of 1.0 inspiration for 1.0 example of 1.0 needed for reducing processing time 1.0 achieved 1.0 fracture-tolerant properties 1.0 helicoidal structure 1.0 required for mimicking 1.0 achieved 1.0 achieved 1.0 minimizing 1.0 have led to 1.0 Biomimetic design principles applied to interfaces to enhance performance and sustainability. 1.0 explore use 1.0 potential applications 1.0 promote 1.0 promote 1.0 share similar chemical and structural properties 1.0 explored 1.0 achieves both mechanical strength and defect tolerance 1.0 constructs true 3D hierarchical 1.0 Investigation 1.0 essential for advancing 1.0 enables direct and quantitative insights into behavior 1.0 Applications In 1.0 Replication of Natural Structures 1.0 Replication of Natural Structures 1.0 Replication of Natural Structures 1.0 Renaming for consistency and clarity 1.0 and inorganic components 1.0 uses 1.0 directs the assembly into 1.0 involves incorporating 1.0 improves 1.0 improves 1.0 into 1.0 by freezing it at subzero temperatures 1.0 resulting in 1.0 allows for 1.0 involves the removal of 1.0 followed by 1.0 and inorganic components 1.0 provides 1.0 provides 1.0 involves the use of a magnetic field to guide the flow of 1.0 have been successfully applied to 1.0 involves the alternating deposition of 1.0 to build up a composite structure layer by layer 1.0 at 1.0 provides 1.0 provides 1.0 Involved in developing 3D graphene architectures 1.0 is based on 1.0 is based on 1.0 results in 1.0 is based on 1.0 reduced at excessive CXG 1.0 occurs without 1 is influenced by 1.0 undergoes 1.0 process 1.0 process 1.0 exhibits 1.0 are crucial for 1.0 Contribute to self-assembly mechanisms 1.0 Provides a powerful framework for understanding 1.0 can be used to optimize self-assembly processes for specific applications by monitoring the structural evolution of nanoparticle systems over time 1.0 is higher than traditional bottom-up or top-down approaches due to the low cost of materials and techniques used 1.0 involves 1.0 is higher than traditional bottom-up or top-down approaches due to the high spatial resolution achieved 1.0 is higher than traditional bottom-up or top-down approaches due to the ability to create large-scale structures with high precision and low cost 1.0 offers advantages such as high precision, low cost, and scalability over traditional bottom-up or top-down approaches 1.0 allows for the creation of complex, multifunctional, hierarchical structures through the manipulation of local conditions using a limited repertoire of available molecules in biologicals. 1.0 is a crucial factor for the development of functional_materials through self-assembly. 1.0 is being investigated for its specificity of base pairing in self-assembly of nanoparticles. 1.0 such as liposomes and vesicles are being developed through self-assembly for various biomedical applications. 1.0 are being explored for their potential applications in various biomedical fields through self-assembly. 1.0 is being investigated for its unique properties such as catalytic activity and programmable structure in self-assembly. 1.0 is essential for the practical implementation of self-assembly techniques for functional_materials. 1.0 is driven by 1.0 synthesized through 1 are capable of 1.0 plays a crucial role in 1.0 is unfavorable from 1.0 have unique features including 1.0 are 1.0 is 1.0 are 1.0 are 1.0 are 1.0 occurs through reversible association of various molecules 1.0 can be used for encapsulating 1.0 have tunable orientation within the ink 1.0 is 1.0 is induced by increasing 1.0 occurs 1.0 determining characteristic 1.0 determining characteristic 1.0 determining characteristic 1.0 determining characteristic 1.0 determining characteristic 1.0 inherent result of crystalline nature 1.0 Regulating Experimental Conditions such as Reaction Temperature and Parameters 1.0 driving weak intermolecular interactions 1.0 driving weak intermolecular interactions 1 utilizes 1.0 rely on 1.0 involves 1.0 is replaced by 1.0 utilizes 1.0 is not degraded or deacetylated during 1.0 occurs in 1.0 replaces 1.0 driving weak intermolecular interactions 1.0 influencing morphology of waxes 1.0 driving weak intermolecular interactions 1.0 investigates 1.0 builds upon 1.0 of histidine-functionalized peptide building blocks 1.0 is initiated by pH differential between byssal secretion and seawater 1.0 results in 1.0 results in 1.0 involves spraying onto a substrate 1.0 used to coat with carbon nanotubes 1.0 of salting out 1.0 generated based on freeze front rotation and correction factor 1.0 conforms to 1.0 Offer 1.0 can be realized through 1.0 are 1.0 Provides 1.0 serves as 1.0 facilitates 1.0 provides 1.0 exhibits 1.0 provides 1.0 acts as 1.0 can be used to create at room temperature 1.0 occurs at 1.0 calcium carbonate phase is vaterite 1.0 conducted at 1.0 can be predicted accurately using a rule of mixture approach 1.0 is lower than expected based on composition alone 1.0 tested_at 1.0 can improve 1.0 are 1.0 can be 1.0 for 1.0 facilitating their release in a controlled manner 1.0 binds and assembles 1.0 reacts with 1.0 detect 1.0 exhibits 1.0 Helical structures absorb more components or strain due to their flexible structures and bending characteristics. 1.0 self-assemble 1.0 provide insights into 1.0 encompasses 1.0 move to smaller values with increasing macroscopic strain,become broader and less intense until they disappear around 5-6% macroscopic strain 2.0 raises doubts about 1.0 are not consistent with 1.0 arranged parallel to each other result in high stiffness and strength,arranged randomly result in more compliant materials 2.0 Mechanical Property 1.0 are modeled as 1 Promotes alignment of 1 are 1.0 have 1.0 have 1.0 are advantageous for 1.0 optimize 1.0 parallel to pecking direction 1.0 Structural elements include fibers. 1.0 divert around,wove between,split into smaller fibers 3.0 are not effective under 1.0 are formed by 1.0 occurs between adjacent sub-layers under tension 1 areHighlyOrientedLongitudinallyInSubstantiaFibrosa 1.0 areTiltedBy10To30DegreesToFormAStaggeredMeshworkInCurculaOfCortex 1.0 the maximum is investigated 1 have 1.0 Type of fibers that consist of multiple filaments twisted or braided together. 1.0 forms a scaffold of 1.0 provide 1.0 significantly contributes to 1.0 significantly contributes to 1.0 concurrence between 1.0 have 1.0 have 1.0 Result in improved 1.0 potential for 1.0 improves 1.0 is performed for 1.0 is evaluated through 1.0 provides structural support for 1.0 prevent extensive distortion and stress concentration sites at coarser length scales to contribute to high mechanical strength 1.0 offers 1.0 offers 1.0 relatively low modulus of 2.5-3.9 GPa 1.0 provide 1.0 Has been improved through 1.0 is not compromised by 1.0 Required for various applications such as electronic devices, energy storage systems, and biomedical systems. 1.0 Improved By Modification 1.0 display 1.0 provides 1.0 significantly improved by addition of GO 1.0 Renaming for consistency and clarity 1.0 provide 1.0 provide 1.0 of nanocomposites compared to those formed through hydrogen bonds alone 1.0 has 1.0 change due to different types of bone 1.0 Exhibits 1.0 is a type of 1.0 is 1.0 behavior is significantly influenced by 1.0 is present in 1.0 synonym 1.0 Have limitations in producing with low interconnectivity 1.0 shows improved fluid flow compared to 1.0 results in 1.0 can be filled with 1.0 Replaces more specific term with broader term for better contextualization. 1.0 absorbs 1.0 disperses mainly in 1.0 decreases between interchain molecules, thereby tuning local properties 1.0 increases, transforming deformation behavior in protein-based materials 1.0 passes quickly through,exhibits superhydrophilic properties in air 2.0 has 1.0 separation process involves pouring onto 1.0 isComposedOf 1.0 occurs when contact angle is less than 10 degrees,causes water to spread rapidly over the surface 2.0 occurs when contact angle is greater than 150 degrees 1.0 Enhances solubility due to similar surface chemistry 1.0 catalyzes 1.0 constitutes 1.0 constituent of 1.0 extremely high adhesion strength: 1 MPa 1.0 Water is a component of compositional gradients. 1.0 contains 1.0 utilize hydrophobic cuticular structures 1.0 repel 1.0 adsorbs 1.0 generate high adhesion strengths underwater due to the incompressibility of 1.0 Water is essential for the functioning of the human body 1.0 of 1.0 tested_under 1.0 recoverable upon immersion in 1.0 chosen to match 1.0 with 1.0 Plays a crucial role in regulating mechanical properties 1.0 is composed of 1.0 behavior under different hydration conditions 1.0 has lower contact angle than 1.0 has higher contact angle than 1.0 affects 1.0 affects 1.0 take into account 1.0 Can vary between organisms 1.0 Can vary between organisms 1.0 Can vary between organisms 1.0 Can be incorporated 1.0 Can consist of 1.0 challenge 1.0 concept becomes invalid due to 1.0 becomes invalid at 1.0 create 1.0 is 1.0 involves 1.0 create 1.0 Part of 1.0 Assumed based on 1.0 allow for 1.0 result in 1.0 result in 1.0 result in 1.0 result in 1.0 allow for 1.0 result in 1.0 result in 1.0 exhibit 1.0 compared to 1.0 exhibit 1.0 are classified into 1.0 are classified into 1.0 have higher pore structure due to 1.0 has 1.0 specific for bone and cartilage regions 1.0 Can Adjust 1.0 involves 1.0 involves 1.0 is followed by 1.0 through pores 1.0 involves 1.0 offer controlled release 1.0 offer controlled release 1.0 offer controlled release 1.0 offer controlled release 1.0 offer controlled release 1.0 Includes 1.0 Influences Morphology 1.0 have 1.0 can self-assemble into 1.0 Can be synthesized as 1.0 Can be synthesized as 1.0 excellent 1.0 modified with 1.0 synthesized through 1.0 allows for 1.0 provides 1.0 occurs at around 1.0 is followed by 1.0 is attributed to 1.0 shows two distinct linear trends 1.0 were studied in solution by adding a small amount of the neat nanotube solution to a stirring water/methanol solution resulting in a final dye concentration of 3 x 10^-4 mol^-1 1.0 were stored in the dark for up to three months before use 1.0 Can be synthesized as 1.0 are 1.0 forms 1.0 exhibit 1.0 exhibits 1.0 have 1.0 have 1.0 are 1.0 have 1.0 have 1.0 exhibit 1.0 is attributed to 1.0 maintains due to larger van der Waals force compared to gravity 1.0 enhance 1.0 improve 1.0 Is further confirmed through analysis in the coarse-grained representation 1.0 affects 1.0 crucial for 1.0 contain 1.0 between 1.0 effective for chemical catalytic reactions 1.0 required pore sizes for 1.0 deteriorate mechanical and electrical properties 1.0 required for 1.0 contain 1.0 smaller than 1.0 Provides 1.0 has 1.0 generates 1.0 control 1.0 follows 1.0 limiting factor for fluorescein release due to 1.0 results in 1.0 results in 1.0 undergoes 1.0 causes 1.0 caused by structural organization visible through squid pen swelling 1.0 importance 1.0 Major challenge in creating bioinspired armor 1.0 Based on 1.0 are necessary for 1.0 Enables further testing in proper battlefield environments 1.0 Utilizes for optimization of design parameters through simulations before actual development 1.0 Variations in mechanical properties caused by 1.0 inspired by 1.0 offer advantages such as 1.0 have a hard bony outer layer to prevent penetration and a backing layer containing orthogonal collagen fibres for energy dissipation via fibre bridging 1.0 Ductile behavior compared to outer layer 1.0 Inner layers of teleost fish scales 1.0 has lower values due to 1.0 is located within 1.0 have varying orientations 1.0 Results in 1.0 Results in 1.0 is part of 1.0 Object 1.0 is made of chitosan hydrogel 1.0 Inner layer of cuticle 1.0 is affected by failure process 1.0 undergoes failure process,is influenced by 2.0 is a structural component of,is influenced by 2.0 Outer layer of teleost fish scales 1.0 Exhibits ductile behavior when directly sheared due to more sliding sites being activated between the t interfaces. 1.0 have significantly higher activity 1.0 ALP activity was also significantly higher in 1.0 compared to 1.0 significantly increased expression compared to 1.0 is 1.0 is 1.0 activates 1.0 reacts with 1.0 produces 1.0 Binds with 1.0 Regulates 1.0 Releases 1.0 Confirmed On Day 15 1.0 Higher For,Similar For 2.0 suppresses expression of,encourages expression of 2.0 exhibit 1.0 exhibit 1.0 promote cell spreading and clustering 1.0 have significantly higher expression levels 1.0 show normal cell morphology and mineralized calcium deposition 1.0 have significantly higher expression levels 1.0 have significantly higher expression levels 1.0 have significantly higher expression levels 1.0 attach and spread well after three days 1.0 visualizes 1.0 visualizes 1.0 visualizes 1.0 Cultured On 1.0 does not promote expression of,promotes expression of 2.0 is 1.0 does not promote expression of,promotes expression of 2.0 inhibits expression of,encourages expression of 2.0 Greater gene expression fold value after 21 days of cell culture 1.0 Are 1.0 Leading to strong adhesion 1.0 Employ 1.0 Are 1.0 Rely on 1.0 During biting-induced forces 1.0 Is sandwiched between two rotated plywood layers 1.0 Requires a different microstructure to accommodate 1.0 Require a different microstructure to accommodate 1.0 Orientated along grapnel-like shapes 1.0 Are used for attaching to 1.0 Are utilized alongside 1.0 Are achieved through 1.0 With irregularities at various length scales 1.0 Employ 1.0 Perform different functions in 1.0 Are utilized alongside 1.0 utilize 1.0 utilize 1.0 result in 1.0 utilize 1.0 employ 1.0 utilize 1.0 maintained 1.0 Produce 1.0 behave similarly to in terms of behavior 1.0 During biting-induced forces 1.0 Is sandwiched between two rotated plywood layers 1.0 describes whether the material can be bent or deformed under load 1.0 allow for 1.0 exhibit 1.0 dominate over 1.0 predominant role for the (200) plane 1.0 property 1 in the absence of light 1.0 increases due to regulation of hydration and protein simultaneously 1 proportion during stress wave propagation,proportion during 2.0 stiffness is the inverse of compliance, which is a measure of a material's deformability under load 1.0 stiffness is a measure of a material's elasticity, which is its ability to return to its original shape after being deformed 1.0 stiffness is a mechanical property that describes a material's resistance to deformation under load 1.0 stiffness is a measure of a material's rigidity, which is its resistance to deformation under load 1.0 stiffness is a component of stiffness coefficients, which are mathematical representations of a material's stiffness properties 1.0 stiffness is a component of stiffness distributions, which are mathematical representations of a material's stiffness properties 1.0 stiffness is a component of stiffness gradients, which are mathematical representations of a material's stiffness properties 1.0 stiffness is a component of a stiffness matrix, which is a mathematical representation of a material's stiffness properties 1.0 stiffness is a component of stiffness moduli, which are mathematical representations of a material's stiffness properties 1.0 stiffness is a component of stiffness ratios, which are mathematical representations of a material's stiffness properties 1.0 stiffness is a component of stiffness responses, which are mathematical representations of a material's stiffness properties 1.0 stiffness is a component of stiffness sensitivities, which are mathematical representations of a material's stiffness properties 1.0 stiffness is a component of a stiffness tensor, which is a mathematical representation of a material's stiffness properties 1.0 stiffness is a component of stiffness variations, which are mathematical representations of a material's stiffness properties 1.0 has 1.0 evaluates 1.0 along 1.0 Affect 1.0 Affect 1.0 Provide 1 Controls 1 was compared to 1 varied,at failure 1 results in increased 1 results in drastic improvements 1 decreases 1 component of 1 is a measure of 1.0 increases in toe region compared to 1.0 is provided through wedge-shaped interlocking 1 exhibits high stiffness in absence of light 1.0 exceed 1.0 manipulation 1.0 Along force-deflection curves 1.0 independent of density through 1.0 can be enhanced through 1.0 has 1.0 increases for elderly individuals 1.0 is balanced by lower Young's moduli along other axes 1.0 exhibits 1 Has lower bound value of,Has upper bound value of 2.0 Has value of 1.0 increases 1.0 enhances 1.0 are more flexible but less strong 1.0 is less than 1.0 is greater than 1.0 nano-HA is a type of hydroxyapatite 1.0 nano-SiO2 is a type of silica 1.0 Through 1.0 ability to create 1.0 benefits 1.0 is a promising technique for 1.0 canImplement 1.0 type 1.0 enables creation of complex structures with tailored mechanical properties through 1.0 Employed 1.0 facilitates regeneration of 1.0 Expands Beyond Traditional Three-Dimensional Forming Capabilities 1.0 Enables 1.0 Such as 1.0 can be processed as core or shell layer in coaxial spinning 1.0 transforms into 1.0 consist 1.0 oriented parallel to 1.0 Interfacial bonding improvement for enhancing damage diffusion capability between Hydroxyapatite and Polymer components 1.0 is composed of 1.0 transform into 1.0 determine final crystal structure through structural transformations upon exposure to physiological conditions 1.0 aggregate to form 1.0 is 1.0 is incorporated into 1.0 is a specific type of 1.0 Most mineralized at the spinous end 1.0 infiltrated 1.0 is based on 1.0 Is often referred to as 1.0 are made of 1.0 consists of 1.0 is a derivative due to substitutions and vacancies 1.0 is a predominant mineral structure 1.0 embedded in 1.0 Phase transformation occurs directly 1.0 composed of 1.0 distinct from 1.0 constituent 1.0 exhibit crystal imperfections that contribute to energy dissipation under high strain rates 1.0 Hydroxyapatite is the main mineral component of bone tissue and dental enamel. 1.0 confirms 1.0 forms the structure of 1.0 forms the structure of 1.0 Examples of 1.0 forms 1.0 stimulates 1.0 inhibits 1.0 comparison 1.0 comparison 1.0 is 1.0 has 1.0 is caused by 1.0 are made out of 1.0 replaced with 1.0 found in 1.0 increases drastically due to 1.0 composed of 1.0 interacts with 1.0 does not interact with 1.0 interacts with 1.0 silica is a synonym for SiO2 1.0 made of 1.0 consist of 1.0 first precipitates as ribbons during amelogenesis 1.0 involves 1.0 results in slower growth during second phase 1.0 breaks crystal symmetry during initial phase,slows growth in thickness during initial phase,promotes growth in width during initial phase 3.0 forms around core during second phase 1.0 Is a type of 1.0 occurs in 1.0 interacts with 1.0 undergoes 1.0 influences 1.0 is 1.0 is measured by 1.0 undergoes 1.0 interacts with 1.0 is 1.0 is measured by 1.0 affects 1.0 decreases continuously from the occlusal surface to the dentinoenamel junction 1.0 influences absorption capability 1.0 varied inversely related to 1.0 was not significantly different from 1.0 indicative of 1.0 confirmed through XRD 1.0 has 1.0 exhibits small elongation at break 1.0 determined by 1.0 tenfold increase 1.0 in the absence of light 1.0 Composites have tensile strength,Composites achieve tensile strength at 50% elongation 2.0 HEAs have tensile strength,HEAs achieve tensile strength at 50% elongation 2.0 Tensile strength can be discussed based on microstructure images 1.0 Tensile strength can be discussed based on fracture morphology 1.0 Composites exhibit higher tensile strength 1.0 significantly increased 1.0 increases by up to 50% due to alignment of molecular chains during drawing 1.0 have 1.0 is 1.0 is related to 1.0 refers to 1.0 had 1.0 higher than 1.0 Exhibit optimal 1.0 Exhibit high 1.0 has 1.0 exhibits high tensile strength 1.0 is improved in composite hydrogels 1.0 However, has a lower tensile strength due to its hierarchical arrangement of macroscopic inner, middle, and outer layers that result in excellent toughness. 1.0 Renaming 1.0 showed comparable 1.0 exhibited significant enhancements in,showed comparable 2.0 is less than 1.0 Used in study by Schrof et al. 1.0 used to investigate 1.0 The blurring effect may also be present when using PRS due to its larger spatial resolution compared to SAM and SR-nanoCT. 1.0 PRS provided complementary data. 1.0 Used in study by Schrof et al. 1.0 Similarly, the blurring effect may also be present when using SAM due to its larger spatial resolution compared to SR-nanoCT. 1.0 Used in study by Schrof et al. 1.0 used to investigate 1.0 The blurring effect may also be present when using SR-nanoCT due to its larger spatial resolution compared to SAM and PRS. 1.0 has a more significant effect than second-order under mode-I loading 1.0 positively enhances under mode-I loading 1.0 positively enhances under mode-I loading 1.0 positively enhances under mode-I loading 1.0 values obtained are slightly lower than those reported for bovine enamel 1.0 Negatively affects 1.0 enhances 1.0 refers to 1.0 enhance 1.0 offers advantage 1.0 comparable to 1.0 increases significantly as the crack propagates 1.0 measures 1.0 has different values for 1.0 has different values for 1.0 observed at very small scales 1.0 improves 1 are achieved in these composites 1.0 is compared to 1.0 is found in 1.0 compares structure and mechanical properties with 1.0 more weakly than alkaline earth cations due to increased nuclear charge, 1.0 catalyzes 1.0 act as ligands by donating 1.0 are attached to 1.0 can be controlled through surface functionalization 1.0 surface modification for 1.0 binding sites for desired ligands 1.0 in proteins include 1.0 is a main determinant of complexing strength, 1.0 Enhance mechanical properties through coordinate covalent bonds 1.0 Impose through stereochemical and coordination symmetry 1 Allow for reforming on short time scales 1.0 Allow for breaking or forming through external ligands 1.0 Bind through coordinate covalent bonds 1.0 controlled deposition of 1.0 play a crucial role in 1.0 are essential for 1.0 are essential for 1.0 high bond strength combined with reversibility and fast re-association kinetics, 1.0 are essential for 1.0 are essential for 1.0 have due to large surface area for catalytic reactions 1.0 applications 1.0 is suitable for applications in 1.0 Has opposite functionality 1.0 commonly used materials due to high mechanical demands 1.0 enable cost-effective development through incorporation of topographic features 1.0 have been used for fabrication 1.0 Can be physically obtained using 1.0 required for development 1.0 frequently used cell types 1.0 most commonly used material 1.0 most commonly used materials 1.0 Promotes 1.0 Photopolymerization capabilities via 1.0 Included as 1.0 GelMA is a specific type of electrically conductive biopolymer-based nanocomposite hydrogel 1.0 required for development 1.0 most studies include 1.0 frequently used cell types 1.0 release 1.0 demonstrate excellent cytocompatibility 1.0 investigates the impact on 1.0 also commonly used materials 1.0 have 1.0 possess 1.0 have 1.0 Allow 1.0 includes 1.0 allow for diverse local properties and deformation behaviors due to structural characteristics spanning multiple scales 1.0 use for 1.0 use for 1.0 use for 1.0 used for 1.0 interaction for 1.0 Resemble 1.0 seeks to emulate 1.0 exhibit 1.0 results in yielding or cracking damage 1.0 possess 1.0 exhibits most regions 1.0 provides more support for 1.0 exhibits 1.0 prevents excessive deformation 1.0 exhibits 1.0 exhibits 1.0 achieves 1.0 possess 1.0 allows for local areas 1.0 exhibits 1.0 exhibits 1.0 leads to yielding or cracking damage 1.0 Mimicked synthesis process and utilized as biotemplates to replicate unique structures 1.0 include 1.0 include 1.0 combine the advantages of 1.0 isA 1.0 Can be made of 1.0 Are a type of 1.0 Can exhibit 1.0 based on 1.0 Mimics structure and function 1.0 creates 3D construct through precise control of biomaterial deposition 1.0 also commonly used materials 1.0 frequently used cell types 1.0 Tenocytes facilitate communication with adjacent fibers. 1.0 Tenocytes facilitate communication with neighboring cells on the same fiber. 1.0 produces 1.0 based on 1.0 provides 1.0 produces 1.0 provides 1.0 provides 1.0 provides 1.0 mimicking 1.0 Subset of 1.0 Isotropic materials vs Anisotropic materials 1.0 include 1.0 represents 1.0 Superclass relationship 1.0 Subclass relationship 1.0 Subclass relationship 1.0 Subclass relationship 1.0 Subclass relationship 1.0 undergoes significant structural evolution during 1.0 affects 1.0 is influenced by polymer chemistry and surface roughness 1.0 are both biocompatible and biodegradable hydrophobic biopolymers commonly used in tissue engineering 1.0 have similar contact angles due to their porous structure increasing surface roughness 1.0 gained popularity due to high mechanical strength and low degradation rate 1.0 is used for,excels compared to 2.0 has 1.0 has 1.0 is a component of 1.0 is 1.0 exposure under 1.0 investigation of 1.0 protection from 1.0 maintenance of 1.0 maintenance of water contact angle and transmittance 1.0 sharp decrease in water contact angle due to 1.0 enables 1.0 enables 1.0 prevention of aging caused by 1.0 exposure under 1.0 enables 1.0 maintained after 1.0 made by 1.0 represents 1.0 maintained after 1.0 confirms 1.0 impacts 1.0 contains 1.0 Can improve 1.0 provides 1.0 Affects 1.0 for practical use 1.0 operates at 1.0 done at 1.0 undergoes 1.0 results in 1.0 shows 1.0 contribute to 1.0 contribute to 1.0 contribute to 1.0 facilitate 1.0 achieved through 1.0 can enhance through chemical reactions of precursors 1.0 is exhibited through surface roughness and chemical composition 1.0 Provides 1.0 significantly influences 1.0 Provides 1.0 has 1.0 has 1.0 reduces microleakage at 1.0 reduces microleakage at 1.0 reduces 1.0 reduces 1.0 has 1.0 has 1.0 can reduce effectiveness of applications 1.0 has 1.0 traps 1.0 allows water droplets to form spherical shapes and roll off easily 1.0 presented a method for creating 1.0 Provides 1.0 is greater than 1.0 has 1.0 Provides 1.0 Provides 1.0 Provides 1.0 Inspires 1.0 supported by 1.0 inspired by 1.0 results from mechanical instability processes 1.0 led to 1.0 led to 1.0 strong binding via 1.0 regardless of ethanol concentration 1.0 revealed on freeze-dried surface 1.0 studied using Korsmeyer-Peppas model 1.0 predominant rate-limiting step for release 1.0 shows dominance of 1.0 shows dominance of 1.0 can involve 1.0 leads to smaller with higher residue levels 1.0 can be controlled through 1.0 is manipulated during freeze-casting 1.0 is crucial for 1.0 has 1.0 dependency 1.0 ranging from a few nanometers to a few hundred nanometers can be achieved through a simple electrochemical anodization process 1.0 400-600 μm 1.0 ranging from 1.0 show microstructural changes 1.0 μCT can also be used to analyze pore sizes during freeze-casting. 1.0 Allows for 1.0 produced by additive manufacturing 1.0 followed 1.0 order 1.0 Allows high-precision, contactless surface patterning over large areas without physical masks or master samples 1.0 Enhances precision and spatial resolution due to high peak intensities and reduced thermal effects 1.0 Can increase complexity and directionality during dynamic surface structuring through laser scanning 1.0 Can be an attractive alternative as it allows for complex structures without tight laser focusing or essential writing requirements 1.0 Currently limits high processing speed 1.0 observed_before_and_after_testing 1.0 affects 1.0 impacts 1.0 controlled by 1.0 Influences 1.0 Influences 1.0 contribute to 1.0 contribute to 1.0 contribute to 1.0 significantly affects 1.0 exhibits during cyclic loading 1.0 consistent with behavior previously attributed to rupture of sacrificial metal coordination bonds and extension of hidden length in folded protein domains in Mytilus 1.0 increases from end of yield plateau 1.0 demonstrated through recovery experiments 1.0 decreases with increasing applied strain 1.0 govern 1.0 are 1.0 exhibits 1.0 exhibit 1.0 does not require 1.0 opens up the possibility for 1.0 can repair after 1.0 have 1.0 Has 1.0 decreases 1.0 appears 1.0 decreased due to 1.0 spans cracks and further reduces local stress intensity at the crack tip 1.0 leads to 1.0 lead to variations in hardness and indentation toughness 1.0 resists propagation of cracks within enamel prisms 1.0 diminishes local stress intensity experienced at the crack tip 1.0 channels cracks along into the prisms 1.0 diminishes local stress intensity experienced at the crack tip 1.0 is due to 1.0 occur due to 1.0 results from macrofiber interaction 1.0 mechanism for 1.0 Laminated structures lead to crack deflection 1.0 along 1.0 versus 1.0 during deformation and failure 1.0 related to these structures 1.0 at 1.0 by 1.0 provides 1.0 Type of failure mechanism that occurs due to deflection of cracks in delaminated layers of body armor materials 1.0 is a type of 1.0 include 1.0 Has a Minimal Contribution to the Toughness Increase 1.0 result in 1.0 Is an example of 1.0 direct 1.0 is expressed as 1.0 mediated by 1.0 Crack deflection at the nano-scale enhances fracture toughness. 1.0 deflect continuously due to varying structural orientations 1.0 formed during cyclic oxidation process at higher temperatures 1.0 release healing agents into 1.0 excluded from 1.0 directed into 1.0 Appear at the end of indentation for 1.0 No such cracks are observed in 1.0 trap and arrest laterally propagating 1.0 As they propagate, leading to an increase in overall toughness. 1.0 diffuse through 1.0 Diffused damage refers to a specific type of damage that occurs where cracks are randomly distributed across the structure thickness rather than running along the beam as a localized delamination. 1.0 may have 1.0 Break and lead to fracture propagation 1.0 Transform 1.0 Initiates failure 1.0 Dominate 1.0 Transform 1.0 Lead to severe reduction in strength 1.0 Transform 1.0 deflect 1.0 deflect 1.0 exhibits remarkable longevity in the presence of 1.0 are generated during stage II 1.0 emerge during stage I 1.0 are connected with a main crack, leading to compression into a solid composite 1.0 are generated during stage I 1.0 are generated during stage II 1.0 fine lamellar structure increases toughness 1.0 occur 1.0 Tended 1.0 Continue to propagate through 1.0 Initially propagate through 1.0 Form as cracks evolve 1.0 provide continuous crack deflection and twisting along interfaces 1.0 undergoes 1.0 in 1.0 comprise 1.0 before catastrophic fracture 1.0 constituent of 1.0 can exhibit variations in path within Hunter-Schreger bands 1.0 consist of alternating zones of,within which the orientation of the prisms is parallel to the long axis of,while the orientation between bands is perpendicular 3.0 are separated by 1.0 within 1.0 can exhibit variations in path within Hunter-Schreger bands 1.0 exhibits similar compositional variations and toughening mechanisms,exhibits enhanced shielding effect to arrest the inward development of indentation damage 2.0 act as preferred channels for indentation damage 1.0 changes in the opposite manner 1.0 helps activate extrinsic toughening mechanisms 1.0 lead to variations in hardness and indentation toughness 1.0 critical for function 1.0 fails due to 1.0 Individual hydroxyapatite crystals and inter-tooth variation are sub-concepts of dental enamel's microstructure hierarchy. 1.0 Exceed fracture resistance in larger mammals. 1.0 covers the crowns of 1.0 fracture energy and fracture strength optimization can be controlled by 1.0 fails due to 1.0 exhibits 1.0 is sufficient to produce damage and fracture 1.0 has been analyzed through studies of different sizes and twist angles 1.0 affects the strength of the fiber 1.0 can withstand without damage in the absence of twisting 1.0 is composed of 1.0 is composed of 1.0 exhibits a stiffness that decreases significantly due to the inclination of the protein layer plane 1.0 exhibits a stiffness of approximately 68 GPa 1.0 exhibit crystal imperfections that contribute to energy dissipation under high strain rates 1.0 established 1.0 discerning 1.0 which complicates data analysis 1.0 can self-assemble at 1.0 Propagated 1.0 Produce 1.0 are significant in 1.0 are significant in 1.0 play a crucial role in determining 1.0 Renames term to better describe its location and specificity. 1.0 plays a major role in 1.0 plays a major role in 1.0 are challenging to design due to 1.0 crucial for load transfer and cell detection of forces in tissues 1.0 critical for integrity and stability 1.0 Serve as secondary sources or barriers to ultrasonic vibrations depending on composition 1.0 Defines the interface between rigid bodies as building blocks. 1.0 is located at 1.0 is located at 1.0 relative to 1.0 determined through measurement 1.0 within 1.0 related to 1.0 describes 1.0 related to 1.0 includes 1.0 becomes 1.0 is linearly proportional to 1.0 has 1.0 is 1.0 parameter 1.0 parameter 1.0 depends on via equation 1.0 models 1.0 includes 1.0 reveals 1.0 indicates 1.0 potential alternative to 1.0 containing 1.0 forms the structure of 1.0 Produce 1.0 is 1 has 1.0 potentially replaces 1.0 presents 1.0 determines 1.0 has 1.0 relevant factor for 1.0 relevant factor for 1.0 has 1.0 has 1.0 has 1.0 decreases dramatically as 1.0 colored 1.0 can exhibit 1.0 has,but no significant effect on 2.0 determines 1.0 relevant factor for 1.0 has significant influence on 1 is 1.0 potential for 1.0 provides 1.0 combined in a nacre-like nanocomposite material 1 assembles at the interface between 1 Amorphous regions provide some plasticity to cellulose. 1.0 High moisture content can lead to increased solubility of cellulose. 1.0 Temperature can affect the crystallinity and solubility of cellulose. 1.0 Low solubility is a result of high crystallinity. 1.0 can be shaped or blended into 1.0 Comparison relationship 1 is composed of 1.0 is a superior structural material compared to 1 contributes via organization into 1.0 contributes via organization into 1.0 contributes via organization into 1.0 is 1.0 undergoes 1.0 Composition relationship 1.0 consists of 1.0 consists of 1.0 identifies 1.0 contains 1.0 enhances 1.0 contains 1.0 Contribution relationship 1.0 Separates 1.0 provide resistance 1.0 lignin-derived carbon source is a type of carbon source derived from lignin 1.0 consists of 1.0 provides 1.0 of salting out 1.0 Are 1.0 deliver 1.0 refers to 1.0 defined by 1.0 determines 1.0 of 1.0 compared to 1.0 measures 1.0 of 1.0 includes 1.0 contains 1.0 enables 1.0 provides 1.0 characterizes 1.0 offer 1.0 occurs in 1.0 based on beetle design move at high speed while consuming less energy due to their gradient structures (Lyu et al., 2019). 1.0 Could be used to create 1.0 has expertise in 1.0 effect on 1.0 May resort to using materials of biological origin in biologically inspired mineralization approaches 1.0 Raising mineral crystal strength is a result of maximizing toughness. 1.0 has 1.0 Collagen-based materials are immobilized with Hayberry tannin. 1.0 Serves As 1.0 Hierarchical staggered structures achieve stiffness. 1.0 Overlaps with the range found in D. Marginata 1.0 Follows biomimetic production processes in biologically inspired mineralization approaches 1.0 Constitutive theories for evaluating 1.0 contains 1.0 Simultaneously compared to other composites for stiffness and loss modulus is half of loss factor for hierarchical staggered structures. 1.0 stimulate cells according to four major biochemical pathways 1.0 Zr(IV)-impregnated collagen fiber adsorbs fluoride. 1.0 composed of 1.0 composed of 1.0 exhibit close to zero values of fiber reorientation due to 1.0 suppresses 1.0 linked to 1.0 predict composition-structure-property relationships 1.0 produces 1.0 properties increase with 1.0 attributed to 1.0 increases in 3D scaffolds with time 1.0 migrate toward from day 3 1.0 fill by day 10 1.0 toughness is lower than that of SNF/HAP systems 1.0 stimulate 1.0 needed 1.0 blocks flow of volatiles and keeps HRR at low values up to 500 s 1.0 reorient 1.0 investigates 1.0 attachment within interconnected structure 1.0 Life cycle assessment is conducted for nanocellulose. 1.0 selectively reinforce 1.0 have 1.0 is necessary 1.0 generate 1.0 produce 1.0 produce 1.0 Remains unclear 1.0 crucial factor 1.0 proposed in this work 1.0 differences between 1.0 Cu(II) efficiently removes metal ions. 1.0 Collagen fiber membrane removes metal ions from industrial wastewater. 1.0 except in the reversed direction 1.0 exhibits 1.0 exhibits 1.0 reorient 1.0 crucial for 1.0 form SNF/HAP systems 1.0 Has disadvantage of being destructive 1.0 Collagen fiber membrane removes metal ions from industrial wastewater. 1.0 Reexamined through 1.0 increases three times 1.0 attributed to 1.0 Adsorption capacity is higher at pH. 1.0 are fundamental components found in bone and nacre 1.0 In situ rigs for mechanical testing can be designed for scanning during 1.0 Allows for 2D imaging of 1.0 Allows for 3D imaging of 1.0 Can be used in macroscale models to predict properties non-destructively based on 1.0 Allows for division of images into 1.0 Can be used to predict properties non-destructively based on 1.0 Allows for quantification of 1.0 Obtained through image analysis is higher than that measured by MIP 1.0 Allows for quantification of 1.0 aids in 1.0 aids in 1.0 Includes conformal-evaporation: film-by-rotation in biomimetic production processes 1.0 Includes repeated crystallization of calcium carbonate in porous polymer films in biomimetic production processes 1.0 contribute to 1.0 power scaling law 1.0 power scaling law 1.0 Loss modulus is half of loss factor for soft matrix. 1.0 Stiffness is achieved simultaneously compared to other composites for soft matrix. 1.0 can be used for 1.0 observed through 1.0 expression 1.0 used for further experiments 1.0 quantified through tracking of individual fiber coordinates 1.0 expression 1.0 Shifted to lower temperatures after stretching due to orientation effects 1.0 Upper Asymptotic Approach Towards 1.0 Form due to intermolecular slip during plastic deformation 1.0 observed through 1.0 Correlates with 1.0 UO2(II) is effective for metal ion removal. 1.0 Predicts 1.0 enables 1.0 plateau at 1.0 Increased with increasing stretch ratio 1.0 can form multilayer structures if interactions between components are weaker than self-interactions 1.0 early cell confluence and decreased cellular activity after 1.0 shows 1.0 shows 1.0 results in significant improvements up to day 5 1.0 for fiber reorientation 1.0 Still contains mineral 1.0 decrease of 14% 1.0 independent of 1.0 Parameters for volumetric behaviors 1.0 Shifted to lower temperatures after stretching due to orientation effects 1.0 SNF/HAP systems exhibit 1.0 shows 1.0 shows 1.0 after stretching and curing 1.0 improves fire safety 1.0 have 1.0 Keeps 1.0 is subjected to 1.0 has 1.0 has 1.0 has 1.0 has 1.0 has 1.0 smaller stresses needed for subsubstantial loading/unloading cycles 1.0 Circularly polarized iridescence is of structural origin in jeweled beetles. 1.0 shows a 50% decrease in heat release rate 1.0 Circularly polarized iridescence is of structural origin in Pollia fruit. 1.0 is necessary 1.0 Varies significantly between radial and peripheral positions 1.0 is required 1.0 Is lower than that of Moso bamboo and Arundo donax due to 1.0 SNF/HAP-CNF systems can increase 1.0 selectively reinforce 1.0 Reduces 1.0 contribute to 1.0 Renewable resources are discussed by sustainable polymers in Nature. 1.0 Analyzed 1.0 Adsorption capacity is lower at initial concentration. 1.0 Does not allow for determination of True Interconnect Diameter 1.0 reflects 1.0 reflects 1.0 Decreased with increasing stretch ratio 1.0 Additional parameters for relative transverse isotropy 1.0 Additional parameters for nonlinearity 1.0 increases until day 7 1.0 fully recovers up to 12 cycles without losing its output 1.0 shows 1.0 shows 1.0 cellular metabolic activity measured over time 1.0 show superior cell proliferation at all time points compared to other groups 1.0 increases in 3D scaffolds with time 1.0 Occurs at length scales from 1.0 Occurs at length scales from 1.0 strength is lower than that of 1.0 potential applications 1.0 remains throughout nonlinear strain-stiffening response 1.0 than original counterparts 1.0 suppresses 1.0 further studies using this model could provide insights into 1.0 is 1.0 is 1.0 is 1.0 < 1.0 is influenced by polymer chemistry and surface roughness 1.0 is observed when 1.0 is affected by 1.0 is affected by 1.0 is based on 1.0 is observed when 1.0 maintained by,remained unchanged after 2.0 remained unchanged during 1.0 in equilibrium for 1.0 mimics at both micro and nano scales 1.0 improved by addition of HA and MWCNTs 1.0 lowered by addition of HA ps 1.0 used to produce 1.0 highlighted by study 1.0 improved by addition of HA and MWCNTs 1.0 added to 1.0 increased by inclusion of MWCNTs 1.0 increased by inclusion of MWCNTs 1.0 made from 1.0 improved by addition of HA ps 1.0 further investigation required for understanding involvement 1.0 significantly increased by addition of MWCNTs 1.0 greater 1.0 increases 1.0 results from 1.0 hydrophilicity is improved by urethane dimer in copolymers. 1.0 results from 1.0 retain 1.0 due to 1.0 Materials exhibiting hydrophilic properties are used in laser processing due to their surface chemistry. 1.0 greater 1.0 provides 1.0 has 1.0 Provides 1.0 compared to 1.0 compared to 1.0 is an activated form of 1.0 is removed by 1.0 composed of 1.0 compared to pure SIS films 1.0 type of 1.0 is a loading condition for 1.0 is a property of 1.0 is a method for 1.0 is a function of 1.0 is a method for 1.0 is a design feature of 1.0 is associated with 1.0 is a part of 1.0 is a part of 1.0 is associated with 1.0 is associated with 1.0 is a part of 1.0 include,develop into 2.0 studies 1 deeper understanding of 1.0 have 1.0 consists of 1.0 is a more specific term for 1.0 continuously dissipates under compressive load,continuously dissipates under compressive load 2.0 is due to directional arrangement of collagen fibers and hydroxyapatite crystals 1.0 results from directional arrangement of collagen fibers and hydroxyapatite crystals 1.0 can be considered as a biocomposite material due to hierarchical structure and directional arrangement of collagen fibers and hydroxyapatite crystals 1.0 displays under compressive load due to hierarchical structure 1.0 exhibits due to hierarchical structure and directional arrangement of collagen fibers and hydroxyapatite crystals 1.0 allows for efficient load transfer between different length scales due to directional arrangement of collagen fibers and hydroxyapatite crystals 1.0 consists of 1.0 forms protective shell 1.0 Explored by Currey 1.0 Explored by Currey 1.0 is a more specific term for 1.0 has fibres wrapped concentrically around a centroidal axis resulting in high resistance to bending, compression, tension, and twisting 1.0 is 1.0 synonym 1.0 exhibits more under compression 1.0 Mimics complex architecture,Mean value of Young's modulus greater than 2.0 has a value of 1.0 has a value of 1.0 has a value of 1.0 not significantly increased 1.0 results in 1.0 results in 1.0 results in 1.0 develop into 1.0 Allowing for easy penetration and difficult removal by target tissue due to 1.0 promotes 1.0 results in 1.0 tends to generate 1.0 controls 1.0 confirms 1.0 Increases 1.0 decreases 1 limits 1.0 maintains 1.0 increased 1.0 Alumina layers have thickness 1.0 Polymer interlayers have thickness 1.0 critical,should be sufficiently thin 2.0 varies 1.0 is controlled by 1.0 decreases with increasing compressive force due to indentation 1.0 has 1.0 has 1.0 decreases as relative stiffness increases 1.0 increases from forepart to base 1.0 is 1.0 Can be controlled by 1.0 Equal to that of the real material 1.0 Renaming 1 Compared to 1.0 increases at transition to arthrodial membrane 1.0 extracted 1.0 discusses 1.0 Faster than 1.0 Slower than 1.0 Increases 1.0 Primarily reflected in 1.0 Revealed through 1.0 Primarily reflected in 1.0 Closely related to 1.0 Guides 1.0 Applied under 1.0 Applied under 1.0 Adjusts 1.0 Always greater than 1.0 Has a greater effect on than 1.0 Lower compared to analytical solutions 1.0 Lower compared to rigidly constrained ones 1.0 Lower compared to analytical solutions 1.0 Has a slight influence on 1.0 Has a greater effect on than 1.0 Has a slight influence on 1.0 Occurs faster compared to 1.0 Shows faster evolution velocity compared to 1.0 helps to reduce risk of failure during impact 1.0 applied to 1.0 revealed by 1.0 influenced by 1.0 depends on 1.0 follows 1.0 describes 1.0 refers to 1.0 Observed 1.0 Observed 1.0 Observed 1.0 shows 1.0 shows 1.0 result in 1.0 Extends to both sides of the gap 1.0 Bears greater strain leading to 1.0 Leads to 1.0 Fiber networks are a type of anisotropic spring network, which exhibit directional properties due to the alignment of fibers. 1.0 Collagen networks are a type of fiber network, which are composed of collagen fibers arranged in a specific pattern. 1.0 separated by 1.0 due to 1.0 consisting of 1.0 is stronger with layers perpendicular to the loading direction 1.0 contains 1.0 has not been fully explored 1.0 induced 1.0 by Controlling 1.0 driving mode 1.0 is influenced by 1.0 Influenced by 1.0 increased from 1.0 can trigger 1.0 affects 1.0 affects 1.0 affects 1.0 affects 1.0 possesses 1.0 have 1 Contributed significantly by the synergistic effect of ionic bonding and covalent bonding 1.0 exhibit 1 allow for a comprehensive understanding of observed high performance 1.0 exhibits 1 are 1.0 achieved 1.0 is 1.0 have 1.0 encompasses 1.0 found in 1.0 creates voids 1.0 contributesTo 1.0 does not significantly affect degradation rate 1.0 increases during stretching 1.0 is another term for 1.0 The high porosity of bighorn sheep horn is due to the hollow tubules present in its laminated keratin cell structure. 1.0 have 1.0 have 1.0 balances mechanical integrity and biological activity 1.0 have low mechanical characteristics 1.0 decreases 1.0 controls 1.0 decreases 1.0 controls 1.0 is influenced by 1.0 is 1.0 is 1.0 is 1.0 Influence 1.0 has 1.0 influences 1.0 Determines 1.0 75%-85% 1.0 relationship between 1.0 allows for 1.0 promotes 1.0 results in 1.0 allows for 1.0 results in 1.0 in metallic implants 1.0 have 1.0 controls 1.0 result from 1.0 result from 1.0 affects 1.0 can be controlled through 1.0 consists of 1.0 is different from 1.0 is 1.0 is 1.0 is different from 1.0 at different heights along the length of the scaffold 1.0 ranges from 1.0 The porosity of bone tissue can also impact its properties and behavior. 1.0 Renaming 1.0 equals 1.0 were greatly improved due to the addition of hundreds of micro-pores 1.0 Can decrease interfacial stresses 1.0 increases surface area 1.0 play a significant role in 1.0 deposited via secondary chemical bath deposition on gold electrode for enhanced photocurrent generation in photoelectrochemical cells 1.0 used as substrate coating for enhanced light harvesting and energy conversion efficiency 1.0 surface-modified via plasma treatment for enhanced light harvesting efficiency in DSSC,deposited via controlled hydrolysis at room temperature in hexane followed by thermal process for anatase phase 2.0 synthesized inside via sonochemical condensation and thermal treatment 1.0 converted via magnesiumethanol reduction or methatetic reaction for diverse applications in solar energy conversion 1.0 functionalized via hydrosilylation reaction with allyl mercaptan for thiol group surface functionalization 1.0 Improve 1.0 titanium dioxide nanoparticles are used for their functional properties 1.0 both titanium dioxide nanoparticles and scalp titanium oxides are forms of titanium dioxide with different applications and properties 1.0 titanium dioxide nanoparticles are used for their functional properties 1.0 have potential in fields such as flexible solar cells and scaffolding systems for cells or a protein matrix 1.0 despite inherent brittleness of silica 1.0 Such as 1.0 Such as 1.0 used as 1.0 have 1.0 used in 1.0 applications 1.0 used for 1.0 Tissue engineering applications is a more specific term for biomedical applications. 1.0 suitable for 1.0 have 1.0 is used for 1.0 Used for 1.0 are a promising design idea for 1.0 is related to 1.0 have potential for 1.0 beyond traditional role in 1.0 is used in 1.0 Undergoes 1.0 Releases 1.0 Involve using 1.0 Prevent 1.0 Allow for 1.0 Provide 1.0 Involve using 1.0 Promote 1.0 Such as 1.0 Have 1.0 Synthetic replacements for 1.0 Such as 1.0 Such as 1.0 Such as 1.0 Function as synthetic replacements for 1.0 Impart 1.0 Improve 1.0 Such as 1.0 Such as 1.0 against 1.0 lead to 1.0 lead to 1.0 produce 1.0 against 1.0 their 1.0 further research is necessary to fully comprehend 1.0 interact with 1.0 against 1.0 demonstrates 1.0 Can be synthesized as 1.0 consists of 1.0 ranging from 1.0 showed lower improvements in 1.0 enhanced 1.0 improved 1.0 can be used as matrix materials for 1.0 form within 1.0 contribute to during deformation 1.0 are present within 1.0 cause during deformation 1.0 synthesis with tunable properties 1.0 is dissolved in 1.0 are formed by post-calcinations 1.0 are directly doped into 1.0 convert into 1.0 are contained in 1.0 which can enhance 1.0 are incorporated into 1.0 and provide additional functionalities 1.0 type and extent 1.0 contain 1.0 are templated by 1.0 include 1.0 include 1.0 include 1.0 are segregated within and concentrated at 1.0 incorporated into 1.0 composed solely of 1.0 Should be firmly attached to prevent displacement 1.0 near Tg, which is roughly commensurate with their size 1.0 correlate with 1.0 bind to 1.0 selectively target 1.0 deliver 1.0 improve 1.0 developed to 1.0 potentially cause 1.0 developed to 1.0 reduce 1.0 developed to 1.0 interact 1.0 Undergoes through galvanic coupling 1.0 Releases 1.0 Important for 1.0 Biocomposites are made by combining a polymer matrix with a reinforcing material. 1.0 connects 1.0 can be incorporated into composites through a template method involving non-solvent addition, solvent exchange, self-assembly, polymer inhibition, drying, and compacting. 1.0 infiltration into 1.0 application in direction perpendicular to 1.0 occurs 1.0 refers to 1.0 are composed of 1.0 have been studied by Riekel et al. 1.0 made from 1.0 offers excellent control over 1.0 should not significantly alter 1.0 induce formation of 1.0 deviations from 1.0 forming an entangled random network 1.0 resembling 1.0 composed of 1.0 result in 1.0 used to improve performance but still fall short of 1.0 includes 1.0 supports 1.0 has potential for 1.0 are crucial for 1.0 Less present inside after 4 weeks 1.0 is regulated by 1.0 applications for 1.0 promote 1.0 Common abbreviation for material name 1.0 while 1.0 while 1.0 have 1.0 required for imaging 1.0 used for coating 1.0 required for imaging 1.0 used for coating,required for imaging 2.0 can be 1.0 Contribute to hardness 1.0 Bind through coordinate covalent bonds 1.0 Iron is necessary for red blood cell production 1.0 demonstrate varying degrees of 1.0 improve 1.0 have 1.0 are doped with 1.0 can be 1.0 investigated relationship between 1.0 have 1.0 allow for fabrication on targeted surfaces with complex topography 1.0 possess 1.0 can be integrated onto 1.0 suitable for use as substrates 1.0 possess 1.0 make them 1.0 feature 1.0 facilitate the fabrication of 1.0 similar flow behavior due to geometrical features 1.0 breaks in presence of water 1.0 used for 1.0 reinforcement in 1.0 provides 1.0 made of 1.0 used as 1.0 is further coated with for use in hydrated and anhydrated conditions 1.0 Produces 1.0 is added as an 1.0 is used as a 1.0 is produced from 1.0 has due to its biocompatibility 1.0 used as hydrophilic bulking agent 1.0 exhibits water-induced shape memory effects 1.0 still possesses,slightly higher than Composite Membranes (CS/MAG) 2.0 Factors contributing to toughness 1 Under indentation, fibre pullout, crack deflection, and organic matrix bridging were also reported as key toughening mechanisms. 1 investigated 1.0 influenced by 1.0 important for maintaining 1.0 leads to 1.0 Displays weaker and more brittle properties when loaded parallel to its t facets due to microbuckling at the interface. When loaded perpendicular to the t facets, it becomes several cycles of loading and unloading and is highly rate dependent.,Becomes several cycles of loading and unloading when loaded perpendicular to the t facets.,Is highly rate dependent when loaded perpendicular to the t facets. 3.0 Is evident when comparing curves loaded in different directions 1.0 showed 1.0 encode 1.0 exhibits 1.0 is 1 determined by,under various wet, dry, baked, and boiled conditions 2.0 improve 1.0 using the tension-shear chain model 1.0 play a crucial role in determining 1.0 using the tension-shear chain model 1.0 Effective in determining elastic constants 1.0 Effective in determining elastic constants 1.0 using the tension-shear chain model 1.0 begin 1.0 contain 1.0 contain 1.0 contain 1.0 enhance 1.0 cause 1.0 show great complexity and variations 1.0 due to 1.0 containing 1.25 wt% graphene exhibits 1.0 exhibits 1.0 has 1.0 maintaining 1.0 Have 1.0 significantly improves 1.0 encompasses features from 1.0 discussed in 1.0 discussed in 1.0 discussed in 1.0 discussed in 1.0 and 1.0 contributes to their high toughness through various energy dissipation mechanisms at different length scales 1.0 similar mechanisms such as 1.0 has 1.0 provides multiple material toughening mechanisms at different scales 1 Can be defined based on 1.0 affect 1.0 has 1.0 without a hierarchy creates 1.0 is adapted by adjusting 1.0 is 1.0 results in 1.0 are 1.0 is 1.0 features that limit current approaches 1.0 enables high toughness and defect tolerance 1.0 provides mechanistic basis for energy dissipation mechanisms at multiple scales 1 influenced by 1.0 results in interconnected, 3D, porous architecture 1.0 is a process for creating 1.0 significantly affect 1 consisting of 1.0 Static structural optimization 1.0 increases 1.0 Protein Filaments exhibit hierarchical structures at different scales. 1 enhance 1.0 turn into 1.0 have 1.0 Result from 1.0 closely adjacent to 1.0 orders of magnitude broader than 1.0 consisting of 1.0 design of 1.0 effect on 1.0 no consideration given to 1.0 used as fundamental building block 1.0 allow for 1.0 to increase 1.0 are grouped into 1.0 determine 1.0 widely utilized in 1.0 ~35°C 1.0 high 1.0 promotes healing and osseointegration 1.0 is used for 1.0 induce vaterite crystal formation 1.0 widely utilized in 1.0 SLS of PCL 1.0 widely utilized in 1.0 widely utilized in 1.0 used for 1.0 have 1.0 discussed 1.0 shows for both PBA and PMMA segments 1.0 Allow for 1.0 Refers to a material with a high modulus value. 1.0 Refers to a material with a low modulus value. 1.0 significantly improves 1 ~1.5 GPa for single drawn fibers 1.0 ~0.6 GPa for single drawn fibers 1.0 ~0.3 GPa for single drawn fibers 1.0 Influence 1.0 Falls significantly 1.0 is improved in composite hydrogels 1.0 is independent of diameter 1.0 decreases 1.0 resulted in 1.0 compared to 1.0 are 1.0 Involves the use of 1.0 at 1.0 form nanodomains 1.0 reveal 1.0 are investigated through 1.0 used for drop casting 1.0 imaged on 1.0 hair_segments_characterized_by 1.0 have due to higher pore structure, mechanical properties, and fracture resistance 1.0 are composite fibers that can be fabricated through blending or core-shell systems during electrospinning 1.0 have due to charge neutralization through viscoelastic contraction and helical micro-coil formation upon contact with conducting substrates 1.0 exhibit electronic and optical properties when made from 1.0 are commonly used fabrication method for composite fibers made through blending or core-shell systems 1.0 have higher fracture resistance due to 1.0 can generate a wide variety of buckling/coiled patterns through varying solution concentration, voltage, and frency of applied voltage during 1.0 have due to native chirality and high solution concentration 1.0 have due to 1.0 is 1.0 enables effective construction of heterojunctions 1.0 includes 1.0 includes 1.0 includes 1.0 main focus 1.0 limited focus due to limited understanding 1.0 have potential applications in various fields including catalysis, environmental remediation, biomedicine, food packaging, electrical energy storage, and flexible sensors. 1.0 Used in advanced engineering systems 1.0 Used in aerospace applications 1.0 Used in biomedical engineering applications 1.0 Used in electronic applications 1.0 Used in engineering systems 1.0 Used for various applications 1.0 have 1.0 have 1.0 Depends on 1.0 can be deposited through 'Structural Transformation by Electrodeposition on Patterned Substrates' (STEPS) 1.0 causes the formation of fibrous membranes with high surface area to volume ratio 1.0 allows for precise control of fiber diameter and morphology through 1.0 provides unique properties for potential applications in,enhances mechanical strength, thermal stability, electrical conductivity, and surface area due to,improves mechanical strength, thermal stability, electrical conductivity, and surface area due to 3.0 enabled by 1.0 synthesis of 1.0 Used for 1.0 Deposits onto 1.0 Requires 1.0 Uses 1.0 Produces 1.0 Used for 1.0 Results in 1.0 Uses 1.0 Results in 1.0 challenge for producing nanofibers 1.0 achieving 1.0 achieving 1.0 achieving 1.0 Electrospinning is a more specific term for electrostatic spinning. 1.0 Fabricate 1.0 Use 1.0 Use 1.0 Technique 1.0 produces 1.0 Combines 1.0 Allows for Creating 1.0 Combines 1.0 fabricated via 1.0 produced through 1.0 can be formed by randomly orienting fibers 1.0 fibers have diameters ranging from 1.0 surface roughness can be improved through addition of micro- or nanosized beads 1.0 can be developed through 1.0 Technique for producing fibers with tailored physical, chemical, and biological properties on micro- or nano-length scales adaptable to various cellular environments 1.0 fabricated through 1.0 Can Adjust 1.0 method for fabrication 1.0 promoted by 1.0 enhances 1.0 are directly related to. 1.0 are directly related to. 1.0 contributes to 1.0 Analyzed 1.0 crucial for functionality 1.0 significantly contributes to 1.0 is a critical mechanism contributing to 1.0 is a critical mechanism contributing to 1.0 is a critical mechanism contributing to 1.0 have 1.0 ChNFs possess unique properties that make them promising for various biomedical applications due to their biocompatibility and ability to promote cell adhesion and proliferation. 1.0 CNFs possess unique properties that make them promising for various biomedical applications due to their biocompatibility and ability to promote cell adhesion and proliferation. 1 have 1.0 Have 1.0 such as 1.0 is 1.0 shorter than 1.0 completely detaches from,remains adhered to 2.0 comes into contact with 1.0 is directly connected to 1.0 is mounted within 1.0 were investigated for 1.0 involves 1.0 has 1.0 has 1.0 is 1.0 failed through major tooth failure, minor tooth failure, and interfacial layer failure 1.0 plays an important role 1.0 attributed to 1.0 attributed to 1.0 exhibits 1.0 are initiated through fracture, plasticity, creep, fatigue, or sliding propagation 1.0 begin to rupture when limits are exceeded 1.0 is defined as a sudden loss of function or capacity to provide service during expected lifetime 1.0 mcl failure results in joint instability and osteoarthritis 1.0 occurred first due to 1.0 occurred 1.0 occurs earlier than 1.0 occurs later than 1.0 led to 1.0 led to 1.0 led to 1.0 occurs through 1.0 dominated by fiber rupture under compression,dominated by fiber rupture under tension 2.0 Approaches a finite value at 1.0 isDominatedBy 1.0 isDominatedBy 1.0 isDominatedBy 1.0 were investigated for 1.0 were investigated for 1.0 have 1.0 effect of 1.0 takes into account 1.0 takes into account 1.0 Occurs over 1.0 remains unchanged compared to 1.0 represents 1.0 controls 1.0 transfers shape onto 1.0 coats with SAM 1.0 applied on 1.0 acts as 1.0 Grown on 1.0 transferred onto 1.0 offer 1.0 Renaming for consistency and clarity 1 is converted into 1.0 dominance over 1.0 minimizes between 1.0 Influences 1.0 Influences 1.0 Synthesized by simultaneous irradiation of microwave and ultrasound,Synthesized by utilization of a complex matrix of succinylated gelatin and CTAB 2.0 Synthesized by homogeneous precipitation,Synthesized by seed-assisted precipitation,Crystallized in sodium metasilicate gel 3.0 Synthesized by phase transition from DCPD,Hydrothermally transformed from CS in NaH2PO4 aqueous solution,Synthesized by homogeneous precipitation method via an enzyme reaction of urea with urease 3.0 results in 1.0 is incorporated via biomineralization 1.0 for load-bearing functions 1.0 Prepared by electrospinning 1.0 Synthesized by precipitation in EtOH/H2O using n-alkylamines as template 1.0 Synthesized by precipitation 1.0 Grown through a cation selective membrane,Synthesized by hydrothermal treatment of Ca2+-H2O3+-urea aqueous solution 2.0 results in improved wettability for heterogeneous scaffolds 1.0 undergoes 1.0 have similar contact angles due to their porous structure increasing surface roughness 1.0 increases after acetone post-treatment 1.0 Enables 1.0 provides 1.0 is preserved 1.0 lacking 1.0 maintain 1.0 dictates through surrounding permeable shell structure 1.0 Provides 1.0 remains intact after _in vitro_ testing 1.0 decreases after acetone post-treatment 1.0 enhances under mode-II loading conditions 1.0 decreases with increasing 1.0 after 1.0 decreases to maintain constant surface area 1.0 shows 1.0 scattered 1.0 The mechanical polishing process may have resulted in surface roughness. 1.0 no significant change 1.0 smaller 1.0 increased from 1.0 RelatesTo relationship. 1.0 RelatesTo relationship. 1.0 RelatesTo relationship. 1.0 For surfaces with Gaussian roughness at higher velocities due to influence of lubrication and boundary layers. 1.0 For surfaces with Gaussian roughness at low sliding velocities. 1.0 For surfaces with Gaussian roughness at low sliding velocities. 1.0 Describes the relationship between surface roughness and local friction coefficient for surfaces with two-dimensional roughness. 1.0 Biomimetic surfaces are surfaces that provide fog collection functionality. 1.0 Superhydrophobic spike surfaces are surfaces that focus on water droplets and investigate water droplet dynamics. 1.0 Ultralhydrophobic surfaces occur on water droplets and reduce drag. 1.0 exhibit rapid spreading on 1.0 may lack slight imprecisions and variations found in 1.0 can generate 1.0 are inspired by 1.0 Involves bioinspiration 1.0 occurs at different length scales 1.0 Enables through 1.0 are covalently grafted onto 1.0 is 1.0 is used as a building block for 1.0 is used as a building block for 1.0 exhibits 1.0 is derived from,is derived from 2.0 can adjust rheological behavior through electrostatic interaction 1.0 brings unique functional attributes through spinning techniques 1.0 templated production facilitated by instantaneous and extensive lignin adsorption 1.0 offers opportunities for electrostatic attraction 1.0 enables strong coupling of formed nanoparticles to ChNF support 1.0 are more sensitive to the surrounding aqueous environment at low concentrations 1.0 can be adjusted through changing pH at less charged surface conditions 1.0 occurs at high concentrations due to strong intermolecular forces 1.0 can be adjusted through changing pH at high pH 1.0 is relevant to 1.0 depends on 1.0 is 1.0 has 1.0 is related to 1.0 enables 1.0 achieves 1.0 is related to 1.0 requires 1.0 makes full use of 1.0 is dispersed in 1.0 requires 1.0 aim to 1.0 can be isolated as 1.0 can be isolated as 1.0 with unique properties 1.0 upon isolation 1.0 is related to 1.0 is related to 1.0 is related to 1.0 is 1.0 upon isolation 1.0 is dispersed in 1.0 requires 1.0 has 1.0 has 1.0 bonds 1 produced by 1 Used to determine elastic modulus and thermal expansion coefficients 1.0 Alpha-chitin has lower thermal expansion coefficient than 1.0 More specific description 1.0 challenging but attractive for 1.0 are promising candidates for applications in 1.0 have 1.0 are promising candidates for applications in 1.0 have 1.0 such as 1.0 such as 1.0 limits 1.0 Is an extension of combining ion beam lithography and e-beam lithography that enables direct 3D patterning without a photomask with high resolution and applicability to various biopolymers. 1.0 is added to 1 have strong interactions 1.0 provide environmental benefits,are renewable, biodegradable, and green 2.0 transform into nanocomposites 1 are created from 1 offer 1.0 offer 1.0 offer 1.0 Can be used to create complex 3D nanopatterns on through a process called e-beam lithography. 1.0 Can be used to create complex 3D nanopatterns on through a process called ion beam lithography. 1.0 hierarchically structured composites include algae-derived bioplastics 1.0 hierarchically structured composites include biodegradable polymer derived from algae 1.0 hierarchically structured composites include biodegradable polymer derived from renewable resources 1.0 hierarchically structured composites have a specific cellulose concentration 1.0 fibrous substrate contains chopped fibers 1.0 hierarchically structured composites have a specific feedstock particle size 1.0 hierarchically structured composites contain fibrous substrate 1.0 fibrous substrate includes flax 1.0 fibrous substrate includes flax waste fibers 1.0 fibrous substrate includes hemp 1.0 fibrous substrate contains loose fibers 1.0 mycelium composite foams is a type of hierarchically structured composites 1.0 hierarchically structured composites include porous structures generated during yeast fermentation 1.0 yeast biomass includes S. Cerevisiae 1.0 hierarchically structured composites include yeast biomass 1.0 have 1.0 are present in 1.0 show 1.0 have 1.0 are 1.0 are 1.0 consist of 1.0 connects to 1.0 composed of 1.0 formed by 1.0 has 1.0 derived from 1.0 has 1.0 has 1.0 has 1.0 has 1.0 has 1.0 Correspondence 1.0 Performance of 1.0 has 1.0 has 1.0 relates to 1.0 affects under tension 1.0 increases 1.0 increases by 191% 1.0 Effective through MPL due to ability to distinguish individual beams fabricated one by one 1.0 Technique 1.0 Technique 1.0 Achieved through 1.0 Technique 1.0 using 1.0 Has geometrical parameters 1.0 depends on 1.0 depends on 1.0 depends on 1.0 Affects 1.0 direct relationship 1.0 represents the ratio of 1.0 is 1.0 The efficiency of a Material Property Calculation can be affected by the choice of Software Package. 1.0 improves 1.0 improves 1.0 improves 1.0 describes 1.0 varied depending on 1.0 Affects Mechanical Behavior 1.0 influence 1.0 manipulation 1.0 is a function of 1.0 describes 1.0 simulates 1.0 Results interpretation requires consideration of loading conditions. 1.0 Affects Mechanical Behavior 1.0 To fully understand their behavior 1.0 investigated under 1.0 Predicts Behavior Under 1.0 used during compression 1.0 used 1.0 used 1.0 describes 1.0 dependency 1.0 includes 1.0 Affects Mechanical Behavior 1.0 can be easily incorporated into 1.0 involves 1.0 used for bone region,used for cartilage region 2.0 requires optimization 1.0 affects 1.0 Determined through 1.0 Determined through 1.0 Incorporates 1.0 enhance 1.0 improve 1.0 Material properties are incorporated into anatomical structures. 1.0 Material properties include nonlinear elasticity. 1.0 integrated with 1.0 influence 1.0 obtained for 1.0 Describes the dynamics of 1.0 Expressions summarized in paper 1.0 Expressions summarized in paper 1.0 related to 1.0 related to 1.0 related to 1.0 affect 1.0 subjected to 1.0 subjected to 1.0 must be controlled effectively 1.0 must be controlled effectively 1.0 provide 1.0 average value 1.0 is 1.0 is,SD 2.0 is a part of 1.0 utilize 1.0 utilize 1.0 is the separation of layers within a laminate 1.0 was displayed, resulting in reduced dent depth compared to control specimens 1.0 compared to 1.0 follow 1.0 follow 1.0 follow 1.0 provide 1.0 related to 1.0 related to 1.0 affect 1.0 affect 1.0 affect 1.0 utilize 1.0 utilize 1.0 provide 1.0 Subjected To 1.0 is dominated globally by 1.0 is 1.0 detects 1.0 Commencement compared to octet truss 1.0 occur 1.0 preceded by splitting or intralamellar separation under compression 1.0 guards against 1.0 increases 1.0 increases 1.0 increases 1.0 Employed 1.0 Crucial for examining impact resistance 1.0 Provides valuable material parameters 1.0 Less commonly used 1.0 Offers unique insight into impact resistance 1.0 Required above 10^6 s^-1 1.0 Breaks down above 10^6 s^-1 1.0 Provides valuable material parameters 1.0 determined by 1.0 responsible for 1.0 Influenced by 1.0 Influenced by 1.0 Influenced by 1.0 outperform constituent materials due to nacreous architecture design 1.0 Represents the internal force per unit area acting on a surface within a material. 1.0 causes cracks to form during three-point bending tests 1.0 Stress is a measure of the elastic response of a material, which is influenced by factors such as fiber alignment and network structure. 1.0 Mechanics is a field of study that deals with the behavior of materials under applied forces, including stress and deformation. 1.0 At initial elastic deformation stage 1.0 increases until ultimate breaking stress 1.0 remains relatively constant due to 1.0 are related to the relationship between stress and structure during bone remodeling 1.0 sharp drop after initial peak followed by fluctuations 1.0 calculated by summing mass times velocity squared and force times distance for each atom, then dividing by total volume 1.0 calculated using provided formula 1.0 Decreases due to damage 1.0 increases with 1.0 The process of dividing things into groups or categories based on their common characteristics or attributes. 1.0 The act of bringing things together based on their similarities or differences. 1.0 The process of creating a hierarchical categorization system based on classifying objects into groups. 1.0 The process of creating a taxonomic classification system based on categorizing objects into groups. 1.0 The hierarchical arrangement of classes or categories in a systematic way. 1.0 The arrangement of classes or categories in a hierarchical order based on their relationships and dependencies. 1.0 insights into 1.0 based on 1.0 crucial to understanding properties 1.0 The systematic arrangement of categories or classes used to classify organisms according to their evolutionary relationships. 1.0 The hierarchical arrangement of taxonomic categories based on their relationships and dependencies. 1.0 equivalent to 1.0 equivalent to 1.0 can lead to crystal dissolution due to excessive mechanical forces 1.0 studies enabled by 1.0 Atomic Force Microscopy (AFM) is a tool used for nanomechanical characterization. 1.0 Commonly employed to describe domains observed in AFM experiments on protein structures 1.0 Validation through experimental technique 1.0 Provides starting point for all atomistic simulations 1.0 Validation through experimental technique 1.0 Provides starting point for all atomistic simulations 1.0 Measures 1.0 is a new routine for analyzing complex force indentation measurements obtained from 1.0 Compare 1.0 While concurrently 1.0 While concurrently 1.0 under environmental conditions 1.0 used to observe 1.0 is an example of 1.0 reveals 1.0 forced to adopt due to limitations of current nano-indentation instruments 1.0 lowest level identified 1.0 is related to 1.0 Collagen molecules can be referred to as single triple helices. 1.0 dependence,increases significantly as incubation time increases 2.0 adsorb onto,interact strongly with through synergistic interfacial interactions,resist desorption even under extensive rinsing,balance lateral interaction,result in preferential and periodic interaction sites that lead to cross striation 5.0 forms through glucose-mediated reactions between amino acids 1.0 can agree with 1.0 can be associated with 1.0 can be revealed by 1.0 can be severely altered by 1.0 can range from 1.0 can lead to,can induce significant structural changes near 2.0 can be associated with 1.0 can affect 1.0 calculated at nanoscale level 1.0 Composed of 1.0 facilitates 1.0 consists of 1.0 are within 1.0 studies enabled by 1.0 Seen within fiber viewed side-on 1.0 Visible in two-photon images 1.0 Seen within fiber viewed side-on 1.0 composed of 1.0 organize into 1.0 studies enabled by 1.0 enables 1.0 enables 1.0 studies enabled by 1.0 organize into 1.0 studies enabled by 1.0 studies enabled by 1.0 enables 1.0 enables 1.0 studies enabled by 1.0 studies enabled by 1.0 Reduces likelihood of damage localization as strain hardening becomes stronger. 1.0 anchor cells through transmembrane proteins 1.0 is 1.0 match refractive index with 1.0 match refractive index with 1.0 Present Antigens 1.0 closely resembles dimensions of 1.0 Protein that is a major component of ECM and facilitates cell adhesion and migration. 1.0 Protein that is a major component of ECM and provides a scaffold for cell adhesion and migration. 1.0 decouples 1.0 mimics 1.0 decouples 1.0 interact positively with 1.0 used to accurately predict deformation and joint motion 1.0 accurately predicted 1.0 exhibit 1.0 incorporated into hyperelastic constitutive models 1.0 can be used as implants for 1.0 preferentially reinforced 1.0 embedded in between 1.0 influence 1.0 subjected to 1.0 researches 1.0 is a more specific term for 1.0 Analysis for determining properties 1.0 allows for microfibril sliding during normal physiological loading 1.0 enables realignment of microfibrils in the direction of applied load during normal physiological loading 1.0 employed for 1.0 no polymorphic transformations 1.0 no polymorphic transformations 1.0 utilizes 1.0 utilizes 1.0 utilizes 1.0 provides 1.0 are used for 1.0 provides information about 1.0 provides information about 1.0 provides maps with contrast based on 1.0 intensity of 1.0 Are consistent with 1.0 can be used as implants for 1.0 is a specific type of 1.0 serve as 1.0 DRTMCs are expanded at high temperatures by introducing oxidation resistance requirements for expanding application at high temperatures,DRTMCs are expanded at high temperatures by introducing creep resistance requirements for expanding application at high temperatures 2.0 can lead to excessive bone formation and density 1.0 can result in increased bone resorption and remodeling 1.0 results in osteopenia 1.0 mediates inhibition of 1.0 significantly decreased the expression of 1.0 normal functions in regulating 1.0 controls differentiation of 1.0 controls differentiation of during skeletal development 1.0 controls differentiation of 1.0 can lead to excessive bone formation and density 1.0 can result in increased bone resorption and remodeling 1.0 mimic hierarchical structure of 1.0 no correlation with age for either dehydrated or rehydrated conditions 1.0 replaces 1.0 replicate only part of 1.0 investigate mechanisms contributing to 1.0 displays more plentiful and bulky 1.0 consists of 1.0 which may contribute to 1.0 is 1.0 includes 1.0 includes 1.0 occurs within 1.0 selective cellularization enabled 1.0 Responsible for 1.0 Responsible for 1.0 Promotes 1.0 is a crucial indicator of 1.0 Affect activity of 1.0 Produce 1.0 Affect activity of 1.0 primarily distributed at 1.0 primarily located around 1.0 promoted proliferation compared to blank medium 1.0 evaluated for biocompatibility 1.0 strength decreased 1.0 exhibits discrete softening or stiffening behavior at very large deformations greater than 200% 1.0 exhibits softening 1.0 include 1.0 exhibited except for 1.0 investigation of 1.0 studied through experimental and simulation methods 1.0 occurred first 1.0 demonstrated by 1.0 exhibited similar strengths 1.0 shearing was the failure mechanism for rectangular and triangular geometries 1.0 all geometries showed an increase in strength 1.0 strength decreased 1.0 strength increased 1.0 Open questions remain regarding 1.0 Have selected this geometry for a mechanical purpose 1.0 Open questions remain regarding 1.0 Reduced for a given magnitude of loading 1.0 has 1.0 quantified in 1.0 is 1.0 crucial for 1.0 forms ordered domains within 1.0 applications in 1.0 applications in 1.0 applications in 1.0 Are subject to biomedical engineering research 1.0 Renaming 1.0 Is becoming increasingly popular 1.0 Has direct applications in 1.0 Potential For Revolutionizing 1.0 has potential impact on 1.0 Renaming for consistency and clarity 1.0 Renaming 1.0 Through 1.0 Enables 1.0 Enables 1.0 Can create 1.0 Involves 1.0 Involves 1.0 Involves 1.0 Through 1.0 Utilize 1.0 Utilize 1.0 Utilize 1.0 Achieve 1.0 Gradient distribution of 1.0 living organisms provide understanding required for 1.0 Similarity 1.0 Component 1.0 show similar microstructures 1.0 resulting in 1.0 in response to 1.0 inspire design for soft actuators with high mechanical properties due to their gradient structures (Cao et al., 2020). 1.0 inspire design for biomimetic robots that recycle energy due to their gradient structures. 1.0 have potential to save energy through design due to natural phenomenon of beetles that can harness kinetic energy from induced surface energy gradients of water to return to familiar habitats. Demonstrated in a fully soft robot developed by Ding and colleagues that moves at a speed of 5.5 body lengths per second, seven times faster than previously reported robots (Lyu et al., 2019). 1.0 Gradient structures used to improve separation efficiency and catalytic activity in enzymatic membrane bioreactors. 1.0 encompasses 1.0 contain 1.0 improves both the peak force and total energy absorption of the obtained ceramic-polymer composites 1.0 features to avoid property mismatch 1.0 features 1.0 features 1.0 varying structural architectures based on 1.0 determines the degree of 1.0 displays 1.0 display 1.0 contributes to high strength-to-weight ratio and toughness 1.0 exhibits 1.0 ends at 1.0 starts at 1.0 progresses through 1.0 Replaces longer and less commonly used term with more concise and widely used term in materials science while preserving meaning. 1.0 results from 1.0 enhances thermal stability 1.0 interplay 1.0 formed between 1.0 Primarily Attributed To 1.0 Form Between 1.0 not explicitly modeled 1.0 both fracture 1.0 formed between 1.0 is a versatile form of 1.0 is stabilized via 1.0 is a specific type of interaction between hydrogen and electronegative_atoms that plays a crucial role in biological self-assembly. 1.0 influences peptide binding 1.0 contribute to rearrangement of 1 form 1.0 play a crucial role in defining strength properties 1.0 Upper limit of 3-4 H-bonds 1.0 rupture leads to unfolding 1.0 form 1.0 break sequentially 1.0 corresponds to 1.0 facilitates 1.0 Is related to 1.0 Is related to 1.0 are broken under,reform when removed 2.0 is attributed to 1.0 are an important factor in 1.0 form 1.0 form 1.0 form 1.0 determines the degree of 1.0 has 1.0 cannot be combined within a single scale 1.0 value of 80% found 1.0 denotes ability to cope with environmental changes 1.0 does not lead to catastrophic failure 1.0 does not lead to catastrophic failure 1.0 reflects characteristic slow degradation of system's function after damage 1.0 represents internal robustness 1.0 often used to increase 1.0 has 1.0 Robustness is a mechanical property exhibited by protein filaments. 1.0 demonstrate 1.0 parameter insensitivity in regard to missing hydrogen bonds for AH protein structure 1.0 affects quality of 1.0 is not sufficient to comprehensively characterize 1.0 deviation of a circle's center from its boundary,also contributes to overall spatial disorder 2.0 shortest distance between two adjacent nanotubes 1.0 dictates bioactive potential 1.0 including 1.0 degree of disorder in the distribution of nanotubes 1.0 also contributes to overall spatial disorder 1.0 contributes to 1.0 thinner due to non-gradient pore structures 1.0 measured for MEMS meshes with different numbers of layers 1.0 have potential for 1.0 have potential for 1.0 reduced 1.0 67% reduction compared to commercial lead aprons 1.0 allowed for stabilization and integration without compromising substrate network through secondary functional retanning process 1.0 24.7% lower than commercial lead aprons 1.0 due to natural comfort properties including high moisture vapor permeability and cooling effect 1.0 threefold increase 1.0 340 times higher than commonly used synthetic and natural polymers 1.0 reduced backscatter radiation 1.0 Contribute to 1.0 can be prepared in 1.0 denotes the region at the interface between the matrix and reinforcing phase where interfacial interactions occur 1.0 Used to adjust laminated pressures for analyzing interface failure 1.0 Cohesive Zone Model (CZM) utilizes Cohesive elements 1.0 Finite element model utilizes Cohesive elements 1.0 Interfacial adhesive layers are inserted into Cohesive elements 1.0 Interface failure initiated by higher shear stress caused by bending load 1.0 Present under bending load 1.0 is where cracks begin and propagate upward 1.0 is where damage initially occurs 1.0 is located between 1.0 is a type of 1.0 is a type of,transforms into at high forming pressures 2.0 is compared to 1.0 have been studied 1.0 are observed in 1.0 structural chemistry is complex due to 1.0 exhibits 1.0 enhance strength and toughness 1.0 is a type of 1.0 is significantly greater than that of 1.0 are composed of 1 refers to 1.0 have a mismatch in toughness with 1.0 Are more sensitive 1.0 can be used as implants for 1 hardened with 1.0 Calcium phosphate is a major component of bone. 1.0 has 1.0 has 1.0 Is imprecise 1.0 Is a type of 1.0 Results in 1.0 Results in 1.0 Exhibits 1.0 Is compared to 1.0 The crystal lattice 1.0 similar to 1.0 are part of 1.0 And Resistance to Crack Propagation Due to Multiple Cracking Accompanied by Multilevel, Irreversible Interfacial Slip 1.0 exhibit similar mechanical properties 1.0 provides additional supportive and protective functions 1.0 provides additional supportive and protective functions 1.0 is a type of 1.0 isPartOf 1 governed by 1.0 observed 1.0 Bone is a specialized connective tissue that provides protection through its structural support. 1.0 Bone tissue may also contain pores or channels that can impact its properties and behavior. 1.0 The protein content of bone tissue can also impact its properties and behavior. 1.0 The water content of bone tissue can affect its properties and behavior. 1.0 are part of 1.0 is composed of 1.0 is composed of 1.0 yields 1.0 is 1.0 are part of 1.0 combines with 1.0 are part of 1.0 is 1.0 is 1.0 is 1.0 yields 1.0 is stronger than 1.0 responds to 1.0 is weaker than 1.0 is weaker than 1.0 occurs in 1.0 may not be the primary contributor to electromechanical coupling effects 1.0 is a part of 1.0 are resisted by 1.0 is used for additional energy dissipation 1.0 is a part of 1.0 is absorbed by 1.0 is a part of 1 is used for additional energy dissipation 1.0 are observed in 1.0 Is Described By 1.0 Has 1.0 Occurs During 1.0 Occurs During 1.0 Associated With 1.0 Consists Of 1.0 Occurs During 1.0 establishment of 1.0 can be used as implants for 1.0 is associated with 1.0 strategy for improving or customizing properties 1.0 can be used for 1.0 can be used as 1.0 can be used as implants for 1.0 strategy for improving or customizing properties 1.0 can adopt non-planar shape for monitoring changes 1.0 for 1.0 can be used as 1.0 can be used for 1.0 can be used as implants for 1.0 has 1.0 offers potential applications for 1.0 can be used as implants for 1.0 can be used as implants for 1.0 can adopt 1.0 exhibits interesting responses for 1.0 has been tested as 1.0 can be used as implants for 1.0 can be used for 1.0 has been integrated into 1.0 strategy for improving or customizing properties 1.0 are flexible 1.0 can be used as 1.0 has been integrated into 1.0 can be used as implants for 1.0 has been used for 1.0 can be used as for 1.0 can be used as for wound repair 1.0 offers potential applications for 1.0 alternative to 1.0 can adopt non-planar shape for monitoring changes 1.0 has been used to design 1.0 can be used as for wound repair 1.0 can be used as 1.0 are challenging due to 1.0 have 1.0 offer advantages such as 1.0 have 1.0 can hold significant amounts of 1.0 domains of 1.0 is resistant to 1.0 used as a scaffold upon which 1.0 is three times stronger than 1.0 is resistant to 1.0 is resistant to 1.0 domains of 1 shows 1.0 doped with 1.0 doped with 1.0 as brick 1.0 as mortar 1.0 is a type of 1.0 have been studied 1.0 consists mostly of 1.0 Contribution relationship 1.0 surrounded by 1.0 contains 1.0 surrounded by 1.0 also represents 1.0 composed of 1.0 gradually change to 1.0 gradually change to 1.0 is 1.0 exhibits a distinctly mesoporous structure composed of 1.0 consists of 1.0 enables during metabolism 1.0 investigated nonlinear swelling behavior at cellular scale using phase-contrast X-ray tomography 1.0 is 1.0 is related to 1.0 preserved hierarchical structure 1.0 had,had 2.0 can restore elasticity upon mechanical loading and unloading when partially removing 1.0 can be produced as a light-weight material by completely delignifying while preserving only a small proportion of 1.0 Replicates structure with great detail 1.0 Composition relationship 1.0 derived 1.0 refined through 1.0 enhanced through 1.0 a type of 1.0 performed on 1.0 increase through 1.0 in metallic implants 1.0 impact on 1.0 synthesizing and refining 1.0 Changes 1.0 leads to 1.0 leads to 1.0 as low as 1.0 enhanced through 1.0 used to enhance properties for 1.0 achieved through 1.0 inertness to 1.0 used for improving performance and safety of 1.0 explores 1.0 kept constant 1.0 have 1.0 combine 1.0 due to 1.0 requires 1.0 affects 1.0 improves 1.0 exhibits 1.0 higher 1.0 depends on 1.0 exhibit 1.0 exhibit 1.0 are suitable for 1.0 are suitable for 1.0 are suitable for 1.0 are suitable for 1.0 are suitable for 1.0 are suitable for 1.0 are suitable for 1.0 are suitable for 1.0 generates directly used in different 3D printing processes 1.0 generates 1.0 generates 1.0 specific type 1.0 specific type 1.0 controlling 1.0 controlling 1.0 specific type 1.0 component of 1.0 specific type 1.0 is calculated for via equations 1.0 varies 1.0 is 1.0 The shape parameter is a property of Weibull Fibers (type-(i)) 1.0 has 1.0 enables 1.0 employs 1.0 allow beam sizes down to 1 micron at undulator sources 1.0 are given 1.0 Is likely to see significant growth 1.0 Is likely to see significant growth 1.0 Is likely to see significant growth 1.0 have applied cutting-edge developments in instrumentation 1.0 occurs at nanoscale due to 1.0 To form composites with allied spaced orientations 1.0 exhibit,refer to 2.0 mimic the mechanical properties of 1.0 visualizes and measures 1.0 is found in 1.0 can be categorized based on materials used into two groups 1.0 show 1.0 exhibit 1.0 exhibit 1.0 Applied to 1.0 are used for comparing 1.0 are used for comparing 1.0 Both terms refer to the materials that make up a larger structure or system. 1.0 used for 1.0 is a component of 1.0 have carried out pioneering work in microbeam diffraction 1.0 are brief considerations for scanning techniques 1.0 Results interpretation requires consideration of sample preparation. 1.0 estimated at vanishing loading rate 1.0 have significant impacts on 1.0 increases by redistributing stress more uniformly along the whole length of the interface area.,also increase as delamination proceeds due to the increasing peeling line length. 2.0 predicts scaling with 1.0 exceeded previously reported structures by 1.0 impressive values: 41 kPa in water and 154 kPa in silicone oil 1.0 is around 1.0 with optimal concentrations leading to high without compromising elasticity 1.0 for loading rate of 0.00005 A/step 1.0 for loading rate of 0.0002 A/step 1.0 for loading rate of 0.000025 A/step 1.0 with decreasing loading rate 1.0 required to trigger 1.0 occurs at 1.0 calculated from critical force obtained by curve fitting 1.0 exhibit 1.0 is associated with 1.0 is related to via equations 1.0 is related to via equation 1.0 reaches during high strain-rate compression tests 1.0 affects 1.0 has 1.0 is for each fiber 1.0 displays 1.0 Focus on improving 1.0 composite 1.0 made of 1.0 are less sensitive to 1.0 such as cracks and voids 1.0 can enhance 1.0 can enhance 1 Distributed randomly over volume 1.0 causes 1.0 Can significantly affect 1.0 provide 1.0 shows 1.0 can be enhanced through 1.0 covered by 1.0 covered by 1.0 mimics structural flaws found in actual laminar networks 1.0 are due to 1.0 are due to 1.0 can increase 1.0 can increase 1.0 can increase 1.0 describes 1.0 even after force is relieved 1.0 indicates extent to which material can be deformed before fracture 1.0 estimated by measuring length of plateau region beyond initial yielding 1.0 Mainly resist tensile loading 1.0 varies depending on 1.0 dependence on 1.0 dependence on 1.0 dependence on 1.0 investigates 1.0 confers 1.0 confers 1.0 Is a characteristic of 1.0 are due to 1.0 have 1.0 Have 1.0 have 1.0 The laminated keratin cells in bighorn sheep horn arrange approximately 30 degrees to the tubule direction. 1.0 The laminated keratin cells in mountain goat horn align parallel to the longitudinal direction. 1.0 The laminated keratin cells in pronghorn horn align parallel to the longitudinal direction. 1.0 is crucial for achieving 1.0 promotes 1.0 along 1.0 can be achieved through 1.0 of both 1.0 Alignment can be induced by shear forces. 1.0 Nanofibrillar materials exhibit alignment. 1.0 control 1.0 control 1.0 affects 1.0 in tensile direction 1.0 observed during in situ mechanical testing using small-angle X-ray scattering 1.0 Relationship between the two concepts is that 'preferential orientation' is a synonym for 'alignment' 1.0 improves 1.0 Nanocomposites have improved thermal stability. 1.0 subclass of 1.0 can have potential applications in 1.0 Reviewed Recent Advances In Research 1.0 can be influenced by 1.0 Produced using living bacteria and 3D-printed materials 1.0 have 1.0 is not present for spherical particles with a diameter of 10 nm and an amorphous polymer with a radius of gyration of around 5 nm 1.0 achieve uniform component distribution and adate scale of uniformity through 1.0 Nanocomposites can also contain graphene oxide nanosheets. 1.0 potential applications 1.0 significantly improved by addition of graphene oxide (GO) 1.0 Nanocomposite design is used for 1.0 occur 1.0 have 1.0 have 1.0 have 1.0 respond, maintain, and change shape 1.0 inspire design for materials with sustainable performance and self-healing capabilities due to their gradient characteristics (SiScience, 2021). 1.0 has at each time point 1.0 have exhibited 1.0 displays 1.0 observed upon dehydration 1.0 is another term for 1.0 inspired by 1.0 improved during impact 1.0 significantly improves during impact 1.0 used for validation 1.0 Are subject to computational modeling research 1.0 Can be simulated using computational modeling 1.0 investigated effect on materials inspired by biological materials 1.0 is clarified by adopting CB structure 1.0 Moved on to 1.0 Recreated and tested 1.0 Are subject to computational modeling research 1.0 applied to 1.0 significantly improves 1.0 significantly improves 1.0 applied to 1.0 quantifies 1.0 influences 1.0 Describes using flow lines 1.0 variation represented in simulations by 1.0 with 1.0 predicts based on neck region and locked part height 1.0 quantifies for complete mold release 1.0 involves 1.0 of mold allowing complete release from master 1.0 involves in PDMS mold rather than master 1.0 replicates 1.0 enables 1.0 is compatible with 1.0 displays 1.0 creates 1.0 creates 1.0 provides 1.0 demonstrates 1.0 reproduces 1.0 validates analytical model 1.0 verified by 1.0 involves casting into master 1.0 is 1.0 enhances 1.0 was covalently bound to 1.0 Synonym relationship 1.0 insensitivity 1.0 occurs up to a strain value of 5.5% 1.0 in normal direction is much smaller than in transverse direction of the cuticle due to honeycomb-like structure 1.0 promote 1.0 combines 1.0 are 1.0 are 1.0 Prevents collapse due to capillary forces during conventional air drying 1.0 Preserves morphology of nanopores during freeze-drying through sublimation of small molecular solvents, preventing collapse during conventional air drying 1.0 Removes small molecular solvents through sublimation during freeze-drying 1.0 Undergoes 1.0 removal of 1.0 Compared to hierarchical scaffolds with appropriately controlled pore sizes 1.0 inaccuracy 1.0 Enables 1.0 involvement 1.0 conducted using 1.0 Of multi-cell square thin-walled structures 1.0 Is used for 1.0 involvement 1.0 uses 1.0 implement iterative processes for bone remodeling simulations 1.0 required for complex biological materials 1.0 involves empirical potentials 1.0 part of 1.0 part of 1.0 critical challenge due to high computational costs involved 1.0 involves 1.0 may involve 1.0 associated with 1.0 challenge in determining how structural features 1.0 In 1.0 To optimize their design for 1.0 offer advantages such as 1.0 applicable to 1.0 made regarding 1.0 exhibits exceptional mechanical properties due to 1.0 occur in P(AM-AN-MA)/Fe3+ hydrogel 1.0 provides for strong and weak bonds 1.0 disintegrates 1.0 display 1.0 provides for strong and weak bonds 1.0 exhibits at large maximum strain after an extension of waiting time 1.0 provides due to a unique combination of strong and weak bonds 1.0 exhibits at maximum strain of 1.0 display 1.0 prepared by 2 mM AM, 0.35 mM MA, and 0.01 m FeCl3 1.0 possesses 1.0 occur in 1.0 are flexible at,allow for lower mechanical resistance during cell movement 2.0 is modulated over a large window from 1.0 Compared to the baseline is observed, but decreases due to tooth failure occurring in suture systems with high stress concentrations at the base of the teeth owing to the smaller cross-al area. 1.0 displayed 1.0 disintegrates 1.0 breaks until rupture 1.0 dominates more than anisotropy 1.0 method for achieving 1.0 Has a negative relationship 1.0 12.80 wt% 1.0 varies polymerically 1.0 Aligned array structures can be created through manipulation or change of e-spin set-up or driving force. 1.0 Appropriate 3D collectors can be used for straightforward assembly. 1.0 Bacteria can be encapsulated and maintained for months at low temperatures within e-spin fibers. 1.0 through 1.0 Iron oxide is a major component of some types of bacteria. 1.0 include 1.0 is involved in 1.0 Can be used to 1.0 Capable of 1.0 used as bio-template for synthesizing 1.0 grown on 1.0 captured on 1.0 Bioactive agents are incorporated into e-spin nanomaterials. 1.0 Incorporation of bioactive molecules into e-spin nanomaterials is achieved through strategies similar to drug loading. 1.0 Introduced for controlled delivery 1.0 being incorporated into scaffolds 1.0 release 1.0 Bioactive entities are incorporated into e-spin nanomaterials. 1.0 Connective tissue-mimicking structures can be created. 1.0 Crimping structures absorb more components or strain due to their flexible structures and bending characteristics. 1.0 ECM-mimicking structures can be created through assembly. 1.0 Hybrid structures can be created through assembly. 1.0 show significant improvement in 1.0 have a reduction in stiffness accompanied by an increase in 1.0 Individual components can be combined to create assemblies. 1.0 Patterned structures can be created with controllable shape and orientation. 1.0 Direct e-spin followed by immersion is used for fabrication of PELL (poly(ethylene oxide)-l-lactic acid) nanomaterials. 1.0 Ropes can be created through multilayer e-spin. 1.0 Tubes can be created through multilayer e-spin, assembly by 2D electrospun fibrous mats or using sui collectors as templates. 1.0 Resulted in 1.0 have 1.0 is 1.0 results in 1.0 are arranged more randomly 1.0 performs 1.0 inhabits 1.0 has 1.0 contains 1.0 each have 1.0 are oriented at 1.0 Choice 1.0 Tibia cuticle structure encompasses three major layers: exocuticle, intermediate layer, and endocuticle. 1.0 forms 1.0 varies 1.0 present 1.0 Are formed by stacking first-order lamellae 1.0 Compression occurs rapidly at low draw ratios and remains relatively constant at higher draw ratios for CNC/PVA composite. 1.0 Crack propagation behavior is different depending on the amount of polymer present for CNC/PVA composite. At lower polymer contents, delamination of CNC layers and low tortuosity are observed. At higher polymer contents, constrained microcracking and ligament formation are observed. 1.0 CNC/PVA composite undergoes drawing experiments to gain deeper understanding of mechanical behavior and phase transition. 1.0 Hydration during drawing experiments dynamizes polymer matrix for CNC/PVA composite. 1.0 Increasing amounts of CNCs lead to stiffening of composite materials at the expense of elongation at break for CNC/PVA composite. 1.0 Increasing amounts of CNCs lead to strengthening of composite materials at the expense of elongation at break for CNC/PVA composite. 1.0 By a distance of 4.5 μm three consecutive times 1.0 Compression as a force acting on inner MTs 1.0 Compression as a force acting on outer MTs 1.0 exhibits asymmetric mechanical properties 1.0 and relaxation simulations are conducted 1.0 playingASignificantRoleInStiffeningTheFoam 1.0 causesAxialSplitting 1.0 causesConcertinaBucklingModeWithoutObviousSplittingInWetRachis,causesImprovedCompressiveStabilityComparedToHollowCortexInWetRachis 2.0 causesConcertinaBucklingModeWithoutObviousSplittingInWetRachis,causesConcertinaBucklingModeWithoutObviousSplittingInWetRachis 2.0 arises from 1.0 is resisted by multiple toughening mechanisms 1.0 occurs simultaneously across and along macrofibers 1.0 reveals the presence of interlaminar sliding and extrinsic toughening mechanisms 1.0 followed by crack propagation 1.0 allows for visualization at nanoscale resolution 1.0 is 1.0 results in increased fracture resistance 1.0 resilience 1.0 expands 1.0 prevents 1.0 prevent 1.0 effectively prevent when crack is perpendicular to fiber growth 1.0 prevents 1.0 influences 1.0 is dependent on 1.0 significantly influences 1.0 Due to 1.0 plays crucial role in delaying failure 1.0 Significantly influences the mechanical response 1.0 increases through structural modification 1.0 Strengthening can further enhance synergy (strength-plasticity) 1.0 have been found to be most effective in refining grain boundaries for 1.0 occurs 1.0 effects 1.0 effects 1.0 type of 1.0 opposite property 1.0 measurement method 1.0 constituent 1.0 type of 1.0 external factor affecting collagen gel properties 1.0 process 1.0 used for describing material constituents 1.0 measured 1.0 component 1.0 depends largely on 1.0 has an average value of 1.0 type of 1.0 measures 1.0 type of 1.0 is conducted 1.0 Corresponds to 1.0 Indicates 1.0 Reveals 1.0 Finite element analysis can be used to study the behavior of human knee-models. 1.0 calculated the stress distribution of subjected to a spatial concentrated force 1.0 Confirmed 1.0 quantified in 1.0 used for 1.0 assigned to 1.0 description 1.0 creates 1.0 The magnetic field is an external factor that affects the behavior of the light absorber. 1.0 quantifies 1.0 is initiated from 1.0 provides 1.0 component 1.0 description 1.0 address 1.0 used for 1.0 used for 1.0 Correlated with 1.0 is a part of 1.0 is a part of 1.0 consists primarily of 1.0 is 1 is 1.0 is 1.0 inspired by 1.0 contains 1.0 interface between 1.0 contains 1.0 consists of 1.0 contributes to 1.0 can withstand 1.0 bridges delamination cracks 1.0 act as 1.0 results from 1.0 is the consequence of 1.0 is 30-40 times greater than 1.0 Nacre is similar to laminated structures 1.0 the brick-and-mortar microstructure of nacre provides it with high strength and toughness. 1.0 the inner nacreous layer of abalone shells is composed of nacre. 1.0 the outer prismatic layer of abalone shells is composed of nacre. 1.0 nacre is composed of stacked platelets of calcium carbonate and organic matrix. 1.0 nacre has high shear strength due to its brick-and-mortar microstructure. 1.0 found in 1 all factors contributing to 1.0 leads to 1.0 leads to 1.0 leads to 1.0 leads to 1.0 is identified as a key feature in the mechanics of 1.0 mimics 1.0 becomes significantly stiff as biopolymer chains approach full extension 1.0 represents the volume element used to calculate mechanical properties of a material 1.0 consists of 1.0 new toughening mechanism discovered through in-situ atomic force microscopy (AFM) fracture tests combined with digital image correlation techniques 1.0 found in 1.0 can be studied through 1.0 has 1.0 allows 1.0 consists of 1.0 is 1.0 Accompanies 1.0 Accompanies 1.0 Exhibits 1.0 Involves 1.0 Is a Significant Contributor to 1.0 remain shielded from propagating crack 1.0 widely accepted mechanism until now 1.0 Under indentation, voids due to nano-asperities separating the ts have a more prominent contribution to energy absorption capacity until contact between the ts takes over in resisting the load. 1.0 include 1.0 affects the macroscopic tensile stress-strain response 1.0 is used in previous simulations 1.0 is exhibited 1.0 is associated with 1.0 is present in 1.0 plays a crucial role in the hardening behavior 1.0 consists of 1.0 is a type of 1.0 is significantly increased 1.0 is subjected to 1.0 consists of 1.0 is part of 1.0 plays a crucial role in 1.0 is part of 1.0 are called 1.0 are revealed on a cleaved nacre surface,have no particular orientation within the plane of the layer 2.0 provides energy dissipation at multiple scales through 1.0 results in 1.0 play a critical role in 1.0 consist of 1.0 includes 1.0 results from 1.0 is greater than 1.0 loading 1.0 results from 1.0 is attributed to 1.0 has 1.0 indicates 1.0 exhibits under compression 1.0 has 1.0 loading 1.0 is attributed to 1.0 results from 1.0 is attributed to 1.0 yields a similar (m) value as compression 1.0 reveals 1.0 draws inspiration from 1.0 is a type of 1.0 is a part of 1.0 are attached to 1.0 is a part of 1.0 are 1.0 Forms 1.0 Composites have compressive strength 1.0 Composites achieve elongation 1.0 Composites can be achieved using preparation methods 1.0 Subclass/superclass relationship 1.0 is a part of 1.0 is a type of 1.0 is a relationship indicating type or classification. 1.0 crystallized and structurally characterized 1.0 is present on 1.0 can help dissipate more effectively due to intrinsic viscoelastic properties, hierarchical molecular structures, and adhesive interfaces between protein layers 1.0 composed of 1.0 rises rapidly at the beginning of sliding and gradually decreases as sliding distance increases 1.0 consists of crossing lamellae exhibiting three regions similar to nail keratin 1.0 differ in distribution of chemical constituents due to convergent evolution in developmental processes,have different spacing orientation and cellular morphology contributing to distinct abrasive resistance and sliding wear properties 2.0 initially increases with loading and velocity but decreases at higher loads due to adhesion and stress fatigue 1.0 identified due to changing keratin lamellae orientations across the thickness of the scales 1.0 Is different from 1.0 distinguished from 1.0 have 1.0 provide 1.0 have 1.0 have 1.0 contribute to 1.0 create 1.0 have 1.0 have 1.0 distinguished from 1.0 considers during modeling process 1.0 is a type of 1.0 composed of 1.0 inspired by 1.0 composed of 1.0 Provides an example of convergent evolution in scale development 1.0 is measured during 1.0 lower 1.0 higher 1.0 occurs due to 1.0 occurs due to 1.0 Precedes crack in front 1.0 Reduces stress concentration 1.0 may be slightly angled or tilted relative to 1.0 Propagation 1.0 size effect 1.0 size effect 1.0 have less consistent values than 1.0 similarity 1.0 similarity of diameter range 1.0 includes 1.0 contains 1.0 exploration of mechanical properties 1.0 investigated under tensile loading conditions 1.0 dominate mechanical behavior under axial tension 1.0 similarity 1.0 have more consistent values than 1.0 Allows for enhanced functionality of structures 1.0 enables a connection to be sustained at large extensions for ductile materials. 1.0 can exhibit 1.0 result in 1.0 demonstrates 1.0 provides 1.0 results in 1.0 Exhibit varying fracture properties including stiffness, maximum force, energy absorption, and fracture toughness. 1.0 Allows for 1.0 is coupled with 1.0 due to 1.0 is exhibited 1.0 has 1.0 show 1.0 Has 1.0 Has 1.0 forms 1.0 exhibit 1.0 Explores through manipulation of hierarchical geometry 1.0 Allows for 1.0 Ratio manipulated over orders of magnitude through alterations in geometry,Allows for 2.0 reduces 1.0 has value around 1.0 consist 1.0 have 1.0 Differ from 1.0 composed of 1.0 necessary for 1.0 is 1.0 can form through ordered nucleation 1.0 are composed of at atomic-level 1.0 is 1.0 is composed of 1.0 is composed of 1.0 intact 1.0 results in 1.0 is attributed to 1.0 calcite crystals growing in a three-dimensional space 1.0 calcite crystals growing along specific crystallographic axes 1.0 higher degree of alignment between adjacent calcite grains 1.0 disordered arrangement of calcite grains 1.0 preferential orientation of calcite grains 1.0 lower degree of alignment between adjacent calcite grains 1.0 influence 1.0 has gained popularity due to its 1.0 studied by Pabst and Gregorova 1.0 Exhibit improved mechanical properties and cellular behavior compared to dispensed scaffolds without fibers 1.0 hard materials can be made porous through processes such as sintering and leaching. 1.0 porous materials such as foams and aerogels have lightweight frameworks. 1.0 applies to 1.0 Type 1.0 is 1.0 is connected to 1.0 is connected to 1.0 has value around 1.0 explored by Bodig and Payne 1.0 component 1.0 Optimize 1.0 remains relatively constant 1.0 must capitalize on strength gains from material size effects while providing 1.0 In collagen-fibril matrices 1.0 has 1.0 increase due to 1.0 reduce 1.0 is related to the relationship between density and structure during bone remodeling 1.0 Isotropy refers to the property of a material that exhibits the same mechanical properties in all directions. 1.0 Mechanics is a field of study that deals with the behavior of materials under applied forces, including phonons and other vibrational modes. 1.0 Applying 1.0 Applying 1.0 is dominated globally by 1.0 Having 1.0 Modeling 1.0 Possibly having 1.0 is imposed on 1.0 used for 1.0 is 1.0 Without Duplicating 1.0 dependence on 1.0 Have unique functionalities in 1.0 Suffer from 1.0 Have unique functionalities in 1.0 Produces 1.0 Produces 1.0 Produces 1.0 reduces 1.0 perform well in 1.0 provides 1.0 have 1.0 provides 1.0 possess 1.0 are 1.0 ensures 1.0 achieve,achieve at previously impossible size scales 2.0 have 1.0 Enables 1.0 Enables 1.0 Leads to the development of 1.0 Enables 1.0 Leads to the development of 1.0 allows 1.0 allows 1.0 can be expressed as 1.0 is determined in center of stiffness of cross-section 1.0 gold layer 1.0 Under tensile loading 1.0 Minimized due to 1.0 Applies to 1.0 mimic upon exposure to moisture 1.0 have 1.0 Exhibit 1.0 Occur in 1.0 Occur in 1.0 Occur on 1.0 Exhibit 1.0 Occur on 1.0 Focus of this study 1.0 Provides insights into 1.0 introduced 1.0 commonly observed 1.0 found in 1.0 combines 1.0 used at 1.0 Exhibit higher stiffness than 1.0 is a more specific term for 1.0 Are 1.0 Affects Stiffness Properties 1.0 Has 1.0 Affects Stiffness Properties 1.0 consistsOf 1.0 contributesSignificantlyTo 1.0 contributesSignificantlyTo 1.0 contributesSignificantlyTo 1.0 Refers to collagen fibrils that have been mineralized with calcium phosphate crystals, which are important for understanding the mechanical behavior of bone and other mineralized tissues. 1.0 Higher strength and greater energy dissipation under deformation compared to 1.0 Used to Investigate 1.0 Reveal Cross-Sections of 1.0 Are Cross-Sections of 1.0 Associated with post-yield strain hardening. 1.0 isMainlyMadeOf 1.0 canBeToleratedBy 1.0 represents 1.0 is formed by the mineralization of hydroxyapatite crystals in gap regions due to their staggered geometry 1.0 has 1.0 includesInorganicPhase 1.0 hasHierarchicalArrangementForming 1.0 forms 1.0 forms 1.0 forms 1.0 forms 1.0 isPartOf 1.0 isFeatureOf 1.0 isFeatureOf 1.0 protects 1.0 isComposedOf 1.0 Describes collagen fibrils with low mineral content, which are important for understanding the mechanical behavior of soft tissues and early stages of mineralization. 1.0 uses 1.0 is 1.0 uses 1.0 combines 1.0 allows for studying 1.0 appropriate for 1.0 Are less absorbed 1.0 Interact differently 1.0 uses 1.0 X-ray diffraction interacts with X-rays 1.0 are part of 1.0 are part of 1.0 result from 1.0 are part of 1.0 synonym 1.0 includes 1.0 differ from 1.0 are part of 1.0 are part of 1.0 produces 1.0 are part of 1.0 Increases 1.0 related to 1.0 which is a significant fraction of the t thickness 1.0 can reach amplitudes of 1.0 Highlighted despite little variation in global stress-strain curves. 1.0 Understood through investigation of role of strain hardening. 1.0 Increases as strain hardening becomes weaker.,Increases as strain hardening becomes stronger. 2.0 Contributes as strain hardening becomes weaker.,Increases as strain hardening becomes stronger. 2.0 Important feature of plastic deformation. 1.0 yielded by 1.0 depends on 1.0 provide 1.0 prevent catastrophic failure 1.0 Also observed during shear tests at 1.0 Primarily due to 1.0 acts as 1.0 Can provide 1.0 occurs in 1.0 involves development of 1.0 involves stretching of 1.0 involves 1.0 involves rupturing of 1.0 by allowing atoms to move around easily 1.0 by allowing atoms to move around easily 1.0 undergoes 1.0 shows 1.0 Undergoes plastic deformation under certain loading conditions due to its complex microstructure and porous nature. 1.0 occurs beyond the yield point 1.0 contributes to 1.0 applied to 1.0 are limited due to 1.0 have limitations for sizes between 20-25 nm 1.0 applied to 1.0 applied to 1.0 had better ballistic performance than 1.0 results from 1.0 creates upon movement 1.0 was worn and destroyed during 1.0 results from 1.0 Have 1.0 Provide 1.0 demonstrate higher loads required for failure compared to conventional composite laminate with flat and continuous interfaces 1.0 another polymer network formed through 1.0 ionically bonded through 1.0 involved in 1.0 extracted from 1.0 Have 1.0 Have immersed in 1.0 Used as 1.0 Used as 1.0 Both are used for tissue engineering but alginate does not have higher ultimate tensile strength compared to silk fibroin composites 1.0 have improved mechanical strength 1.0 modified form of 1.0 exhibits due to 1.0 helps dissipate mechanical energy under 1.0 provides 1.0 embedded in 1.0 Display 1.0 Embed 1.0 Display 1.0 Display 1.0 Used as 1.0 Used as 1.0 Result in 1.0 Result in 1.0 has approximately 1.0 can be 1.0 forms low physical cross-linking with due to divalent ions 1.0 requires accurate bond breaking descriptions 1.0 show a dramatic change in filament diameter under 1.0 are capable of sustaining 1.0 Result of buckling mechanism 1.0 Display 1.0 accommodate 1.0 allow for 1.0 occurs due to 1.0 occur in 1.0 experiences 1.0 Achieved prior to sliding saturation 1.0 Is twice 1.0 is 1.0 involves 1.0 relatively modest sacrifice of 1.0 exhibits highest 1.0 represents 1.0 is 1.0 induced through 1.0 upon 1.0 disruptedBy 1.0 relatesTo 1.0 relatesTo 1.0 relatesTo 1.0 isotopeEnrichmentObservedFor 1.0 solubilizedIn 1.0 studiedUsing 1.0 isotopeEnrichmentObservedFor 1.0 isotopeEnrichmentObservedFor 1.0 resolvedUsing 1.0 labeledFor 1.0 studiedUsing 1.0 form despite being intrinsically disordered random coils 1.0 are primary components of 1.0 form even under dilute conditions 1.0 are 1.0 Dependence 1.0 is a common amino acid residue found every third position in 1.0 is a biological process that can lead to changes in protein structure and function. Glycine is a unique amino acid found in high frequency in collagen sequences that is essential for collagen's mechanical properties 1.0 used to examine crystal structure 1.0 observes wide variability of mechanical properties due to inherent properties and structures at smaller scales 1.0 applied to 1.0 provides framework for understanding 1.0 study of 1.0 understanding 1.0 understanding requires further investigation 1.0 is composed of 1.0 exhibits 1.0 Extracellular matrix proteins include elastin. 1.0 COR value 1.0 has 1.0 Simultaneously controlled through continuous assembly-mineralization approach 1.0 Presence of microtubule doublets within microtubule structures 1.0 and,and 2.0 reveals 1.0 is crucial for controlling during drying 1.0 affect 1.0 affect 1.0 in metallic implants 1.0 Incorporates 1.0 dependsOn 1.0 envisages 1.0 results in non-equilibrium microstructures characterized by nanostructuring, hierarchical phase distribution, localized solute supersaturation, and oxygen ingress 1.0 depicts through crystal plasticity-based grain misorientation modeling at a strain of 0.6 1.0 characterizes 1.0 studied 1.0 in the axial direction 1.0 Influences 1.0 leads to refinement of 1.0 produces 1.0 observation after S1P treatment 1.0 is related to 1.0 can lead to 1.0 can be affected by 1.0 high contact angle hysteresis and fast water spreading are both properties related to the wettability of surfaces 1.0 high contact angle hysteresis is exhibited by hydrophilic-oleophobic textile membranes 1.0 high contact angle hysteresis is a property exhibited by hydrophilic-oleophobic textile membranes 1.0 is related to 1.0 can be affected by 1.0 can attract 1.0 is between 1.0 did not show any noticeable impact on 1.0 can repel 1.0 can create 1.0 can create 1.0 can create 1.0 inspire design for bionic surfaces that respond to humidity due to their gradient characteristics (SiScience, 2021). 1.0 is between 1.0 forms due to 1.0 exist on 1.0 can interact with 1.0 can interact with 1.0 can lead to 1.0 can affect 1.0 is a type of 1.0 can affect 1.0 are used to increase conformity 1.0 includes 1.0 is limited by 1.0 used for 1.0 produces 1.0 produces 1.0 used in 1.0 is a faster alternative to for biological applications 1.0 allows direct control over for biological applications 1.0 uses for biological applications, offers faster and less expensive fabrication compared to traditional glass or silicon micromachining, and allows tailored material properties for improved biocompatibility 1.0 is a faster alternative to for biological applications 1.0 offers fabrication advantages for biological applications compared to 1.0 Allows for the creation of through pre-designed photonic structures as hard or soft molds, which are then used to replicate complex topographies in freely standing biopolymer films through casting. 1.0 predicts lower contact angles due to increased solid-liquid interfacial area 1.0 result from 1.0 influences peptide binding 1.0 influences peptide binding 1.0 influences peptide binding 1.0 depends on 1.0 involved in 1.0 used as building blocks for constructing 1.0 can be used as coatings for promoting osseointegration 1.0 stability can be impacted by 1.0 can affect 1.0 involved in 1.0 involves 1.0 located on inner surface 1.0 involved at both micron and sub-micron levels 1.0 such as dip and immersion coating, electrophoretic deposition, laser deposition, thermal spraying (including plasma spraying and high-velocity oxy-fuel combustion spraying), biomimetic deposition, and sol-gel deposition are being utilized to deposit these substrates onto 1.0 have been co-deposited onto to enhance their osteogenic properties 1.0 Implant Surfaces are studied through Experimental Design in materials science research. 1.0 Osteoblast Adhesion is evaluated on Implant Surfaces to assess their biocompatibility. 1.0 SEM Characterization is performed on Implant Surfaces to analyze their surface morphology. 1.0 Shear Strength is measured on Implant Surfaces to evaluate their mechanical properties. 1.0 adjusted to 1.0 affects 1.0 is influenced by 1.0 The impact of pH on PX removal efficiency was evaluated 1.0 used for assembly 1.0 adjusted to 1.0 affects 1.0 Increases over time 1.0 can trigger 1.0 Monitors changes during incubation 1.0 affects 1.0 Can lead to 1.0 is different from 1.0 are analyzed using 1.0 require 1.0 propagate through following fiber layers with a constant rate of change of twisted angle with respect to position along the crack front given by interlayer spacing and pitch angle 1.0 follow 1.0 are analyzed using 1.0 have a constant rate of change of twisted angle with respect to position along the crack front given by 1.0 are analyzed using 1.0 are calculated for 1.0 have a constant rate of change of twisted angle with respect to position along the crack front given by 1.0 achieves 1.0 achieves 1.0 in poroelastic context 1.0 substantial difference 1.0 substantial difference 1.0 affects tissue regeneration 1.0 achieves 1.0 investigation 1.0 achieves 1.0 may require 1.0 can generate 1.0 prevents during impact,decreases 2.0 resists 1.0 Prevented near pole 1.0 Little effect 1.0 Inhibit stress concentration 1.0 releases 1.0 can generate 1.0 Transferred between fibers and matrix 1.0 which is known from other dual-phase composites 1.0 lead to 1.0 facilitates 1.0 facilitate 1.0 provide 1.0 propagate around 1.0 control 1.0 Discontinuities refer to abrupt changes or interruptions in a material's properties or structure, while discontinuities are specific locations or regions within a material where these changes or interruptions occur. 1.0 enclosing muscle fascicles 1.0 followed by 1.0 exhibit 1.0 is provided for 1.0 followed by 1.0 located in 1.0 is part of 1.0 Consists of circularly arranged fibers disposed on top of the radial ones at the bottom layer 1.0 forms the structure of 1.0 can be used to understand 1.0 prevalent in 1.0 have a cross-lamellar structure made from hard ceramic planks for resisting indentation and interlocking between rough planks prevents catastrophic failure 1.0 have high stiffness and hardness in their outer layer (exocuticle) to prevent localised penetration and a softer backing layer (endocuticle) absorbs energy to prevent catastrophic failure. Fibres are twisted along a helix to provide strength in different directions and crack deflection and arrest through complex paths 1.0 provide stiffness, strength, toughness, energy absorption, impact resistance, and light weight despite being primarily composed of brittle minerals 1.0 prevent catastrophic failure 1.0 followed by 1.0 estimated for 1.0 occurs in 1.0 correlates with 1.0 integrated with 1.0 integrated with 1.0 Can decrease interfacial stresses 1.0 Responsible for 1.0 is another term for 1.0 is another term for 1.0 Mineral fillers commonly used in biocomposites are calcium carbonate. 1.0 Calcium carbonate is a major component of mollusk shells. 1.0 can either accelerate or inhibit crystal growth depending on initial structure upon close contact 1.0 composed of 1.0 are common components of endoskeletons,are common components of exoskeletons 2.0 is a type of 1.0 Self-assembled inspired by nacre multiscale structure 1.0 converted via thermal carbonization 1.0 consists of 1.0 made from 1.0 can be referred to as 1.0 can be referred to as,can be referred to as 2.0 can be referred to as 1.0 proposed a generalized mechanical model for with arbitrary geometries that considers both elasticity and plasticity 1.0 is another term for 1.0 Maximize while maintaining pipetting viscosity 1.0 has 1.0 has 1.0 shows dominance of 1.0 is a type of 1.0 is another term for 1.0 at 1.0 is 1.0 have developed 1.0 allowed observation of self-assembly processes in situ 1.0 developed modifications for 1.0 developed modifications for 1.0 Have drawn inspiration from 1.0 are actively exploring ways to 1.0 are actively exploring ways to 1.0 construct 1.0 combined 1.0 assembles at 1.0 transfers via dip coating due to strong hydrogen bonding 1.0 attaches via amine-terminated silanes 1.0 self-assemble at 1.0 corresponds to 1.0 adhered to 1.0 provide 1.0 only those close to the crack are straightened for notch parallel to the transverse direction 1.0 is exhibited during tensile testing 1.0 detach layer by layer for notch parallel to the transverse direction 1.0 deflect and attenuate cracks in pre-crack parallel to the longitudinal direction 1.0 have distinct structural differences resulting in different fracture behaviors 1.0 Constituents 1.0 Constituents 1.0 Constituents 1.0 Exhibits similar to whey egg capsules 1.0 Hierarchically structured 2-D composite composition 1.0 are straight and aligned 1.0 undergo relatively brittle fracture involving local deformation and small plastic zone region around the crack tip,undergo relatively brittle fracture 2.0 Without phase transition of keratin molecules 1.0 serves as a medium for 1.0 is a type of 1.0 undergoes transition to 1.0 are 1.0 simulates 1.0 are present in 1.0 represents 1.0 invested in midrib and petiole 1.0 due to similar total b-conformations content 1.0 is associated with 1.0 component 1.0 provides 1.0 involves 1.0 The measures taken to prevent unauthorized access, disclosure, modification, or destruction of data or computer systems and networks. 1.0 provide 1.0 provide 1.0 play a crucial role in 1.0 Alligator osteoderms provide protection through their bony structure. 1.0 Extrinsic mechanisms operate outside of a crack tip and prevent or deflect cracks from propagating. 1.0 Intrinsic mechanisms occur within a material and reduce stresses and strains ahead of a crack tip. 1.0 Forms macroporous structure during unidirectional freezing process 1.0 Etches away during CVD process 1.0 Forms macroporous structure during unidirectional freezing process 1.0 can be fabricated using nano- and micro-sized GO flakes 1.0 causes damage to plasma membrane and increases ROS production 1.0 promotes 1.0 reduces cell viability and increases ROS production 1.0 reduces cell viability and increases ROS production 1.0 removes oxygen functional groups from 1.0 forms additional physical cross-linked points 1.0 result from 1.0 result from 1.0 Reduces during aerogel treatment 1.0 Etches away during CVD process 1.0 Used for mineral dissolution during calcium concentration measurement 1.0 Reduces during aerogel treatment 1.0 Forms during aerogel treatment 1.0 Forms macroporous structure during unidirectional freezing process 1.0 include 1.0 have 1.0 have 1.0 endow 1.0 have 1.0 have 1.0 include 1.0 prepared through 1.0 is 1.0 employed with varying concentrations obtained 1.0 hybrid dispersions are prepared by incorporating equal volumes of 1.0 used for 60 minutes 1.0 coordinates with 1.0 is composite with,forms stacking structure with,exhibits compact internal structure with,decreases swelling ratio due to adsorption of water molecules by hydrophilic groups in XG biopolymers at higher GO contents and lower pH values 4.0 dispersed via ultrasonication 1.0 is associated with 1.0 is associated with 1.0 is a relationship indicating part-whole relationship. 1.0 rupture at 1.0 rupture at 1.0 is a type of 1.0 is a type of 1.0 protect against 1.0 conducted 1.0 is associated with 1.0 is associated with 1.0 is a part of 1.0 leads to 1.0 Still applicable 1.0 Based on 1.0 Affects 1.0 Affects 1.0 varies based on specific implementation 1.0 has a value of 1.0 has a value of 1.0 Affects 1.0 exhibited under different mechanical forces 1.0 Compared to apparent stiffness values 1.0 Influence apparent mechanical behavior 1.0 Used to calculate apparent stiffness 1.0 Used to calculate apparent stiffness 1.0 Used to investigate apparent mechanical behavior 1.0 is observed 1.0 are identified 1.0 Belongs to 1.0 includes 1.0 successor 1.0 includes 1.0 includes 1.0 is one of 1.0 uses 1.0 eliminates 1.0 is one of 1.0 includes 1.0 includes 1.0 is one of 1.0 has 1.0 demonstrates superior 1.0 has 1.0 is one of 1.0 is a commonly used technique for measuring high strain rates and stresses in materials 1.0 promote 1.0 promote 1.0 are essential factors that influence cell behavior in native and engineered tissues 1.0 are essential factors that influence cell behavior in native and engineered tissues 1.0 Enhance 1.0 Promotes 1.0 Promotes 1.0 increases with increasing CHI content 1.0 affects 1.0 is 1.0 is improved by 1.0 improves 1.0 allows 1.0 facilitated 1.0 enhance 1.0 enable 1.0 The ability of functionalized graphene to promote cell adhesion. 1.0 allows for 1.0 positively correlates 1.0 facilitates 1.0 promotes 1.0 promotes 1.0 promote 1.0 study of mechanical properties of cells such as 1.0 Contribute to improved understanding 1.0 enhance 1.0 positively affect 1.0 are examples of 1.0 plays a role in 1.0 has 1.0 promote 1.0 promote 1.0 Supports 1.0 Has similar behavior 1.0 promote 1.0 supports 1.0 allows for 1.0 support 1.0 contributes to 1.0 can withstand the stresses during bone graft procedures 1.0 are a type of biological tissue found in the human body that provide support and protection to organs and structures 1.0 have 1.0 have 1.0 promote 1.0 have 1.0 have 1.0 provides 1.0 promote 1.0 Affect 1.0 is 1.0 promotes 1.0 enhances 1.0 promotes through release of magnesium ions 1.0 increased 1.0 more pronounced 1.0 enhanced 1.0 subtype of bone formation 1.0 have 1.0 demonstrates 1.0 provides 1.0 applies to 1.0 through 1.0 through 1.0 through 1.0 measures 1.0 measures 1.0 measures 1.0 records 1.0 records 1.0 considers 1.0 analyzes 1.0 did not significantly correlate with 1.0 compared with 1.0 obtained through 1.0 investigated in collagenase and lysozyme enzymatic solutions 1.0 show higher stiffness and strength as size of animals increases possibly associated with body weight 1.0 indicates the beginning of plastic deformation 1.0 initial linear region 1.0 region of significant strain hardening 1.0 reveals two distinct regions during force-extension experiments 1.0 region of unfolding at constant force 1.0 exhibits bond arrangement alterations without substantial structural changes 1.0 Have been created with. 1.0 Have been successfully functionalized with to create three-dimensional architectures with electrospun active properties for highly selective detection of volatile organic compounds (VOCs) in exhaled breath at ultralow concentrations of 20 ppb. 1 Provide. 1.0 Result from. 1.0 Have been created with. 1.0 Detection at. 1.0 contained in inks 1 due to its two well-defined binding blocks 1 analyzes 1 forms under certain conditions 1 behavior under 1 behavior under 1 The development of CNT-based 3D architectures and aerogels for biosensors is more advanced than that of graphene. 1 Used for 1 Graphene can be used as electrodes for transmitting electrophysiological signals. 1 Both materials are applied in the biomedical and industrial fields. 1 is 1 is a single-atom thick layer of 1 May require 1 attractive for use as transparent conductive films 1 called 1.0 Removes 1.0 Comparison relationship 1.0 consists of 1.0 hemicellulose is a component of electrically conductive biopolymer-based nanocomposite hydrogels 1.0 results in 1.0 beta-keratin is embedded in matrix composed of C-terminal domain and N-terminal domain 1.0 Transfer loading between reinforcements via shear stress 1.0 denotes the continuous phase within a composite material that surrounds and supports the reinforcing phase 1.0 of 1.0 with 1.0 third dimension determined by properties of self-assembled matrix 1.0 produced by 1.0 consists of 1.0 are_embedded_in relation 1.0 is present within 1.0 predicts the same modulus of the cell wall from both approach and retraction curves, 1.0 varies depending on 1.0 where they are arranged,helically about the cell axis 2.0 treated as 1.0 are part of 1.0 Cell walls are a part of vessel elements. 1.0 responsiveness generates internal stresses 1.0 responsiveness generates internal stresses 1.0 Relationship between the two concepts is that 'cell walls' is a synonym for 'plant cell walls' 1.0 maintained via coordinated mechanotransduction and gene expression in a dynamic mechanical environment 1.0 demonstrated applicability using glutaraldehyde-crosslinked gelatin HA hydrogels loaded with various growth factors 1.0 bridge gap between 1.0 consist 1.0 mimic structure-function relationships 1.0 Result in far exceeded predicted values based on the simple additive law of mixture due to 1.0 Play a key role in resulting 1.0 have for seeded valvular interstitial cells 1.0 preserve 1.0 create 1.0 have with the site of repair 1.0 allow for 1.0 are able to withstand 1.0 recognize on ECM proteins 1.0 leads to 1.0 such as MAPK/ERK, Hippo, ROCK, and TGFb-signaling pathways 1.0 play a crucial role in 1.0 Contribute to improved understanding 1.0 may contain 1.0 may contain 1.0 applied to 1.0 not considered 1.0 assigned directly to 1.0 not considered 1.0 studied 1.0 embedded in 1.0 measured relative to 1.0 provides 1.0 interfacial bonding enables load transfer between phases 1.0 provides for cells 1.0 provides due to surface morphology and topography of particles 1.0 denotes a phase within a composite material that provides mechanical strength through fiber reinforcement 1.0 modifies 1.0 is a relationship indicating type or classification. 1.0 responds to 1.0 Has similar characteristics 1.0 is regulated by 1.0 Provides 1.0 predicts maximal shear strain without elastic deformation 1.0 predicts convergence with maximal effective tensile stress at edges for load transfer characteristic length scale 1.0 predicts maximal shear strain leading to failure initiation 1.0 predicts flattened central part due to reduced load transfer through interlayer crosslinks,predicts increased ratio of maximum shear strain in DTS model to (gamma_{{(rigid)}}) as sheet size increases 2.0 predicts tensile force of maximal value 1.0 predicts tensile force of zero 1.0 predicts linear force distribution function 1.0 predicts distribution along length direction 1.0 predicts shear strain distribution without elastic deformation 1.0 represent interactions between them 1.0 provide due to their hydrophilic behavior in core layer of coaxial spinning 1.0 improve mechanical behavior through crosslinking and denaturation 1.0 can be processed as core or shell layer in coaxial spinning 1.0 compatibility of collagen and synthetic polymer solutions is required for multi-layering methods 1.0 additives such as synthetic polymers, clays, hydroxyapatite, and carbon nanofilters reinforce mechanical behavior 1.0 compatibility of collagen and synthetic polymer solutions is required for multi-layering methods 1.0 Can Be Processed Into 1.0 combine the advantages of 1.0 Limit their applications 1.0 increases 1.0 increases 1.0 is shorter for 1.0 avoids 1.0 avoids 1.0 occurs 1.0 occurs 1.0 is longer for 1.0 negatively affects 1.0 is related to 1.0 higher 1.0 similar 1.0 compared to 1.0 Occurs at lower displacements for 1.0 made from 1.0 used to model mechanical behavior 1.0 interaction 1.0 can be used as a 1.0 used for 1.0 used for 1.0 used for 1.0 grown on 1.0 releases 1.0 is used as 1.0 of scaffolds 1.0 for specific bone tissue replacement applications 1.0 a versatile technique for creating homogeneously distributed pores through the assembly of solid particles around oil droplets 1.0 includes 1.0 Unusual mechanical performance,Ductility unexpectedly high,Outstanding mechanical performance unusual for calcium phosphate-based ceramics 3.0 Lacks the ability to cut 1.0 Efficient for 1.0 Due to 1.0 Can handle 1.0 offers advantages over 1.0 Allows for 1.0 Limited to 1.0 Can create 1.0 Due to limitations 1.0 Limited in its ability to cut 1.0 Offers 1.0 hard materials generally have higher shear strength compared to soft materials. 1.0 soft materials have lower hardness and yield stress compared to hard materials. 1.0 Cannot be used because they are not hard enough 1.0 Renaming 1.0 allows for 1.0 enables creation of 1.0 enables creation of 1.0 results in 1.0 have 1.0 investigates 1.0 combined with 1.0 combined with 1.0 bonded together by 1.0 Effectively enhance the mechanical properties of bionic materials 1.0 Arranged orderly to form a whole film through a self-assembly technique of evaporation inspired by nacre 1.0 produced through 1.0 needed to reproduce micro-nanocomposite structure 1.0 similar to 1.0 similar to 1.0 Shorter production time despite similar composition 1.0 increases by 1.0 samples embedded in 1.0 Electrophoretic deposition is a technique used to create ceramic layers by depositing ceramic particles onto a substrate using an electric field. 1.0 require 1.0 do not require 1.0 remain relatively rigid 1.0 are alternated 1.0 are alternated 1.0 provide 1.0 has increased by approximately 1.0 are causing 1.0 Is related to 1.0 at 1.0 consistent with this frictional-based mechanism 1.0 Higher For,Higher Than,Showing Differential Expression Patterns Between 3.0 Showing Differential Expression Patterns Between 1.0 Showing Differential Expression Patterns Between 1.0 process by which minerals form within a material 1.0 is related to 1.0 occurs in some species where 1.0 investigated relationship between 1.0 determine strength and stiffness 1.0 reveals 1.0 offers potential applications in DNA assays and immunoassays due to their size-restricted bioinorganic nanocomposites,offers potential applications in DNA assays and immunoassays due to their size-restricted bioinorganic nanocomposites 2.0 Have Higher Mineralization in the Core 1.0 Occurs during long-term cell culture 1.0 bending efficiency 1.0 optimized through property gradients 1.0 has excellent energy absorption properties under 1.0 enhance mechanical strength in shells due to both chemical factors and physical characteristics (SiScience, 2021). 1.0 provide insights for designing bionic surfaces and materials due to their gradient characteristics (SiScience, 2021). 1.0 enhance self-healing in mussels due to both chemical factors and physical characteristics (SiScience, 2021). 1.0 Offer 1.0 performs 1.0 performs 1.0 Added to 1.0 Enhance 1.0 Added to 1.0 Result in improved 1.0 Added to 1.0 Modulate 1.0 Can be used to encapsulate NPs within a polymeric matrix 1.0 Can be challenging due to 1.0 Can improve biocompatibility and dispersibility 1.0 NPs experience electrostatic interactions at fluid interfaces. 1.0 self-assemble into 1.0 Compared to hierarchical scaffolds with appropriately controlled pore sizes 1.0 facilitated 1.0 promote 1.0 Participates in 1.0 promotes 1.0 undergoes 1.0 Promotes 1.0 promotes 1.0 affects 1.0 Effects investigated with varying monomer ratios and porosities 1.0 Does not provide sufficient ligands for cells 1.0 Provides sufficient ligands for cells 1.0 Can be surface modified using surface modification 1.0 undergoes 1.0 is achieved through 1.0 is achieved through 1.0 is achieved through 1.0 is achieved through 1.0 Improve gas sensing properties 1.0 Can be surface modified using these techniques 1.0 transforms 1.0 results in through non-radiative relaxation from excited states 1.0 addition results in 1.0 from transparency to homogeneous light absorption 1.0 revealed through 1.0 of 1.0 from excited states 1.0 occurs through non-radiative relaxation from excited states 1.0 Interfacial segregation of SWCNTs between two immiscible liquid phases can lead to applications such as electronic devices and energy storage. 1.0 Promotes production of 1.0 located in 1.0 Used for 1.0 Composes 1.0 fibronectin facilitates cell adhesion and migration while proteoglycans provide tissue hydration and lubrication 1.0 laminins form a structural barrier and interact with other extracellular matrix proteins while proteoglycans provide tissue hydration and lubrication 1.0 is composed of 1.0 provides 1.0 provides 1.0 contains 1.0 is composed of 1.0 is composed of 1.0 Fung discussed extracellular matrix proteins. 1.0 Articular cartilage exhibits compressive behavior. 1.0 composed_of 1.0 composed_of 1.0 is found in 1.0 Articular cartilage exhibits a nonlinear stress-strain relationship. 1.0 Articular cartilage behaves as a viscoelastic material. 1.0 Has biological properties and behavior in its natural state. 1.0 Replaces the uniform composition and structure of articular cartilage. 1.0 are arranged in 1.0 vary significantly for differently oriented colonies 1.0 along all directions 1.0 synthesized through hydrothermal method 1.0 allow for easy separation and recycling using an external magnetic field 1.0 enhanced by dopamine modification 1.0 has 1.0 result from 1.0 can exhibit 1.0 The surface area of graphene-based devices. 1.0 used to measure 1.0 have 1.0 can be measured through 1.0 used to determine 1.0 form on 1.0 reach approximately 10 micrometers after 24 hours in SBF 1.0 contain 1.0 occur on 1.0 come into contact with 1.0 exhibit biocompatibility with 1.0 involve 1.0 facilitate 1.0 high concentration 1.0 confirms 1.0 Adhere well to 1.0 mimic adhesive properties of 1.0 investigated under tension 1.0 Leads to an estimate for around 18 nm 1.0 Leads to estimates for (ell_{rm th}) ranging from near atomic scale for materials like diamond to a few hundred nanometers for biominerals 1.0 Focuses on intrinsic capability to tolerate crack-like flaws below 1.0 Encompasses a critical length scale 1.0 Distinct from 1.0 achieves 1.0 Combine 1.0 Exhibit 1.0 does not necessarily result in improved 1.0 is 1.0 help understand fracture behavior 1.0 due to 1.0 used to study deformation mechanisms in 1.0 Refers to a specific type of composite material found in tendons, which consists of mineralized collagen fibrils and a softer matrix. 1.0 contain 1.0 investigates 1.0 involve studying to gain insights 1.0 derive unique properties and roles 1.0 Offer 1.0 remainsASignificantChallenge 1.0 Provide insights into 1.0 can be applied to nanotechnology to develop new approaches for creating ordered structures at the nanoscale 1.0 play a mechanical role 1.0 exhibit 1.0 is related to 1.0 used for creating nanoscale materials 1.0 used for creating nanoscale materials 1.0 using biotemplating approach 1.0 using biotemplating approach 1.0 used as 1.0 used for creating nanoscale materials 1.0 involves a complex interplay at the nanoscale 1.0 has led to 1.0 is defined by 1.0 result from 1.0 is not strictly applicable to 1.0 exhibits 1.0 exhibits 1.0 helps us understand 1.0 Have 1.0 containing 1.0 made from 1.0 potential utility for 1.0 proposed due to their safety, commercial availability, and eco-friendliness 1.0 due to their abundance, renewability, nontoxicity, biodegradability, biocompatibility, and low cost 1.0 greater than 1.0 made from 1.0 can be generated with high mechanical performance, minimal thermal expansion, and up to 71.6% transparency at 600 nm. 1.0 forms via multiple H-bonding interactions 1.0 matrix 1.0 forms via multiple H-bonding interactions 1.0 Used as template for building nanowires 1.0 macro-like nanocomposites films prepared through sential deposition 1.0 coated 1.0 is a type of 1.0 Mixed with 1.0 has 1.0 Observed through IR spectra 1.0 occurs in 1.0 Preservation during mechanical milling and gelatin incorporation 1.0 Preservation during mechanical milling and gelatin incorporation 1.0 Observed through SEM analysis 1.0 Observed through 3D X-ray microtomography analysis 1.0 includes 1.0 Observed through FTIR analyses 1.0 Observed through SEM analysis 1.0 Observed through 3D X-ray microtomography analysis 1.0 Observed through 3D X-ray microtomography analysis 1.0 has 1.0 could inform the design of 1.0 have 1.0 allows 1.0 contributes to 1.0 results in 1.0 increases 1.0 enables 1.0 has 1.0 merges into largest clusters,separates 2.0 leads to 1.0 accompanies 1.0 involves 1.0 generates 1.0 provide 1.0 interacts with 1.0 interlock 1.0 are located on 1.0 interact with through van der Waals interactions 1.0 carry 1.0 terminate in 1.0 Belong to 1.0 Gradient distribution of 1.0 restricted to 1.0 restricted to 1.0 are located on 1.0 further strengthens 1.0 further strengthens 1.0 have a more sophisticated three-dimensional structure than 1.0 further strengthens 1.0 can increase contact area for nonparallel initial orientations 1.0 involves 1.0 influences 1.0 is included 1.0 involves designing 1.0 is modified through acid-etching and anodic oxidation 1.0 provides detailed analysis of 1.0 could withstand external force without damage to 1.0 confirmed the presence of 1.0 Is affected by 1.0 Is recognized in biomedical engineering 1.0 Is affected by 1.0 Is affected by 1.0 could provide 1.0 could provide 1.0 play important biological roles in 1.0 crucial factor for design 1.0 reveal 1.0 process 1.0 Contributed by metal coordination complexes 1.0 depends directly on shear force instead of the peeling angle 1.0 mediated through coordination bonding with metal ions 1.0 mediated through hydrogen bonding 1.0 depends on 1.0 influences 1.0 influence on mechanical behavior 1.0 decreasesWith 1.0 influences 1.0 behavior of 1.0 influences 1.0 plays a significant role in 1.0 influences 1.0 includes 1.0 includes 1.0 Refers to 1.0 Is shorter for directions perpendicular to tubule extension 1.0 result in 1.0 dependency 1.0 is affected by 1.0 is affected by 1.0 dependency 1.0 interacts with 1.0 Occurs after each loading cycle due to increase in energy dissipation 1.0 Occurs after each loading cycle due to increase in energy dissipation 1.0 depends on 1.0 occurs at 1.0 the slope is very small within the transformation region 1.0 are defined based on 1.0 less efficient at breaking up fibril aggregates 1.0 are predicted for 1.0 dislocations or occurring during extraction and processing 1.0 take part in 1.0 contributes to 1.0 are involved in 1.0 is involved in 1.0 component 1.0 component 1.0 composed of 1.0 affects 1.0 component 1.0 provides 1.0 surrounds 1.0 consists of 1.0 Mainly occurs through 1.0 has 1.0 has 1.0 take part in 1.0 has on its surface 1.0 is 1.0 has 1.0 aligned along 1.0 are predicted for 1.0 is accomplished by 1.0 true 1.0 Contributed by 1.0 critical for function 1.0 Potential for developing new therapies and medical devices 1.0 With unprecedented properties 1.0 Allows merging material and structure at nanoscale level 1.0 Implications for future engineering 1.0 to synthesize 1.0 Has Important Implications For 1.0 Applied In 1.0 make them promising candidates for use as biomaterials in 1.0 potential applications 1.0 Obtainment 1.0 proportion during stress wave propagation 1.0 helps 1.0 over-damped non-oscillatory behavior 1.0 improves 1.0 results in a slightly lower 1.0 similar to model 1 1.0 causes a transition to an under-damped regime 1.0 Possession 1.0 consist of,within which are not tanned 2.0 is underneath 1.0 Tibia cuticle structure encompasses three major layers: exocuticle, intermediate layer, and endocuticle. 1.0 consists of 1.0 continues 1.0 distal end of the exoskeleton 1.0 negligible increase in electron density in endocuticle 1.0 significant increase in hydrogen bonding in endocuticle 1.0 Cuticle surface failure refers to a specific type of failure that occurs due to the brittleness and weak strength of the epicuticle, which repels water and remains brittle in wet conditions. 1.0 is part of 1.0 provides 1.0 consists of 1.0 consist of,both consist of 2.0 Tibia cuticle structure encompasses three major layers: exocuticle, intermediate layer, and endocuticle. 1.0 consists of 1.0 continues 1.0 has a more significant impact on fracture toughness 1.0 applies to 1.0 applies to 1.0 increases exponentially under mode-II loading 1.0 is used as growth medium for 1.0 is cultured in 1.0 is contained in 1.0 is contained in 1.0 is contained in 1.0 contains 1.0 contains 1.0 applies to 1.0 Represents a matrix that describes the stiffness properties of a material at a given point and state. 1.0 Specifies a rate formulation for Kirchhoff stress that accounts for material rotation. 1.0 provides 1.0 approximately 22 GPa 1.0 performed on the transverse section 1.0 reveal 1.0 previous studies 1.0 18-24 GPa 1.0 presence of water molecules 1.0 demonstrates significantly improved flexibility, toughness, and strain due to direct rehydration of keratin shells 1.0 are soft 1.0 Exceeding 1.0 Exceeding 1.0 are negatively correlated with 1.0 have 1.0 average values are 42 GPa and 30 GPa in parallel and perpendicular directions, respectively 1.0 Differ for ADP and ATP models of dynein 1.0 Differ for ADP and ATP models of dynein 1.0 Has value of 1.0 Replaced by corresponding complex moduli 1.0 Provide resources for the creation of new knowledge-based multifunctional materials 1.0 inspired by 1.0 Focus on improving for demanding loading and environmental conditions 1.0 Focus on improving 1.0 may not tolerate cracks at 1.0 for successful self-assembly 1.0 disperses mainly in 1.0 expanded into 1.0 redisperses in 1.0 disperses mainly in 1.0 combined with for QDs retention 1.0 confined by spherical microdroplets for investigation 1.0 aligned due to entropic and excluded-volume effects 1.0 used as template for preparation 1.0 used as template for preparation 1.0 integrated into high porosity host-guest systems 1.0 Attributed to absence of sulfate half ester groups produced using AVAP* technology. 1.0 can be used for synthesizing CNCs. 1.0 can be contained in flexible magnetic aerogels fabricated through freeze-casting using CNCs as templates. 1.0 are present in the resulting 98% porous magnetic aerogel. 1.0 result in improved mechanical properties due to strong percolating CNCs. 1.0 coexist with 1.0 coexist with 1.0 involves mixing 1.0 occur in 1.0 Compete with stronger intermolecular forces, reducing their strengthening effect 1.0 is compounded with 1.0 causes 1.0 contain 1.0 has minimum value for 1.0 consists of 1.0 reveals 1.0 reveals 1.0 Used to measure elastic properties at microstructural level 1.0 tip used 1.0 holding period 1.0 instrument used 1.0 loading rate 1.0 is a type of 1.0 relative humidity varying 1.0 synonym 1.0 observes 1.0 observes 1.0 reveals 1.0 reveals micro-porosity 1.0 show 1.0 show 1.0 composed of 1.0 composed of 1.0 composed of 1.0 reveal 1.0 result from 1.0 can be controlled through 1.0 increased 1.0 Allows for 1.0 Calculation based on 1.0 Calculation based on 1.0 Calculation using 1.0 presents a rational design for efficient light-harvesting devices 1.0 Replaced in protein model 1.0 Replaced in protein model 1.0 Replaced in protein model 1.0 Decreased when replacing with arginine residues 1.0 Slight decrease when replacing with arginine residues 1.0 Decreased when replacing with arginine residues 1.0 Decreased significantly when replacing with asparagine residues 1.0 Decreased when replacing with aspartic acid residues 1.0 Impact on 1.0 accounts for 1.0 generalized and depends on effective stretch and bond stretch 1.0 Describes a measure of a material's resistance to shear deformation 1.0 variations affect global strength and toughness 1.0 results in increased global strength 1.0 variations affect global strength 1.0 results in more pronounced reduction in dissipated energy prior to failure,results in increased global strength 2.0 affects spatial distribution of shear stress 1.0 approximately constant 1.0 exceed 1.0 varies with 1.0 contain 1.0 transition from 1.0 exhibits 1.0 contain 1.0 is composed of 1.0 are involved in rupture mechanism at low deformation rates 1.0 contain 1.0 consists of 1.0 in silk 1.0 has approximately 1.0 corresponds to approximately 1.0 is higher than 1.0 result from 1.0 result from 1.0 results from 1.0 running perpendicular to the fibril axis 1.0 forms 1.0 is 1.0 contain 1.0 contain 1.0 include 1.0 include 1.0 include 1.0 include 1.0 undergo 1.0 include 1.0 results in significant volume reduction during 1.0 results in fiber length reduction of up to 30% when exposed to high humidity conditions 1.0 is a unique property exhibited by,with tailored mechanical properties for various applications 2.0 can be developed through 1.0 consists of 1.0 has 1.0 are filled with 1.0 deepen our understanding of 1.0 are 1.0 is 1.0 have 1.0 can contribute to 1.0 result in 1.0 reaches during high strain-rate compression tests 1.0 reaches approximately 1.0 includes cell clearing, middle lamella breakage, primary cell wall breakage, and full-out of elongated cells during compression and identified during C-ring tests 1.0 reaches during high strain-rate compression tests 1.0 obtained from C-ring tests 1.0 obtained from C-ring tests 1.0 removes 1.0 organic materials and inorganic materials are distinct classes of materials based on their chemical composition. 1.0 can interact through π-π stacking interactions 1.0 are present in 1.0 form 1.0 line 1.0 cannot be observed in 1.0 is 1.0 Compared to previously studied unit cells 1.0 facilitate 1.0 combines various properties with distinct geometric structures 1.0 is 1.0 are not predicted by 1.0 utilizes orientation of fibers to form complex structures 1.0 are wrapped with proteins 1.0 during impacts 1.0 consist of 1.0 form through self-assembly 1.0 was mimicked using fiber-reinforced composites 1.0 could be used to fabricate 1.0 could be used to fabricate 1.0 could be used to fabricate 1.0 is 1.0 exhibits through rotating and reorienting ordered nanofibers under external loads 1.0 consists of 1.0 are fabricated into with a gradual transition in filament spacing along the thickness direction 1.0 include 1.0 increases significantly with increasing humidity 1.0 plays a significant role in tuning local properties due to the sensitivity of certain biopolymers to water 1.0 affected by 1.0 essential for 1.0 potential for next generation 1.0 produced by 1.0 exhibit upon rehydration 1.0 coated in 1.0 synthesize 1.0 is co-cultured with 1.0 Interact with 1.0 separates from underlying connective tissue 1.0 contain 1.0 have reduced modulus and strength post-healing 1.0 have lower strength than 1.0 exhibit upon rehydration 1.0 provides 1.0 Contributed by metal coordination complexes 1.0 Explored for coatings 1.0 are reported 1.0 are exhibited through 1.0 provide under certain stimuli 1.0 Combination provides elevated toughness and extensibility 1.0 Exploited 1.0 Exploited 1.0 Hydrogen bonds or protein-metal interactions 1.0 Exploited 1.0 Exploited 1.0 both are types of keratin 1.0 alpha-keratin contributes to insolubility through disulfide linkages 1.0 alpha-keratin contributes to insolubility through interchain peptide linkages 1.0 alpha-keratin is a component of intermediate filaments 1.0 matrix Proteins interact with alpha-keratin 1.0 applied to 1.0 Consist of 1.0 beta-keratin is a component of pleated sheets 1.0 requires further study for 1.0 Consist of 1.0 are embedded in 1.0 is organized exclusively of 1.0 have a higher ratio of 1.0 For strong interdimer adhesion 1.0 Assumed to be 20 nm 1.0 Is 90 pN at a deformation speed of 1E-7 m/s 1.0 Are predominant distribution 1.0 form 1.0 effect has not been studied 1.0 could improve material properties 1.0 And 1.0 Are examples of 1.0 Exhibit 1.0 Are exemplified by 1.0 Such as 1.0 Of information 1.0 And 1.0 are 1.0 consists of 1.0 controls at different angles 1.0 promotes the adsorption of 1.0 prepared by 1.0 densified through 1.0 Fitted With 1.0 Extruded Through 1.0 Fitted With 1.0 Loaded Into 1.0 injected into printed preforms for confined coagulation 1.0 similar solubility as vaterite crystals 1.0 removal is achieved through dialyzing against 1.0 drives solvent along interconnected micro-channels 1.0 used for 1.0 is a type of 1.0 is a type of material extrusion additive manufacturing technology that differs from 1.0 created via two-stage low-cost manufacturing process 1.0 constituent material 1.0 precursor material 1.0 Achieved through 1.0 Achieved through 1.0 Achieved through 1.0 Achieved through 1.0 Achieved through 1.0 results in 1.0 is attributed to 1.0 forms across the long axis 1.0 result in 1.0 results in 1.0 within the range of 1.0 result in 1.0 result in 1.0 produce through 1.0 applied to 1.0 can undergo 1.0 react with 1.0 oxidized to 1.0 goal of in dental and orthopedic surgeries 1.0 commonly used in dental and orthopedic surgeries 1.0 exhibits 1.0 after 1.0 is used to observe 1.0 is 1.0 is used to observe 1.0 when observed 1.0 when observed 1.0 of 1.0 Fiber diameter could differ as well. 1.0 Promotes 1.0 are part of 1.0 contributes to 1.0 are part of 1.0 is part of 1.0 is achieved by 1.0 enhances 1.0 enhances 1.0 is achieved by 1.0 contributes to 1.0 are developed for 1.0 consist of 1.0 is achieved by 1.0 is achieved by 1.0 are part of 1.0 are part of 1.0 is achieved by 1.0 is among 1.0 is achieved by 1.0 is achieved by 1.0 Subjected To 1.0 produced using 1.0 produced using 1.0 produced using 1.0 produced using 1.0 produced using 1.0 labeled with 1.0 genetically introduced into 1.0 enables labeling of 1.0 are densified using 1.0 are densified using 1.0 offer 1.0 offer 1.0 are grown on 1.0 are deposited on 1.0 are infiltrated with 1.0 involves 1.0 involves 1.0 used for extraction 1.0 used for concentration 1.0 used for filtration 1.0 can be used as a type of 1.0 represents enhanced mechanical properties exhibited by hydrogels based on H-bonds due to post-crosslinking strategy involving TA 1.0 Introduced interstitial pHEMA network. 1.0 exhibit 1.0 offer 1.0 have 1.0 is responsible for 1.0 results in improved 1.0 realized in spinning and nanoindentation experiments 1.0 include 1.0 due to 1.0 lead to 1.0 Compared to dispensed scaffolds without fibers 1.0 are improved by 1.0 has due to synergetic effect between cortex and foam components 1.0 Involved in developing 3D graphene architectures 1.0 Involved in developing 3D graphene architectures 1.0 used for bone and dental tissue engineering,displayed rougher morphology and improved cell proliferation,indicated lower compressive strength values due to strong contribution of brittle ceramic component 3.0 showed higher levels of angiogenic markers,capacity for formation of vascular networks,higher levels of bone formation markers 3.0 incorporated with HUVEC-laden hydrogel 1.0 combined with PCL 1.0 is a potential model for 1.0 has 1.0 exhibits 1.0 exhibits 1.0 exhibits 1.0 is reinforced with 1.0 is 1.0 reinforces with stiffness 1.0 composed of,cuticle with high mineral content is stiff, hard, and tough to resist bending forces,less mineralized regions have lower hardness and elastic modulus but may perform better in wear resistance and friction due to their specific functions 3.0 100-1,000-fold reduction required 1.0 incorporating 1.0 structural features 1.0 diameters 1.0 potentially successful option for incorporating 1.0 Crucial for via fatty acid complexation 1.0 directly affects 1.0 can directly affect 1.0 indicates presence of 1.0 Calcium is crucial for bone health 1.0 consist of 1.0 represents hydroxyl (-OH) groups present in the PVA/CNC matrix 1.0 represents -OH groups present in the PVA/CNC matrix that can also contribute to hydrogel formation through multiple H-bond interactions 1.0 represents the general process of synthesizing hydrogel materials 1.0 forms via self-assembly due to multiple H-bonding interactions,shrinking behavior due to significant dehydration and shrinkage,enhanced mechanical properties due to post-crosslinking strategy 3.0 represents shrinking behavior exhibited by hydrogels based on H-bonds due to significant dehydration and shrinkage caused by stronger H-bonding interactions between TA macromolecules and -OH groups of the PVA/CNC matrix than water molecules 1.0 can result in improved mechanical properties due to oriented hierarchical structures 1.0 can be formed through crosslinking two or more networks for enhanced mechanical properties 1.0 can include combining complementary components, creating complex enhancing phases, and mimicking hierarchical structures 1.0 can be added to improve mechanical properties without sacrificing high water content 1.0 can be formed through introduction of solvent for enhanced mechanical properties 1.0 exhibit improved mechanical performance due to 1.0 used for 1.0 is 1.0 are 1.0 have 1.0 are 1.0 is 1.0 involves 1.0 composed of 1.0 composed of 1.0 composed of 1.0 used in 1.0 are formed through 1.0 photo-cross-linkable functionality 1.0 are used for 1.0 reinforcement 1.0 importance 1.0 importance 1.0 importance 1.0 exhibit 1.0 exhibit 1.0 exhibit 1.0 inspiration 1.0 With lower free water content due to slow evaporation result in fully physically crosslinked hydrogels with higher mechanical properties 1.0 Are hypothesized to be necessary for mechanical enhancement due to physical crosslinking points 1.0 Has carried out extensive studies on the formation of hydrogen bonding microdomains 1.0 Has highly s hydrogen bonding interaction domains between diamide groups on the side chains of NAGA monomers 1.0 Are synthesized using a new functional monomer NASC with higher density of hydrogen bonding interactions between amides and urea groups 1.0 Are synthesized via copolymerization of NAGA and 1-vinyl-1,2,4-triazole without chemical crosslinking 1.0 are 1.0 facilitates 1.0 without altering 1.0 are 1.0 facilitates 1.0 can be induced 1.0 are 1.0 is a factor affecting the aggregation rate of 1.0 is a strategy for generating 1.0 is also a strategy for generating 1.0 are formed through self-assembly of,form through self-assembly within 2.0 are also known as 1.0 Potential reinforcing phases for 1.0 can result in lower due to the relatively weak nature of noncovalent interactions 1.0 have potential applications in 1.0 can be utilized to create through 1.0 can result in over time due to the relatively weak nature of noncovalent interactions 1.0 have potential applications in 1 have potential applications in 1.0 respond orientedly 1.0 produce 1.0 is a part of 1.0 consists of 1.0 contains 1.0 contains 1.0 encourages expression of 1.0 consists of 1.0 Exists 1.0 is 1.0 has 1.0 is 1.0 derivedFrom 1.0 is incorporated 1.0 contains 1.0 is composed of 1.0 is 1.0 exhibits 1.0 exhibits 1.0 exhibits 1.0 is 1.0 is 1.0 Causes drastic fall 1.0 Covers 1.0 was formed through 1.0 represents multiple H-bond interactions that occur between TA and PVA/CNC matrix during hydrogel synthesis 1.0 represents hydrogen bonding (H-bond) interactions that contribute to hydrogel formation through self-assembly 1.0 represents the specific strategy used to synthesize TA-PVA/CNC hydrogels via post-crosslinking of PVA/CNC nanocomposite hydrogels with TA via intermolecular multiple H-bonds between TA and the PVA/CNC matrix 1.0 nanocomposite 1.0 starting material 1.0 represents the starting material for synthesizing TA-PVA/CNC hydrogels via post-crosslinking strategy 1.0 forms via multiple H-bonding interactions 1.0 represents TA molecules that contribute to hydrogel formation through self-assembly due to multiple H-bond interactions 1.0 synthesized via post-crosslinking strategy 1.0 represents water molecules that can be present in hydrogels based on H-bonds 1.0 alloyed with 1.0 represents water molecules that can exhibit weaker H-bonding interactions compared to TA macromolecules and -OH groups of PVA/CNC matrix 1.0 intermolecular multiple H-bonds 1.0 starting material 1.0 weaker H-bonding interactions compared to TA macromolecules and -OH groups of PVA/CNC matrix 1.0 determines 1.0 determines 1.0 urethane dimer interacts directly with water molecules. 1.0 Present challenges due to effect on specific bonds such as H-bonds 1.0 acts as an electrostatic bridge between HAP surface and TC molecules 1.0 acts as plasticizers 1.0 disrupts 1.0 decreases 1.0 appears in core layer 1.0 is unevenly dispersed in matrix 1.0 Are a result of 1.0 governs 1.0 Is essential 1.0 Couple across various length and time scales 1.0 Couple across various length and time scales 1.0 Allow for transportation of information 1.0 Feed into 1.0 Applied to 1.0 Proposed to 1.0 Part of 1.0 Have potential applications in 1.0 is 1.0 used for modeling 1.0 couldBeUtilized 1.0 containing 1.0 is 1.0 Do not require 1.0 Can improve 1.0 can detect pressures as small as 1.0 with sensitivity 1.0 inspired by 1.0 coated with 1.0 coated with 1.0 show sensitivity of 1.0 with response time of 1.0 used as 1.0 controls 1.0 guided 1.0 pierced by 1.0 allowed for direct observation and recording of 1.0 Stretching devices can also be used to apply biaxial mechanical stimuli. 1.0 Flow mechanics can affect biological responses to mechanical loads. 1.0 Nanomechanical characterization can provide insights into biological responses to mechanical loads. 1.0 investigation into effects of severe plastic deformation techniques on biocompatibility and cellular responses 1.0 Flow mechanics is a type of mechanical characterization that studies fluid mechanics and shear stress. 1.0 Bulk mechanical characterization is a type of mechanical characterization that studies mechanical properties of entire cells or tissues. 1.0 Nanomechanical characterization is a type of mechanical characterization. 1.0 Magnetic Twisting Cytometry (MTC) is a tool used for nanomechanical characterization. 1.0 Stretching devices can also be used to apply pressure-controlled mechanical stimuli. 1.0 Stretching devices can be used to apply uniaxial mechanical stimuli. 1.0 used for 1.0 is a component that has a failure extension associated with it. 1.0 component of 1.0 has a roughly equal value for brittle materials compared to ductile materials. 1.0 enables a connection to be sustained until failure at only a small extension for brittle materials. 1.0 Exhibit obvious 1.0 suffer from 1.0 is addressed by 1.0 Brittle Behavior refers to a material's tendency to fracture without deforming significantly, while brittleness is a property that describes a material's susceptibility to brittle behavior. 1.0 has a significantly greater value for ductile materials compared to brittle materials. 1.0 has a resting extension roughly equal to its hidden length. 1.0 is a component-specific parameter that represents the resting length of a Fleine component. 1.0 is a component that has a failure extension associated with it. 1.0 interacts with 1.0 a promising strategy for preparing due to its versatility 1.0 Used to produce 1.0 directly extrudes 1.0 result from 1.0 Contributes to 1.0 Includes 1.0 Includes 1.0 Consists of 1.0 occupies element ratio 1.0 achieved through 3D printing 1.0 controlled via emulsion ink formulations 1.0 controlled via emulsion ink formulations 1.0 facilitates the preparation of 1.0 relationship between 1.0 results in 1.0 functions as 1.0 forms at 1.0 functions as 1.0 Additives can be used to modify pore morphology during freeze-casting. 1.0 Pore morphology can also be affected by cooling rates during freeze-casting. 1.0 Pore morphology can be affected by freezing temperatures during freeze-casting. 1.0 Slurry concentrations can affect pore morphology during freeze-casting. 1.0 includes 1.0 the ratios between are crucial in optimizing the structures of hydroxyapatite scaffolds for bone tissue engineering 1.0 Is dominated structure at small strains 1.0 Is dominated structure at high strain 1.0 are hybrid structures consisting of 1.0 play important biological roles in 1.0 can serve as 1.0 are composed of 1.0 play important biological roles in 1.0 can have specific binding 1.0 provides 1.0 consist of 1.0 influences 1.0 Influences 1.0 connect 1.0 are composed of 1.0 are composed of 1.0 form due to 1.0 form due to 1.0 hardens through cross-linking 1.0 provide reinforcement 1.0 allows for easy incorporation without denaturation 1.0 within which are cross-linked 1.0 Belong to 1.0 can recognize 1.0 A type of carrier used for graphene-based materials that can be used to transport proteins. 1.0 offer advantages over traditional materials due to 1.0 are incorporated into 1.0 can be modulated through,can be modulated through 2.0 facilitate formation of a network through,facilitate formation of a network through 2.0 can form through disordered nucleation 1.0 determined by initial structure upon close contact for further interactions 1.0 formed by 1.0 Proteins are essential for cell structure and function 1.0 combination with 1.0 include 1.0 combined via electrostatic self-assembly 1.0 offer unique advantages 1.0 act as 1.0 serve as 1.0 serve as 1.0 similar to protein-protein recognition in biology 1.0 result in 1.0 is a common amino acid residue found in approximately one-fourth of 1.0 is a spatial arrangement of 1.0 is a common amino acid residue found in approximately one-fourth of 1.0 related to 1.0 related to 1.0 related to 1.0 challenges 1.0 provide 1.0 provide 1.0 Break as loading increases 1.0 Amorphous silica is a major component of diatoms. 1.0 Sponges have spicules 1.0 Amorphous silica is a major component of sponges. 1.0 grown on 1.0 Has similar structure 1.0 site-specific modification through DNA templated mineralization 1.0 protects from degradation 1.0 drugs 1.0 forms on Au nanosphere surfaces 1.0 interact with 1.0 DNA is a component of electrically conductive biopolymer-based nanocomposite hydrogels 1.0 Shares similar features 1.0 Precedes 1.0 is 1.0 Removes 1.0 Dissolves 1.0 Dissolves 1.0 undergoes 1.0 is 1.0 is 1.0 undergoes 1.0 produces 1.0 generates 1.0 produces 1.0 uses 1.0 initial step 1.0 uses 1.0 is 1.0 is 1.0 Introduced 1.0 Provide resources for the creation of new knowledge-based multifunctional materials 1.0 used for 1.0 matches 1.0 May not be suitable for describing 1.0 Fractal dimension 1.0 Fractal surfaces 1.0 Can cover the whole reference plane 1.0 More than bidimensional 1.0 Nowhere differentiable 1.0 Fractal surfaces 1.0 affect 1.0 compared 1.0 are 1.0 used for testing 1.0 used for testing 1.0 influences absorption capability 1.0 influences cell adhesion capability 1.0 introduces cell recognition sites 1.0 changed by addition of CHI 1.0 increased due to CHI incorporation 1.0 control 1.0 provides 1.0 provide 1.0 provides quantitative colorimetric analysis of 1.0 senses 1.0 collects 1.0 is inspired by rod cells found in 1.0 is 1.0 contains 1.0 Discussed For Visualizing Biological Structures 1.0 light is a type of radiant energy that travels at the speed of light and carries energy 1.0 adapts mechanical performance to light flux and temperature 1.0 Relationship between the two concepts is that 'light' is a synonym for 'optical radiation' 1.0 have been loaded into to reduce infection rates 1.0 with antimicrobial activity are being investigated as alternatives due to lower risks of drug resistance 1.0 loaded for sustained local delivery 1.0 can be loaded into 1.0 have been used for the prevention or reduction of osteoporotic fractures by reducing osteoclasts' activity, improving mechanical interlocking and faster recovery from surgery 1.0 such as plasma spraying, radio frequency magnetron sputtering, pulsed laser deposition, and ion beam assisted deposition have been used to deposit various types of bioceramics 1.0 offer benefits of mineral phase osteoconduction with collagenous matrix's RGD-senses for cellular adhesion, subsent proliferation, and differentiation phases 1.0 are being developed to improve bioactivity and efficacy 1.0 Can be modulated 1.0 subtype of signaling molecule 1.0 is the most widespread method due to its high deposition rate and ability to cover large areas 1.0 ejects atoms or molecules from some materials due to bombardment with high-energy ions in a vacuum chamber, becoming precursors for coating 1.0 obtains 1.0 directs mineralization 1.0 involved in 1.0 Spatial organization,Growth orientation,Crystal growth,Diffusion,Affinity,Spatial distribution,Spatial alignment 7.0 have rod-like structure 1.0 have shorter lengths 1.0 have widths 1.0 have nematic liquid crystal order 1.0 are produced through 1.0 related to 1.0 is significantly lower than 1.0 is significantly higher than 1.0 evaluates 1.0 involves 1.0 precedes 1.0 applied to 1.0 effect on 1.0 enhances 1.0 provides 1.0 results from rapid impact 1.0 Elongation can be discussed based on fracture morphology 1.0 HEAs achieve elongation 1.0 Elongation can be discussed based on microstructure images 1.0 favors 1.0 significantly improves 1.0 enhances 1.0 results in drastic improvements 1.0 Influences through morphology and dispersion quality 1.0 Influences through morphology and dispersion quality 1.0 enhances 1.0 resulted from 1.0 Has been improved through 1.0 has 1.0 has 1.0 promotes 1.0 promotes 1.0 has 1.0 Results match those obtained using 1.0 Applied during creep tests 1.0 Recorded during creep tests 1.0 Exhibits during creep tests 1.0 Results could be fitted with 1.0 Exhibits during creep tests 1.0 Contributes to mechanical properties of 1.0 Causes decrease in elastic modulus 1.0 Contributes to mechanical properties of 1.0 describes 1.0 Behavior under loading conditions 1.0 is measured using 1.0 resultsFrom 1.0 facilitates 1.0 induces concentration gradients and parallel stacking 1.0 facilitates 1.0 facilitates 1.0 exhibits dynamic behavior when exposed to 1.0 can be restored through 1.0 is comparable to 1.0 forms through external magnetic field-induced concentration gradients and parallel stacking 1.0 Have 1.0 introduce 1.0 create 1.0 introduce 1.0 include frusta, sandwich panels, composite plates, honeycombs, foams, building structures, and other specific structures 1.0 potential correlation between NW length and 1.0 decreased as length increased 1.0 affects 1.0 affects 1.0 assesses 1.0 involves 1.0 measures 1.0 evaluated through 1.0 decreases 1.0 decreases 1.0 involve 1.0 cultured on 1.0 cultured on 1.0 determined through in vitro studies 1.0 fill entire free volume 1.0 differentiation toward 1.0 compared cytotoxicity 1.0 investigated cytotoxicity 1.0 did not exhibit 1.0 had sturdy protrusions 1.0 had 1.0 Consists of 1.0 Used to produce 1.0 Removes organic materials 1.0 part of 1.0 Removes water content 1.0 can be applied as a pretreatment for 1.0 underwent 1.0 Consists of 1.0 Used as BF agent 1.0 Added to prevent pore collapse 1.0 contain 1.0 consists of 1.0 reduces cytotoxicity likely due to ability to interact with cell membranes and prevent nanoparticle uptake 1.0 Consists of 1.0 Joins ceramic particles at high temperatures 1.0 densification of 1.0 done at 1.0 part of 1.0 Used to optimize sintering process 1.0 is 1.0 Consists of 1.0 contains 1.0 contains 1.0 doNotGrowDueTo 1.0 doNotGrowDueTo 1.0 consists of 1.0 contains 1.0 of collagenous fibrils 1.0 followed by 1.0 exhibits 1.0 determined by 1.0 and plastic deformation 1.0 dissolves part of 1.0 forms part of 1.0 forms part of 1.0 composed of 1.0 is a more specific term for 1.0 combination with 1.0 Produce 1.0 Promotes 1.0 undergoes during compression due to 1.0 Collagen matrices play a role in chondrogenic differentiation 1.0 Collagen matrices contribute to morphological properties 1.0 Collagen matrices are involved in collagen signaling 1.0 mimicked 1.0 found 1.0 found 1.0 exhibits at approximately 1 MPa 1.0 Describes a material's yield strength 1.0 variations affect global strength 1.0 results in increased global strength 1.0 results in reduced global strength 1.0 Is compared to that of yield or bridging zone near the crack tip 1.0 determines 1.0 has a value of 1.0 exceed 1.0 results in enhanced mechanical properties such as 1.0 reduce globally 1.0 lead to 1.0 occurs in peptide bonds as interstrands delaminate during uniaxial extension 1.0 observed across a hierarchical structure for simultaneous toughening at multiple scales 1.0 is a highly effective 1.0 occurs during crack propagation in beetle elytra 1.0 indicated by fiber pull-out and delamination 1.0 mechanism 1.0 present in fresh samples 1.0 increase energy required for crack propagation 1.0 behaves isotropically 1.0 shows little effect on structural stiffness in normal direction,slightly increases structural stiffness from wet to dry state in transverse direction 2.0 protrudes out of fracture surface 1.0 in global stress-strain behavior 1.0 Fibers found within cuticle 1.0 Specific type of cuticle found on dung beetles 1.0 Direction for measuring mechanical properties 1.0 Outer layer of cuticle 1.0 Direction for measuring mechanical properties 1.0 composed of 1.0 displays 1.0 displays 1.0 composed of 1.0 arePinned 1.0 composed of 1.0 is more prominent compared to hollow cortex 1.0 Is a mechanism for terminating 1.0 Occurs in 1.0 Is caused by a combination of 1.0 Is a mechanism for terminating 1.0 Influences 1.0 occurs for cuticula layer under compression 1.0 causes 1.0 leads to plastic relaxation during loading for 1.0 results from rapid impact 1.0 is a component of 1.0 has wavelength of 1.0 provides 1.0 located at 1.0 set at 1.0 set at 1.0 performed during 1.0 is 1.0 is an example of 1.0 X-ray diffraction is allowed for study of complex materials 1.0 X-ray diffraction is used to identify crystal structure 1.0 Crystallographic analysis uses X-ray diffraction to provide crystal structure 1.0 X-ray diffraction records resulting pattern 1.0 is analyzed using 1.0 reveals 1.0 GIXRD peaks indexed to 1.0 reveals 1.0 GIXRD peaks indexed to 1.0 focused on using a microscope lens 1.0 kept constant at 1.0 conducted at 1.0 are created inside 1.0 during production procedures 1.0 is reduced due to 1.0 generated by 1.0 are activated by 1.0 is analyzed after 1.0 are developed by 1.0 demonstrates during stage III 1.0 average values are 1.48% and 1.03% in parallel and perpendicular directions, respectively 1.0 offers potential applications 1.0 offers potential applications 1.0 of 1.0 attaches 1.0 catalyzes 1.0 develops 1.0 can be used as a type of 1.0 interact with 1.0 Immobilized on 1.0 explores 1.0 include 1.0 include 1.0 include 1.0 include 1.0 creates 1.0 involves synthesizing imogolite directly inside 1.0 modifies 1.0 modifies 1.0 attributes 1.0 attributes 1.0 contains 1.0 attributes 1.0 achieves uniform dispersion inside 1.0 Are Blended For 1.0 are dispersed into through 1.0 addresses challenges such as 1.0 crucial for 1.0 enables 1.0 enables 1.0 Renaming 1.0 contains 1.0 results in 1.0 is suitable for applications in 1.0 is a potential substitute for 1.0 is suitable for applications in 1.0 is found in 1.0 undergoes surface modification using 1.0 involves attaching polymer chains onto 1.0 involves self-assembling imogolite onto a substrate using 1.0 HEAs can be achieved using preparation methods 1.0 by 1.0 through 1.0 reveals sufficient for practical applications 1.0 excellent due to properties 1.0 Compared to NC fibrils and CNCs. 1.0 Investigated and properties relevant for various applications including tissue engineering and material science were revealed. 1.0 has 1.0 is improved by 1.0 increases 1.0 is affected by 1.0 refers to 1.0 involves 1.0 determined through TGA 1.0 and biodegradability 1.0 Used to study mechanical behavior 1.0 May enable the exploitation of superior nanoscale properties for applications 1.0 Process of simplifying complex systems into their most basic components for modeling purposes 1.0 Trade-off between simulation accuracy and computational efficiency in coarse-grained modeling 1.0 simplified representation 1.0 described using 1.0 added to promote 1.0 consists of 1.0 Offer advantages over traditional all-atom simulations 1.0 Are consistent with 1.0 May be applied to studying 1.0 Contribute to improved understanding 1.0 Enable long time-scale structural analysis 1.0 For probing effects on biomechanical performance 1.0 Offer opportunities for describing 1.0 Facilitate studies on the assembly process of unit length filaments or the compacting process of full length filaments 1.0 For probing effects on biomechanical performance 1.0 Are consistent with 1.0 For probing effects on biomechanical performance 1.0 For probing effects on biomechanical performance 1.0 Are consistent with both effective Gaussian models and atomistic level simulations 1.0 For probing effects on biomechanical performance 1.0 Offer opportunities for describing 1.0 May enable the exploitation of superior nanoscale properties for applications 1.0 May be applied to studying 1.0 May enable the exploitation of superior nanoscale properties for applications 1.0 May enable the exploitation of superior nanoscale properties for applications 1.0 May be applied to studying 1.0 Was tuned to model water absorption effects on material swelling 1.0 Were used for tensile loading 1.0 Was calculated from adhesion energies 1.0 describes 1.0 R_{min(i,j)} 1.0 ε 1.0 Broke at specific distances obtained from full-atomistic simulations 1.0 Consisting of five unit cells was considered 1.0 Are being inspired by bone structure 1.0 Alternative due to loss of atomic details and molecular interactions 1.0 are based on 1.0 is used for 1.0 studied by several researchers 1.0 enhanced by addition of B as reported by several researchers,enhanced by Boehlert 2.0 significantly enhanced by network architecture design as reported by Wang et al. 1.0 enhanced by addition of B as reported by several researchers 1.0 exceeded at higher temperatures during cyclic oxidation process 1.0 improve oxidation resistance by forming dense and protective oxidation layers during cyclic oxidation process 1.0 forms during cyclic oxidation process at lower temperatures 1.0 improve oxidation resistance by forming dense and protective oxidation layers during cyclic oxidation process 1.0 forms during cyclic oxidation process at higher temperatures 1.0 at higher temperatures during cyclic oxidation process 1.0 with strong bonding between oxide scales and Ti alloys are crucial for improving TMCs' oxidation resistance 1.0 due to increased local fractions of reinforcement in the TiBw-rich network boundary as reported by Wang et al.,due to increased local fractions of reinforcement in the TiBw-rich network boundary as reported by Wang et al. 2.0 at 550-650 °C 1.0 by introducing TiB and TiC reinforcements as reported by Imayev et al. 1.0 occurs at 1073 K 1.0 compared to traditional TMCs with homogeneous microstructure 1.0 by network architecture design as reported by Wang et al. 1.0 with as-cast Ti6Al4V1B alloy according to Boehlert's study 1.0 at 550-650 °C 1.0 at 550-650 °C 1.0 at lower temperatures during cyclic oxidation process 1.0 increases 1.0 increases 1.0 has a significant effect on 1.0 All NC samples showed negative zeta potential in neutral water, indicating stable colloids. 1.0 controlled to fix fibrils in place with lowered repulsion 1.0 used to tailor nanoporosity 1.0 can be used to tailor nanoporosity 1.0 process for tailoring nanoporosity 1.0 can result in materials with larger pore sizes 1.0 difficulty imaging due to small pore sizes and insulating nature 1.0 includes 1.0 can adjust 1.0 can adjust 1.0 can allow for 1.0 Predicted by calculating the number of H-bonds participating in a unit fracture event at the rupture front 1.0 Rises Ncr-fold when Nr hydrogen bonds break simultaneously 1.0 lowers 1.0 Images 1.0 characterized using Bruker ScanAsyst Air ultrasharp tips 1.0 cannot be compared directly 1.0 analyzed through 1.0 to,to 2.0 Deforms 1.0 Characterizes 1.0 Calculates 1.0 Determines 1.0 Quantifies 1.0 Plays a non-trivial role in determining 1.0 has 1.0 provides 1.0 Measured and reported in literature 1.0 Measured and reported in literature 1.0 affects 1.0 when force is relieved 1.0 occurs immediately 1.0 provide 1.0 provides 1.0 is necessary for 1.0 Shows 1.0 Constitute 1.0 is resisted during welding 1.0 decreases during welding 1.0 is welded between layers through 1.0 Extruded Through Without Further Milling Or Filtration For 1.0 Results In 1.0 Results In 1.0 can efficiently detoxify contaminants such as 4-chlorophenol and trichloroacetic acid through electroreduction processes 1.0 can interact through van der Waals forces, electrostatic interactions, and hydrophobic interactions 1.0 form during supercontraction 1.0 Allow for analysis through extension of model 1.0 Allow for analysis through extension of model 1.0 Allow for analysis through extension of model 1.0 have 1.0 share 1.0 exhibit 1.0 can be formed through biomimetic mineralization by genetically fusing metal-binding peptides,can have enhanced properties for various functional applications due to synergy between organic and inorganic components 2.0 can be modified through hydrophobic interactions for various functional applications 1.0 can be decorated through electrostatic interactions for catalytic and electronic device applications 1.0 can be co-assembled through π-π stacking interactions for sensitive detection of amyloid formation through changes in emission intensity 1.0 contribute to 1.0 used for 1.0 used for 1.0 used for 1.0 used for 1.0 used for 1.0 used for 1.0 used for 1.0 used for 1.0 have been used for 1.0 involved in 1.0 Applications In 1.0 applicable for 1.0 Evaluated through 1.0 divide large adhesive contacts into 1.0 Explored for adhesives 1.0 are inspired by nature's suction mechanisms found in aquatic animals like octopuses and clingfish 1.0 have the potential to improve sensor sensitivity and conformity in aquatic environments 1.0 GNPs can be used as a reinforced phase in HEAs 1.0 HEAs have compressive strength 1.0 HEAs can be reinforced with laminated structures 1.0 Laminated structures can be created through hot isostatic pressing 1.0 Laminated structures can be created through hot pressing 1.0 Laminated structures lead to dislocations 1.0 Laminated structures lead to twins 1.0 Laminated structures can be created through spark plasma sintering 1.0 Laminated structures can be created through vacuum hot-pressure sintering 1.0 Toughening can further enhance synergy (strength-plasticity) 1.0 is less than 1.0 is 1.0 is 1.0 is greater than 1.0 is 1.0 Has intermediate value of 1.0 Has lowest value of 1.0 Has highest value of 1.0 designed with biomimetic bone structure,designed with microscale lattice structure 2.0 decreases 1.0 Weaken resistance to 1.0 Present in,Increased density of 2.0 can be generated during 1.0 preferential occurrence 1.0 leads to 1.0 have an orderly face-centered cubic crystal structure 1.0 allows during deformation 1.0 deserves attention due to the varying mechanical properties at different structural levels 1.0 depend on 1.0 depend on 1.0 depend on 1.0 are higher than 1.0 are higher than 1.0 are lower than 1.0 are lower than 1.0 have 1.0 have 1.0 have 1.0 have 1.0 have 1.0 is less than 1.0 have 1.0 Laminate elastic modeling can be used to analyze the mechanical behavior of complex structures like the tibia cuticle structure. 1.0 results in 1.0 higher rates due to high porosity and SSA promoting biodegradation 1.0 hard particles are located within soft matrix 1.0 refers to the ability to manipulate the location of demineralization fronts 1.0 Source Of Macroscopic Strength 1.0 influences 1.0 Significantly impacts 1.0 orientation of crystal fibers changes with increasing distance from outer surface 1.0 Important factor in determining phase transition during deformation 1.0 affects 1.0 affects 1.0 hard particles are oriented within soft matrix 1.0 Dependence 1.0 causes bright and dark features to interchange 1.0 influenced by 1.0 dependence 1.0 indicates 1.0 Produce 1.0 Have 1.0 Produce 1.0 Produce 1.0 Have 1.0 Produce 1.0 Produce 1.0 includes 1.0 includes 1.0 includes 1.0 Produces 1.0 Involves 1.0 Produces 1.0 provides 1.0 provides 1.0 is essential for 1.0 requires 1.0 includes 1.0 includes 1.0 suitable for 1.0 includes 1.0 includes 1.0 affects 1.0 affects 1.0 offers advantages over 1.0 can be improved by 1.0 enhances 1.0 is used for creating 1.0 is related to 1.0 lie in 1.0 enable a lower mechanical resistance during 1.0 Forms under strain 1.0 Forms under strain 1.0 are 1.0 Is dominated structure at high strain 1.0 Reduces as strain increases,Decreases at small strains 2.0 Begins at large deformations 1.0 Is used for simulation 1.0 Is included in simulation 1.0 Allows for longer time-scales 1.0 alternative to 1.0 occurs under tension 1.0 occurs under tension 1.0 indicates 1.0 Occurs during stretching of single drawn fibers 1.0 of polymer chains by 1.0 due to 1.0 functions during swimming 1.0 builds up 1.0 used at 1.0 used at 1.0 Uses 1.0 composed of 1.0 prevents 1.0 helps to select 1.0 improves 1.0 reduces 1.0 The accuracy of a Material Property Calculation can be affected by the choice of Software Package. 1.0 is crucial for 1.0 provide 1.0 validate 1.0 handled up to 15% 1.0 Used for 1.0 Used for 1.0 used for 1.0 Capable of making bespoke structures with multi-scale porosities for tissue engineering applications 1.0 Compared to hierarchical scaffolds with appropriately controlled pore sizes 1.0 Achieved through a combination of cryogenic freezing, freeze-drying, and electrospinning techniques for tissue engineering 1.0 Achieved through varying electrospun collagen micro/nanofiber deposition times 1.0 Allows for Creation of 1.0 of hydrogels as scaffolds for cell storage is crucial 1.0 Fabricated using a hybrid technique that allows for controlled pore sizes 1.0 Without fibers 1.0 Without fibers 1.0 compared to 1.0 compared to 1.0 can improve osteoinductivity 1.0 showed better bone formation without deformation compared to 1.0 Vascular area is significantly smaller at both time points 1.0 Vascular area is significantly smaller at both time points 1.0 Grows inside after 1 week 1.0 aligned unidirectionally onto 1.0 made using 1.0 electrospun on top of 1.0 Combine 1.0 have 1.0 made using 1.0 mimic 1.0 for fabricating 1.0 inspired by 1.0 Yet to be fully understood 1.0 Have 1.0 due to 1.0 has 1.0 has 1.0 presented involves 1.0 allows for 1.0 allows for 1.0 involves 1.0 developed 1.0 conducted 1.0 extremely high adhesion strength: 1.3 MPa 1.0 extensively studied by in situ observation 1.0 the cup separated from the substrate by rapid crack propagation due to van der Waals interactions 1.0 designed 1.0 controlled by water leakage into the cavity 1.0 developed 1.0 is connected to 1.0 is connected to 1.0 is associated with 1.0 stands for 1.0 found in 1.0 found in 1.0 exhibits distinct structural features and packing arrangements 1.0 found in 1.0 found in 1.0 is connected to 1.0 does not show substantial differences 1.0 exhibits distinct structural features and packing arrangements 1.0 found in 1.0 Fraction converted to hydrostatic plastic strain 1.0 precedes 1.0 influences 1.0 contributes through changes in osmotic potential,contributes through nonisotropic expansion/contraction effects resulting from biochemical processes 2.0 defined as 1.0 contain 1.0 Immunogenicity is synonymous with antigenicity. 1.0 influences 1.0 influences 1.0 are 1.0 vary 1 consisted of two HAP cells placed over each other with thickness of 7.5 Å determined from simulation 1.0 due to 1.0 calculated from critical force obtained by curve fitting 1.0 and 1.0 explored through atomistic simulations 1.0 simulated supercells divided into 1.0 recorded at 20% strain 1.0 simulated using only segment of full-length molecule due to computational limitations 1.0 allows for generation of stress-strain curves from NEMD simulations 1.0 had WT molecules separating the two 1.0 At multiple length scales can transform the way design and qualification are carried out for these complex materials 1.0 describes 1.0 influence on 1 Provide 1 has an important function in 1.0 Play a crucial role 1.0 dominate over 1.0 Study of 1.0 Strength of individual components 1.0 Specific ways of deformation 1.0 Approaches for material design 1.0 Determining factors 1.0 Strength of interface 1.0 Failure mode 1.0 Simulation technique 1.0 Failure mode 1.0 Deformation mechanism 1.0 Contributing factor 1.0 Factors contributing to strength 1.0 is reduced by 30-35% due to 1.0 increases the modulus by approximately 1.0 allowed for 1.0 used for 1.0 used to characterize 1.0 Describes 1.0 is analyzed for 1.0 May provoke an immune response due to foreignness. 1.0 positive correlation 1.0 affects 1.0 affects 1.0 visualizes 1.0 is a relationship indicating property or characteristic. 1.0 provides improved microenvironment for 1.0 displays more mature state comparable to cells grown in a 2D environment 1.0 investigation of 1.0 observation after S1P treatment 1.0 increases at higher CXG content 1.0 can be controlled through 1.0 is 1.0 positive correlation 1.0 is taken into account 1.0 is crucial for 1.0 important parameter for optimization 1.0 important parameter for optimization 1.0 composed of 1.0 decreases 1.0 decreases for smaller aspect ratios as mineral plate thickness increases 1.0 decreases for smaller aspect ratios as mineral plate thickness increases 1.0 is 1.0 Has a significant effect at smaller aspect ratios 1.0 Influences SIF of main crack 1.0 corresponds to 1.0 corresponds to 1.0 corresponds to 1.0 extracted 1.0 increases as 1.0 critically impacts 1.0 can be varied independently through STEPS 1.0 can be varied using plasma treatment or functionalization techniques 1.0 Contributes to 1.0 Contributes to 1.0 with minimal dependence 1.0 Conducted for validation purposes 1.0 Reveals enhanced structural crashworthiness of 1.0 Investigated with different orders 1.0 Modulate 1.0 Modulate 1.0 Investigate effects on tissue behavior 1.0 explicit structure is a component of finite element models 1.0 framework is a component of finite element models 1.0 implicit structure is a component of finite element models 1.0 finite element models are used to study ligament deformation 1.0 Simulate 1.0 Apply 1.0 Finite element model introduces Waviness 1.0 Finite element model employs Cohesive Zone Model (CZM) 1.0 Finite element model utilizes Continuum shell elements 1.0 Finite element model applies Tie constraints 1.0 Finite element model generates Voronoi diagram through transformation 1.0 Finite element model utilizes Zero thickness cohesive elements 1.0 Have more uniform and s-shaped deformation patterns during collapse 1.0 Increases with increasing order 1.0 Maintains stable peak collapse forces 1.0 Exhibits better for high-order HHCs 1.0 Is determined by order 1.0 Has optimal range for both impact energy absorption and peak crushing force efficiency 1.0 Considered with effective stress-strain curve 1.0 used for 1.0 uses 1.0 applied to 1.0 applied to 1.0 is defined as a function of 1.0 is an example of 1.0 has 1.0 provides 1.0 is composed of 1.0 is produced using 1.0 Measured by 1.0 Contained in 1.0 Extracted through 1.0 Contained in 1.0 Measured by 1.0 Separated from through 1.0 Used during 1.0 Mixed with during compression molding 1.0 Used during 1.0 Mixed with 1.0 is mixed with at the first junction of 1.0 is investigated through 1.0 carries out at a load speed of 1 mm-min-1 with a gauge length of 5 mm 1.0 Characters 1.0 determine 1.0 heat from 0 to 180°C at a rate of 10°C/min 1.0 analyze using TA Instruments Universal Analysis 2000 software 1.0 contribute to physical crosslinking points 1.0 reveal orientation due to immiscibility 1.0 used to investigate 1.0 exposures 1.0 allows for non-destructive identification of 1.0 Manipulates through 1.0 Describes 1.0 Statistical mechanical framework used to describe materials behavior at high temperatures and pressures 1.0 Describes potential energy of a material as a function of configuration and affects materials deformation and transformation under applied forces 1.0 Theoretical framework used to describe materials behavior undergoing diffusion-controlled processes 1.0 Describes path that a material takes as it undergoes a transformation or reaction 1.0 synonym 1.0 and 1.0 enhance thermal stability 1.0 primarily drive interactions with SG due to pH being higher than IEP,occur between negative charged carboxyl groups of SG and positive charged ends of CTAB molecules 2.0 exhibit 1.0 suggest 1.0 are more compliant 1.0 are better suited for 1.0 Aids in Material Selection and Device Design for Optimal Performance 1.0 is a method used in 1.0 dependenceOn 1.0 addressesChallengesOf 1.0 poorScalingWith 1.0 componentOf 1.0 usedFor 1.0 Critical Environmental Factor Affecting Charging and Discharging Processes 1.0 increases 1.0 increases 1.0 increases 1.0 contributions at the spatula level through capillary forces produced by monolayer water adsorption between spatula and substrate 1.0 is another term for 1.0 during testing 1.0 can have programmable dynamic responses 1.0 achieved through elasticity matching 1.0 achieved through 1.0 achieved through 1.0 collected for 1.0 carried out using 1.0 collected for 1.0 separates efficiently from water 1.0 separates efficiently from water 1.0 remains over,exhibits superoleophobic properties in air 2.0 have been generated using 1.0 can absorb and remove various types of from water biphasic systems 1.0 spread slowly on due to low adhesion and underwater superoleophobicity,adhesion force increases as droplet pressing distance increases 2.0 separates efficiently from water 1.0 of structures at different length scales 1.0 this enhanced performance can be attributed to 1.0 Realized through unit cell intertwining 1.0 Resembles 1.0 Essential property for characterizing experimental behavior at microscale 1.0 Increases through post-contact mechanisms 1.0 potential trend of lower dissipated energy 1.0 significant 1.0 provide 1.0 mechanism 1.0 mechanism 1.0 measured by 1.0 contributes to 1.0 Have significant differences based on 1.0 higher proportion of 1.0 are influenced by H-bonds 1.0 can lead to 1.0 benefits through wedge-shaped interlocking 1.0 can be enhanced through 1.0 Shows 1.0 results from 1.0 is related to 1.0 Enables 1.0 Energy Dissipation refers to the process by which a material absorbs and dissipates energy during deformation or loading, while energy dissipation is a specific property or behavior of a material that allows it to absorb and dissipate energy during deformation or loading. 1.0 greatly enhanced due to mimicking nacre structures 1.0 Is 1.0 Occupies two times larger space than octet truss for same parameters 1.0 Conducted utilizing Hysitron TI 950 triboindenter 1.0 Share edges between 1.0 Composed of three rotated by 90° 1.0 Is 1 1.0 Compared to octet truss 1.0 Used in 1.0 Used for calibration 1.0 Employed to correct for load-frame compliance and imperfect indenter tip shape 1.0 uses 1.0 compared with 1.0 considers 1.0 obtained for 1.0 obtained for 1.0 obtained for 1.0 considers 1.0 reflects 1.0 considers 1.0 reflects 1.0 obtained through 1.0 compared with 1.0 incorporates into finite element (FE) simulation 1.0 utilizes during modeling process 1.0 incorporates into finite element (FE) simulation 1.0 utilizes during modeling process 1.0 depends on intrinsic properties of pendulum 1.0 represents normalization by sum of recovered and dissipated sample energies 1.0 depends on intrinsic properties of pendulum 1.0 depends on intrinsic properties of pendulum 1.0 depends on intrinsic properties of pendulum 1.0 depends on intrinsic properties of pendulum 1.0 depends on intrinsic properties of pendulum 1.0 depends on intrinsic properties of pendulum 1.0 is connected to 1.0 is connected to 1.0 serves as a reference for comparing mechanical properties 1.0 considered different compression directions 1.0 were considered for 1.0 were considered for 1.0 are 1.0 was used as a reference for comparing mechanical properties 1.0 is connected to 1.0 is connected to 1.0 affects energy-to-break distribution 1.0 influenced by 1.0 Renaming 1.0 includes relaxed 1.0 are slightly different from numerical results due to assumptions about the stiffness of exterior shells 1.0 compared 1.0 defined by yield stress 1.0 defined by failure stress 1.0 variations affect global strength 1.0 results in increased global strength 1.0 results in reduced global strength 1.0 Synonym or alternative label 1.0 added for 1.0 added for 1.0 established and optimized based on 1.0 has 1.0 involves 1.0 Decreases with distance 1.0 visible hierarchy 1.0 connected by 1.0 used for 1.0 has 1.0 has 1.0 includes 1.0 provided for 1.0 includes 1.0 Involves 1.0 related to 1.0 range from 1.0 while 1.0 applies insights to design synthetic materials 1.0 allows for non-invasive study 1 allows for more detailed analysis and simulations 1.0 provides insight into latest capabilities and techniques 1.0 allows for visualization and measurement of flow paths and velocities 1.0 non-destructive imaging of 1.0 benefits 1.0 enables visualization of 1.0 benefits 1.0 is 1.0 evolved into 1.0 provides 1.0 increases 1.0 can improve mechanical properties of 1.0 can improve mechanical properties of 1.0 can reduce 1.0 completely cured in 1.0 used as repair material for 1.0 cured in 1.0 left uncoated for comparison for others 1.0 applied by immersion above sodium silicate layer for some tubes 1.0 applied to exterior surfaces to provide additional protection 1.0 applied as first layer through immersion to improve lifetime and shock resistance of 1.0 sealed extremities before injecting healing agent into 1.0 are used for 1.0 are filled with 1.0 are a type of 1.0 undergoes 1.0 undergoes 1.0 undergoes 1.0 evaluated as potential 1.0 Used for both materials 1.0 occurs for articular bone tissue 1.0 was used to analyze 1.0 at 1.0 due to 1.0 stored in,stored in 2.0 and/or increased interfibrillar water recruitment by phosphate ions adsorbed onto fibrils 1.0 had a lower concentration at equilibrium swelling compared to 1.0 are stabilized via 1.0 promote 1.0 have lower mechanical properties compared to 1.0 have superior 1.0 promote 1.0 do not cause 1.0 require particular care for 1.0 are based on 1.0 used in 1.0 improves 1.0 can be incorporated into 1.0 mimic 1.0 can be encapsulated in 1.0 submerged during 1.0 is 1.0 Consists of fullows. 1.0 May be located near arcs on some materials. 1.0 The pattern or feature that appears on the surface of some materials. 1.0 measured from 1.0 provide information about 1.0 predominantly 1.0 suggests 1.0 form on 1.0 located at 1.0 Contains 1.0 Contains 1.0 Is Described By 1.0 Is Described By 1.0 Occurs During 1.0 Occurs During 1.0 Occurs During 1.0 Occurs During 1.0 Associated With 1.0 Consists Of 1.0 Occurs During 1.0 Occurs During 1.0 Incorporates a mechanistic understanding of deformation regimes based on 1.0 optimization 1.0 achieved through 1.0 potential improvement 1.0 achievement 1.0 used in 1.0 used in 1.0 used in 1.0 has excellent 1.0 has excellent 1.0 has 1.0 has 1.0 used for 1.0 requires 1.0 affects sensitivity 1.0 involved in Kirkpatrick and Zallen model 1.0 results from too low a concentration 1.0 determines sensitivity 1.0 increases 1.0 significantly affects 1.0 Is related to 1.0 Exists 1.0 Exists 1.0 Composites have inferior electrical conductivity 1.0 improves 1.0 Have 1.0 provides 1.0 determined 1.0 can be tuned through degree of oxidation 1.0 can be enhanced through chemical cross-linking 1.0 is enhanced by 1.0 comes from bridging effect between networks 1.0 increases but weakens mechanical properties 1.0 The electrical conductivity of graphene-based devices. 1.0 results from too high a concentration 1.0 results from too low a concentration 1.0 indicates significant change with fine strain 1.0 GF increases based on number of dip coating processes 1.0 is used for depositing 1.0 is deposited onto 1.0 is deposited using 1.0 is 1.0 is deposited using 1.0 is 1.0 is deposited using 1.0 is deposited onto 1.0 is used for depositing 1.0 employed due to abundant hydrogen bonds 1.0 requires 1.0 requires 1.0 results from 1.0 similar to the ECM of articular cartilage 1.0 have 1.0 consist of 1.0 achieved through electrode layers 1.0 is used for assembling 1.0 is used for assembling 1.0 is used for assembling 1.0 drives 1.0 drives 1.0 utilize 1.0 have in composition and atomic-level defects 1.0 provide protective functions 1.0 is 1.0 seeks to emulate 1.0 Overarching category for different types of structural features found in biominerals 1.0 provides basis for characteristic behavior 1.0 facilitate 1.0 synonym 1.0 provide impressive mechanical reinforcement,provide functional properties 2.0 mechanism 1.0 mechanism 1.0 achieved through 1.0 crucial for 1.0 Enables 1.0 inspired by 1.0 Application 1.0 Both surfaces exhibit water repellency due to their microstructure and chemical composition, resulting in self-cleaning properties through the Lotus effect. 1.0 are attributed to 1.0 The Lotus leaf is a natural material that exhibits self-cleaning properties due to its microstructure and chemical composition. 1.0 results in 1.0 is due to 1.0 has 1.0 leads to 1.0 consists of 1.0 consists of 1.0 consists of 1.0 consists of 1.0 consists of 1.0 describes 1.0 involves 1.0 involves 1.0 ε_{1} 1.0 contributes 1.0 limits 1.0 distinguishes 1.0 cooperatively induce 1.0 is 1.0 like Bauhiinia 1.0 while 1.0 distinguishes 1.0 distinguishes 1.0 r_{ij} 1.0 q_{i} 1.0 Magnesium hydroxide is a mineral used as a flame retardant in biocomposites. 1.0 Crosslinking agents 1.0 Have significant impact; composites exhibit higher tensile strength and toughness 1.0 Ionic bonding 1.0 Excess SF acts as intercalated impurities and decreases mechanical properties if more than 2.5 wt% 1.0 are composed of 1.0 formed between 1.0 enhances 1.0 promotes 1.0 controls 1.0 reduces 1.0 involves 1.0 is a component of 1.0 is coated with 1.0 the mechanical properties of composite hydrogels 1.0 excluded from 1.0 aggregate between 1.0 facilitate formation even at extremely low PVA concentrations 1.0 with PVA chains,with GO sheets 2.0 cannot be distinguished from SEM images 1.0 more readily formed with 1.0 more readily formed with 1.0 more readily formed with 1.0 problem 1.0 essential for high-performance carbon-based mechanical sensors 1.0 are used as electrolyte 1.0 result from 1.0 result from 1.0 result from 1.0 used as anode 1.0 used as anode 1.0 derived from hierarchical structure 1.0 feasible approaches due to high electrical conductivity and elastic properties 1.0 effectiveness in realizing 1.0 used as 1.0 undergo 1.0 undergo 1.0 impact 1.0 impact 1.0 impact 1.0 impact 1.0 for Li+/Na+ intercalation 1.0 can enhance 1.0 impact 1.0 impact 1.0 for ion adsorption 1.0 attractive for use as transparent conductive films 1.0 for detecting small to large deformations 1.0 effectiveness in realizing 1.0 Improve gas sensing properties 1.0 are made of 1.0 enhances properties 1.0 results in 1.0 exhibits 1.0 fully unfolds upon 1.0 collective formation of 1.0 photocatalytic properties when impregnated 1.0 alignment and growth on metallic substrates using chemical vapor deposition (CVD) 1.0 conformal filling provides flexible conducting hybrid 3D architectures with unique electromechanical properties due to the dense nanotube network 1.0 used to manufacture 1.0 based on 1.0 of both the oxidation stability of metals and the formation of a conductive network 1.0 causes 1.0 causes 1.0 is aligned with 1.0 is aligned with 1.0 significantly increased the expression of 1.0 significantly increased the expression of 1.0 seeded onto 1.0 performed using primers specific to 1.0 obtained by adding NSC powder to 1.0 and filtration 1.0 and stirred for another 1.0 washed with water and precipitated in an excess of ethanol and acetone three times before drying in vacuum at 1.0 followed by continuous stirring at room temperature for 1.0 mixed with 1.0 based on 1.0 removed through 1.0 followed by 1.0 without using 1.0 Of these structures 1.0 in weaker bioadhesives 1.0 of directional freezing 1.0 in weaker bioadhesives 1.0 important factor for design 1.0 crucial factor for design 1.0 crucial factor for design 1.0 of salting out 1.0 involves Hofmeister effect 1.0 of directional freezing 1.0 of salting out 1.0 of salting out 1.0 Fabrication techniques is a more specific term for manufacturing methods. 1.0 changes from progressive to catastrophic as forming pressure increases 1.0 indicate 1.0 more spatially diffuse 1.0 demonstrated that the scaffold's degradation or leaching products were nontoxic and enhanced growth and proliferation of osteoblasts compared to blank medium 1.0 Allows for formation through combinatorial method of molecular self-assembly (MS) and additive manufacturing (AM) (renamed to Composite Formation Method) 1.0 Uniformly reinforced through an in situ biomimetic mineralization process during printing (renamed to Reinforcement Method) 1.0 Reinforcing effect improves mechanical properties due to biomimetic mineralization process during printing (renamed to Reinforcement Effect) 1.0 Resulting composite materials closely mimic macroarchitecture, local nanostructure, mineral gradients, and consent mechanical gradients of complex heterogeneous tissues like bone-cartilage composites for potential osteochondral grafts (renamed to Biomimetic Properties) 1.0 Calcium phosphate is a major component of teeth. 1.0 Allows for due to unique intrinsic-extrinsic toughening mechanism (renamed to Toughening Mechanism) 1.0 is a type of 1.0 is used for fabrication of 1.0 is used for 1.0 is used for 1.0 is an application of 1.0 is used for fabrication of 1.0 falls under 1.0 benefits from 1.0 are implanted into 1.0 are implanted into 1.0 is performed on 1.0 is used for,excels compared to 2.0 is repaired using 1.0 is used for creating 1.0 is used for 1.0 is used for 1.0 is created using 1.0 promotes bone healing more effectively than 1.0 are used for implantation 1.0 are implanted into,are implanted into 2.0 is a type of 1.0 Offers Advantages Over 1.0 involve 1.0 used for 1.0 used for 1.0 can be transformed into 1.0 inspire 1.0 without 1.0 forms hybrid mixture solution 1.0 induced polymerization 1.0 composition 1.0 form nanodomains 1.0 or 1.0 is accomplished through 1.0 release 1.0 are formed through 1.0 are used for 1.0 diisocyanates 1.0 is a part of 1.0 made from 1.0 due to 1.0 is the dominant mechanism for 1.0 promotes toughness 1.0 mechanism 1.0 reversed due to 1.0 shifted from 1.0 shifted to 1.0 consists of 1.0 consists of 1.0 encompasses 1.0 effects 1.0 have contributed to 1.0 have been encapsulated 1.0 have 1.0 include 1.0 have 1.0 have 1.0 have 1.0 have shown high energy density 1.0 have shown 1.0 have been used as scaffolds 1.0 preferred over 1.0 preferred over 1.0 shows 1.0 provide 1.0 provide 1.0 mediated the growth of HAp crystals on its surface and exhibited a synergistic effect for antibacterial activity against Gram-positive bacteria 1.0 Possess 1.0 Produces 1.0 has 1.0 are attributed to 1.0 possess 1.0 is composed of 1.0 consists of 1.0 are involved in rupture mechanism at low deformation rates 1.0 are involved in rupture mechanism at low deformation rates 1.0 contain 1.0 is 1.0 has range between 1.0 is 1.0 peaks 1.0 aligned along axis of tension 1.0 between resting state and post-yield stiffening 1.0 Applies to 1.0 Characterized by 1.0 are 1.0 are 1.0 are 1.0 are 1.0 are 1.0 are 1.0 are 1.0 are 1.0 are 1.0 are 1.0 have 1.0 are active components for 1.0 are active components for 1.0 offer 1.0 have 1.0 have 1.0 are active components for 1.0 offer potential applications 1.0 has potential applications in 1.0 Enables 1.0 Requires 1.0 Have 1.0 exhibits after yield strength 1.0 Nonlinear stress-strain relationship includes a plateau region. 1.0 in fast deformation mode 1.0 in slow deformation mode 1.0 change from fast to slow deformation mode 1.0 show 1.0 explains observed morphology 1.0 increases 1.0 determined through 1.0 type of 1.0 type of 1.0 determined using standard curve 1.0 inclusive hierarchical relation 1.0 modifies 1.0 utilize 1.0 utilize 1.0 provide practical applications for 1.0 provide 1.0 in 1.0 between 1.0 Smaller possibly associated with changes in residual stresses due to thermal-expansion mismatch 1.0 generated at 1.0 involves 1.0 increase 1.0 increase 1.0 interplay 1.0 enhances through redox switching,enhances through redox switching 2.0 template 1.0 bind 1.0 mimic 1.0 Nearly the same order as that of engineering alloys such as stainless steel 1.0 Higher values compared to 1.0 Delamination failure refers to a specific type of failure that occurs due to high anisotropy in fracture resistance with respect to fiber orientation within the structure for dry samples. 1.0 stored at 1.0 Object,Had 2.0 Increased compared to dry samples 1.0 Significantly improved compared to dry samples 1.0 First ply failure (FPF) refers to a specific type of failure that occurs due to exceeding the strength of the highest stressed lamina consisting of unidirectional chitin fibers embedded in a proteinaceous matrix for wet samples. 1.0 Object,Had 2.0 untypical for 1.0 Display 1.0 remains unchanged for elderly individuals 1.0 Exhibits 1.0 up to 1.0 tailor during small deformations 1.0 have 1.0 join 1.0 dissipates during impact 1.0 Connected by 1.0 more than expected 1.0 Is related to 1.0 affects 1.0 exhibits 1.0 can range from 1.0 benefit for the organism 1.0 benefit for the organism 1.0 isotropic distribution,preference for c-axis orientation parallel to cuticle surface 2.0 lacks vertically oriented fibrils 1.0 calcite cleavage planes are not oriented in parallel 1.0 exist 1.0 exist 1.0 driven by evolutionary adaptation for support and protection 1.0 is not varied significantly 1.0 is not varied significantly 1.0 Revealed by X-ray diffraction analysis as cellulose I structure with parallel arrangement of anhydroglucose chains. 1.0 Determined with atomic resolution through 1.0 Mineralized collagen fibrils exhibit higher stiffness than 1.0 consist primarily of 1.0 contain 1.0 observed during in situ mechanical testing using small-angle X-ray scattering 1.0 differing mechanisms of elasticity and plasticity leading to varying stiffness, strength, ductility, and toughness in biological materials 1.0 Technique used to examine 1.0 used for 1.0 is employed to measure 1.0 gains insight into multi-scale mechanisms that allow biological materials to achieve exceptional mechanical properties despite relatively weak constituents 1.0 obtain 1.0 previously assumed to be 1.0 consists of 1.0 reveals complex arrangements of organic and inorganic phases, non-uniform interfaces, and varying birefringent retardance values for differently oriented colonies. 1.0 due to 1.0 is composed of 1.0 in the size range of the super-structure observed by incident light microscopy 1.0 due to 1.0 gradually changes as a function of distance 1.0 encompassing 1.0 Structural features found in biominerals with similar properties to nacreous shells 1.0 composed of 1.0 separates flat ts of 1.0 have 1.0 Relationship between a database and a storage device, where the database is stored and accessed through the storage device. 1.0 The function of holding and organizing large amounts of data for easy access and retrieval. 1.0 Both function and procedure are used to perform a specific task or operation. The main difference is that a function always returns a value, while a procedure does not necessarily return a value. 1.0 Hardware refers to the physical components of a computer system, while software refers to the programs and applications that run on those components. 1.0 The physical components that make up a computer system or network, such as processors, memory, and storage devices. 1.0 Input refers to data or information that is provided to a system or device, while output refers to the result or response that is produced by the system or device. 1.0 The interconnected system of computers, devices, and software that enables communication and collaboration among users and systems. 1.0 Operating system is a software program that manages computer hardware and software resources and provides common services for computer programs, while kernel is a central component of an operating system that manages basic system functions and provides essential services to other system components. 1.0 The program that manages a computer system's hardware and software resources and provides common services for computer programs. 1.0 Operating systems provide app stores for downloading and installing mobile applications. 1.0 Operating systems provide various security features such as biometric authentication or data encryption. 1.0 Operating systems provide a user interface for interacting with smartphones. 1.0 Smartphones run on operating systems such as iOS or Android. 1.0 Storage device refers to a physical device used to store data or information, while memory refers to a physical device used to store data or instructions that a computer can quickly access and manipulate. 1.0 Follows 1.0 statistically infer 1.0 beyond vocalization purposes 1.0 Enhances 1.0 The exchange of information between a computer system or network and its external environment, such as users, other systems, or devices. 1.0 with different fiber orientations 1.0 allows for 1.0 causes 1.0 effectively blends 1.0 induces 1.0 with different fiber orientations 1.0 attributed to 1.0 with 1.0 used for creating 1.0 are analyzed 1.0 prevents 1.0 are tracked 1.0 contribute to high mechanical strength 1.0 Renaming for consistency and clarity 1.0 increase 1.0 organic matrix interlayers are used to bond layers together in laminated composites. 1.0 have 1.0 approach the stiffness and strength of 1.0 have 1.0 are surpassed by printed LCPs in terms of specific strength and Young's modulus 1.0 are confirmed through strain maps obtained by 1.0 have lower modulus of toughness compared to 1.0 have 1.0 have 1.0 aligned 1.0 have a marked increase without loss of intrinsically high damping properties 1.0 such as 1.0 Layer-by-layer deposition is a process that results in the formation of ceramic layers. 1.0 similar to 1.0 incorporated into 1.0 with 1.0 incorporated into 1.0 Serves as a benchmark for comparing the toughness of other materials. 1.0 encompasses 1.0 locks together and stiffens 1.0 allows shell to flex and deform 1.0 absorb during rupture 1.0 Biopolymer networks refer to a specific type of network composed of collagen fibers, which are important structural components found in many biological tissues. 1.0 prevents 1.0 exist through their thickness 1.0 provide 1.0 are located at 1.0 are located at 1.0 neighboring elements become interlocked under 1.0 is equivalent to specific surface free energy for 1.0 is represented by 1.0 Remains almost identical regardless of crack size 1.0 occurs under shear bands due to the presence of cracks within the TiAl3 layers that penetrate the ductile Ti layers 1.0 Occurs at 1.0 shows 1.0 shows 1.0 accompanied by further compression 1.0 used to reorient 1.0 due to thermal stresses 1.0 increases 1.0 increases 1.0 does not alter 1.0 increases 1.0 increases 1.0 increases 1.0 increases 1.0 increases 1.0 does not alter 1.0 changes significantly 1.0 has 1.0 governs 1.0 controlled by 1.0 contains PLA/CNC composites 1.0 contains PLA/CNC composites 1.0 SEM was used to examine the structure of KCS 1.0 of 1.0 Characterized by 1.0 allow for high-resolution imaging of 1.0 allow for high-resolution imaging of 1.0 analyzed through 1.0 is less during CIM and DPIM processes 1.0 is affected by degree of molecular orientation induced by 1.0 Nonlinear stress-strain relationship includes a linear elastic region. 1.0 enables 1.0 has 1.0 approximation 1.0 consists of 1.0 encloses 1.0 encloses 1.0 contain 1.0 holds promise for improving 1.0 reveals predominance of 1.0 Optimized Properties through Tuning Structure at Different Length Scales 1.0 created based on 1.0 is being explored to enhance strength and toughness for various engineering applications 1.0 are needed to further increase toughness and strength while better understanding biological materials 1.0 mounted 1.0 connection 1.0 removal 1.0 with 1.0 in 1.0 (100-400 μm) 1.0 (250-370 μm) 1.0 offers compared to 1.0 may result in compared to FDM 1.0 may result in compared to FDM 1.0 offers compared to FDM 1.0 makes it more challenging to control the deposition process 1.0 may occur 1.0 enables processing without thermal degradation 1.0 may degrade or lose properties at high temperatures 1.0 rupture leads to 1.0 is associated with 1.0 has 1.0 initiates 1.0 follows 1.0 follows 1.0 occurs via 1.0 facilitate the formation of 1.0 occurs via 1.0 indicates 1.0 is substituted for 1.0 is a more specific term for 1.0 reveals reversal via an intermediate state at feature borders 1.0 has 1.0 Influences 1.0 Guides 1.0 Further investigated using cryoTEM, cryoET, and super-resolution radial fluctuations ('SRRF') microscopy on decalcified base plates 1.0 applied to 1.0 Utilize these mechanisms to reduce light reflection and increase transparency 1.0 Due to reflections on periodic or pseudo-periodic tissue formation responsible for iridescence, similar to grating effects 1.0 Example of filtering by extremely small (subwavelength) boundaries 1.0 Serves 1.0 Are not necessary 1.0 Favors redirection of short-wavelength radiation 1.0 is crucial for inducing 1.0 BC fiber diameter uniformly thickens at high solvent composition ratios due to precipitation of EVOH over fibers,BC fiber diameter increases at intermediate solvent composition ratios 2.0 depend on 1.0 increases with decreasing diameter due to higher aspect ratio 1.0 is related through a constant, k 1.0 results in smaller 1.0 can be controlled through 1.0 was visualized at low temperatures (-8 mm defocus) 1.0 accurately describes 1.0 controlFactors 1.0 provide information about 1.0 Studied 1.0 can change during nucleation stage 1.0 Has highest level of organization 1.0 Has simpler structure compared to conch shell 1.0 Has complex microstructure forming 2-D laminates 1.0 Arrangement or composition of parts or components. 1.0 In the crossed lamellar structure 1.0 Exhibit tensile mode fracture 1.0 Depends on 1.0 conducted on 1.0 controls 1.0 dominates 1.0 Results in 1.0 Results in,Results in greater damage and tortuosity 2.0 Allows for easier crack propagation through 1.0 Results in 1.0 is made of polymer fibers 1.0 high stresses are observed at corners adjacent to 1.0 regulate appropriately 1.0 exposed g3p's for binding host bacteria 1.0 provide 1.0 provide 1.0 are oriented along 1.0 surround 1.0 are bundled to form 1.0 are_embedded_in relation 1.0 are_located_within relation 1.0 describes 1.0 describes 1.0 commonly used to describe 1.0 describes relationship between 1.0 relates probability of failure to 1.0 measures reliability of 1.0 applied to calculate failure stress probability of survival for 1.0 applied to calculate failure stress probability of survival for 1.0 is 1.0 influences 1.0 exhibits 1.0 determines 1.0 The scale parameter is a property of Weibull Fibers (type-(i)) 1.0 has 1.0 allows for 1.0 exploration of internal hierarchical structure and load-bearing mechanisms 1.0 observed during process 1.0 repeated until specimen fractured 1.0 observation during load-bearing and energy-absorbing processes 1.0 insights into excellent mechanical properties in S. gigas shell 1.0 allows for 1.0 allows for 1.0 CT images were collected 1.0 loading along 1.0 More specific description 1.0 need to be addressed 1.0 Are subject to these challenges 1.0 presents 1.0 Include 1.0 Are 1.0 need to focus on optimizing the design and application 1.0 essential ligand for 1.0 extracts proton from its acidic nitrogen 1.0 mediates the rate-limiting step of catalysis 1.0 rapidly transfers protons through an intermediate state 1.0 plays a crucial role in 1.0 essential ligand for 1.0 essential ligand for 1.0 determines 1.0 triggers 1.0 enables 1.0 disrupts 1.0 acts as a ligand for coordinate bonding with 1.0 enables 1.0 undergoes 1.0 typically exhibit 1.0 determines 1.0 influences 1.0 forms s complexes at high pH 1.0 applications 1.0 Exhibit 1.0 Exhibit 1.0 include 1.0 can be well-dispersed 1.0 can control in-vitro mineralization 1.0 provides 1.0 enables 1.0 provides 1.0 ensured by 1.0 act on different scales 1.0 ensures 1.0 generates 1.0 Applies to 1.0 Used to calculate effective flexural properties at each hierarchical order 1.0 is associated with 1.0 And 1.0 leads to changes at multiple length-scales,leads to decreased mechanical integrity 2.0 at the microstructural length-scale 1.0 at the fibrillar length-scale 1.0 results in an increase in 1.0 during crack extension 1.0 by crack deflection and bridging 1.0 in aged bone 1.0 surround microhairy structures 1.0 relationship under compression 1.0 relation 1.0 occur 1.0 development within 1.0 significantly contributes to 1.0 generates by mineral/protein interfacial sliding 1.0 is related to 1.0 generates by mineral/protein interfacial sliding 1.0 enhances 1.0 ahead of 1.0 constrained between aragonite platelets 1.0 impact on 1.0 Partial Alignment Parallel to Fiber Long Axis 1.0 is used for 1.0 is addressed by 1.0 is addressed by 1.0 are dispersed in 1.0 is addressed by 1.0 are created from 1.0 are composed of 1.0 are composed of 1.0 are composed of 1.0 are composed of 1.0 are a promising material for 1.0 exhibit 1.0 exhibit 1.0 exhibit 1.0 Presence 1.0 Potential Application in Photonics and Fiber Optics 1.0 Measurement of Alignment 1.0 Formation within 1.0 Are a type of chiral structure that exhibit photonic properties due to their periodic arrangement of chiral molecules or nanostructures. 1.0 formed by 1.0 can be adjusted for 1.0 can increase contact area for nonparallel initial orientations 1.0 induces 1.0 contains 1.0 contains 1.0 contains 1.0 denatures 1.0 are found in 1.0 are found in 1.0 demonstrates structural adaptation for its specific function 1.0 may be lower than that of mammalian enamel 1.0 is a more specific term for 1.0 calculated at mesoscale level 1.0 decrease in intensity 1.0 high concentration 1.0 represents the variation in mineral content within a scaffold due to EDTA exposure 1.0 decreases at transition to arthrodial membrane 1.0 varies polymerically 1.0 is related to 1.0 is 1.0 is 1.0 is 1.0 Promotes 1.0 represents 1.0 represents 1.0 includes 1.0 includes 1.0 includes 1.0 includes 1.0 reproduces 1.0 describes 1.0 successfully calibrated using 1.0 is calculated using 1.0 cannot be solely attributed to 1.0 is used for 1.0 consists of 1.0 is part of 1.0 exhibits 1.0 designed to bear loads and protect the underlying bone from cracking 1.0 is composed of 1.0 has interior layer 1.0 consists of 1.0 is covered with 1.0 has exterior layers 1.0 has lower values in perpendicular direction compared to parallel direction 1.0 average values under bending are 624 MPa and 293 MPa in parallel and perpendicular directions, respectively 1.0 are needed due to limited statistical power 1.0 load transfer occurs when loaded in parallel direction 1.0 Approaches the yield strength of the material 1.0 at the bridge level 1.0 relationship between 1.0 exhibited under different mechanical forces 1.0 exhibited under different mechanical forces 1.0 increase,and 2.0 Effect on 1.0 Effect on 1.0 used information obtained from 1.0 retain when isolated from biological tissue 1.0 are promising building blocks for constructing 1.0 with CAs as building blocks improve properties at the mesoscale for 1.0 explored structure-mechanics relationships 1.0 amorphous calcium carbonate is a type of inorganic material 1.0 additive type 1.0 Offer resistance to crack propagation and exhibit varying fracture properties including stiffness, maximum force, energy absorption, and fracture toughness. 1.0 In samples with rapid crack propagation. 1.0 co-assembles 1.0 increases at higher content 1.0 was determined for 1.0 was performed using 1.0 contains 1.0 is derived from 1.0 was characterized by 1.0 was determined for 1.0 was analyzed using 1.0 changes from multi-layered and oriented to isotropic and interconnected at higher PA-H3 content 1.0 formed by dense micro-fibrous networks 1.0 show predominantly elastic behavior 1.0 show absorption flattening and differential scattering phenomena 1.0 higher in domains with larger b-pleated aggregates 1.0 reveals information about 1.0 Including tissue engineering and material science. 1.0 Determined by thermogravimetric analysis (TGA) in a nitrogen environment.,Determined by TGA.,Determined by TGA in a nitrogen environment. 3.0 is associated with 1.0 is associated with 1.0 is associated with 1.0 is associated with 1.0 weakens as,becomes negligible beyond 2.0 reaches for approximately 1.0 reaches at 1.0 is more significant for 1.0 affects 1.0 understood through 1.0 investigated through 1.0 located in 1.0 Promotes alignment of 1.0 shows 1.0 located in 1.0 allows for programming of arbitrary stiffness distributions within 1.0 Synthetic composite consists of alumina layers 1.0 Synthetic composite consists of polymer interlayers 1.0 Spicules exhibit gradually decreasing thickness 1.0 may have curvature in main rays 1.0 may have dependencies on underlying constituent spicule structure 1.0 divides into terminal structures 1.0 may have horizontal struts 1.0 may have local thickenings 1.0 may form a network of non-planar cross-shaped spicules 1.0 may have sources of ordering 1.0 may have decorative protrusions 1.0 may have quadratic lattice symmetry 1.0 lacks ray development 1.0 may have vertical and horizontal supports 1.0 Can be 1.0 Can be 1.0 Synthetic composite features bioinspired toughening mechanisms 1.0 Synthetic composite has high ceramic content 1.0 Synthetic composite optimizes interlayer adhesion 1.0 Synthetic composite has a planar layered structure 1.0 used for crack repair 1.0 used as containers for 1.0 evaluated as potential 1.0 are 1.0 is 1.0 is 1.0 form 1.0 can react upon contact 1.0 contain diacetylene monomers or hydrogels 1.0 diverged from 1.0 are 1.0 contributes to,is involved in 2.0 detect 1.0 involves 1.0 involves 1.0 is a part of 1.0 is a part of 1.0 is a part of 1.0 is a part of 1.0 are a part of 1.0 Are capable of 1.0 includes 1.0 are a part of 1.0 diverged around 1.0 have 1.0 contain 1.0 reveals some degree of preferred orientation 1.0 adjacent to 1.0 adjacent to 1.0 contains 1.0 enables 1.0 provides 1.0 can be achieved for a batch of 12 scaffolds 1.0 have limitations in 1.0 Offer 1.0 due to incomplete desorption during printing process 1.0 leads to higher with higher residue levels 1.0 Produced By 1.0 Produced By 1.0 Produced By 1.0 Includes 1.0 Produced By 1.0 Can improve throughout the material 1.0 is 1.0 covered with 1.0 promote 1.0 have inferior mechanical properties compared to 1.0 or chemical reactions 1.0 are attributed to 1.0 is coupled with 1.0 provide reinforcement 1.0 incorporate 1.0 reflected 1.0 transmitted 1.0 determined by 1.0 Same term used consistently 1.0 defined by 1.0 determines 1.0 consists of 1.0 enhances 1.0 dissipates released energy through 1.0 acts as 1.0 enables 1.0 have 1.0 provides 1.0 Weaken resistance to 1.0 Present in 1.0 located at 1.0 leads to refinement of 1.0 exhibit 1.0 Affects 1.0 Creates 1.0 Creates 1.0 Introduces additional defects and dislocations 1.0 offers advantages over 1.0 calculated only below 1.0 lacks a sound theoretical foundation 1.0 affecting 1.0 provides 1.0 provides 1.0 provides several 1.0 addresses 1.0 provides 1.0 provides simultaneously 1.0 provides due to its ability to measure viscoelastic responses over a broader range of deformations than other methods 1.0 imposes sudden and large displacements 1.0 affecting 1.0 enables 1.0 may result in slip at imposed shear-rates 1.0 imposes sudden and large displacements 1.0 affecting 1.0 affecting 1.0 subject to large errors after yielding 1.0 Increases 1.0 Viscosity can also affect p morphologies during freeze-casting. 1.0 is correlated with 1.0 consists of 1.0 has 1.0 is represented by 1.0 enables 1.0 infiltrated with 1.0 spun directly from 1.0 preserves 1.0 simultaneously reinforces and chemically functionalizes 1.0 connects 1.0 increases with,continues to increase due to 2.0 has 1.0 Incorporated for enhancing mechanical properties, crack deflection, and energy dissipation due to high aspect ratio of Hydroxyapatite matrix 1.0 uses 1.0 properties investigated 1.0 can be mitigated through 1.0 can be controlled by 1.0 can be controlled by 1.0 can be controlled by 1.0 leads to 1.0 grow perpendicularly to 1.0 also consists of 1.0 May require 1.0 deposited onto through dip coating 1.0 conformally covers 1.0 result 1.0 have 1.0 Allowed through creating 3D materials with more intricate interface structures 1.0 both have self-assembly characteristics,both have functional groups that can be easily modified through genetic engineering techniques 2.0 affect functional surfaces 1.0 capable of 1.0 concentration optimized for avoiding overcross-linking and self-cross-linking 1.0 lighter spots represent protruding g3p's 1.0 protruding protein for infection 1.0 infection and propagation cycle initiated by g3p's 1.0 preserved biological activity in 1.0 coats entire length except tips,expands applications and impact as multifunctional material 2.0 Provides 1.0 Provides 1.0 Provides 1.0 Provides 1.0 Provides 1.0 Provides 1.0 results in 1.0 used for 1.0 used for 1.0 used for 1.0 used for 1.0 used for 1.0 critically impacts 1.0 Influences 1.0 Influences 1.0 Influences 1.0 Influences 1.0 Influences 1.0 Influences 1.0 Influences 1.0 delivered by,without 2.0 in vitro 1.0 enhanced without 1.0 through 1.0 important for 1.0 is necessary for scaffold design and development 1.0 is necessary for scaffold design and development 1.0 Has potential to revolutionize 1.0 can have potential applications 1.0 applicable to 1.0 has gained attention 1.0 has gained attention 1.0 has gained attention 1.0 aims to create biological substitutes that closely resemble 1.0 Applications In 1.0 potential applications in 1.0 Offer 1.0 applications 1.0 Has potential to revolutionize 1.0 applicable for 1.0 have 1.0 are applied in 1.0 has gained attention due to 1.0 caused by thermal stresses 1.0 Bioleaching 1.0 Bioleaching 1.0 include 1.0 emerged as a promising strategy for constructing complex architectures with high precision 1.0 helps to design more efficient printing schemes 1.0 involves using biological templates as molds, masks or post-treatment media 1.0 functions in the preparation process 1.0 incorporated 1D CNTs into 2D graphene-dominated inks 1.0 forms strong hydrogen bonds with graphene sheets 1.0 developed a novel viscoelastic hybrid ink containing ultrafine dispersive precursor for Ni0.31/3Co0.652/graphene 1.0 involves 1.0 allow for high accuracy and structural parameter optimization 1.0 investigated 1.0 reported 1.0 And x-ray tomography 1.0 At the bone-metal interface 1.0 A more comprehensive understanding 1.0 Such as moisture content 1.0 Novel information 1.0 more practical than individual techniques 1.0 And x-ray data 1.0 Corresponding to different material phases 1.0 resulting from 1.0 provides additional functionalities from 1.0 is 1.0 affects 1.0 affects 1.0 supports growth and adhesion of 1.0 during 1.0 were observed 1.0 due to lack of topographical cues for cell guidance and differentiation 1.0 promotes formation of 1.0 promotes formation of 1.0 have a more sophisticated three-dimensional structure than 1.0 further strengthens 1.0 can self-assemble into 1.0 Self-assembled inspired by nacre multiscale structure 1.0 can be modulated independently 1.0 can be achieved through STEPS 1.0 link stiff nanostructures and stiff substrates for 'flexible anchoring' configurations 1.0 can be formed through STEPS 1.0 can be achieved through STEPS 1.0 can be achieved through STEPS 1.0 can be readily achievable through STEPS 1.0 have 1.0 can be achieved through STEPS 1.0 can be achieved through STEPS 1.0 have for structural support 1.0 provide for 'flexible anchoring' configurations 1.0 can be achieved through STEPS 1.0 can be extended through plasma treatment or functionalization techniques 1.0 can be achieved through STEPS 1.0 can be achieved through STEPS 1.0 have along their height 1.0 can be achieved through STEPS 1.0 denotes fibers with a diameter less than 100 nanometers that provide mechanical strength through fiber reinforcement 1.0 can be incorporated into 1.0 Improves conductivity for better image contrast prior to SEM imaging 1.0 Analyzed using ImageJ software for diameter measurement 1.0 Constituent component 1.0 Analyzed using ImageJ software for diameter measurement 1.0 consists of 1.0 displays 1.0 possesses 1.0 forms a cross-linked material with 1.0 exhibits 1.0 achieves further improvements in mechanical properties 1.0 must be understood 1.0 is 1.0 is 1.0 is 1.0 is 1.0 Is associated with 1.0 Elucidates 1.0 Part of 1.0 contain 1.0 is crucial for 1.0 Transcends the concept 1.0 occurred 1.0 indicated 1.0 had 1.0 Consistent activities and cell mineralization results after 21 days of cell culture 1.0 Highest value around implant after 8 weeks of implantation compared to other modified groups 1.0 Higher values at all time points compared to group AM after 8 weeks of implantation 1.0 Obvious intracellular expression with directional distribution after 21 days of cell culture 1.0 Higher values at all time points compared to group AM after 8 weeks of implantation 1.0 promote bone regeneration in 1.0 are coated onto 1.0 reduce 1.0 promote bone regeneration in 1.0 promote cell adhesion and proliferation on 1.0 promote 1.0 promote implant integration and reduce inflammation compared to uncoated implants 1.0 is engulfed in 1.0 allows for deformation under 1.0 emanate laterally from 1.0 protects against 1.0 is 1.0 is composed of 1.0 protects against 1.0 is 1.0 are attached at 1.0 Consists of 1.0 similar to 1.0 contribute to 1.0 Were used by Park et al. To crosslink through ionic bonding in 2008 1.0 investigated the role of 1.0 is used for 1.0 is used for 1.0 Dissolution mechanism involves deprotonation and coordinative binding of OH groups, particularly in Cys and Ser residues,SF dissolves more readily than Cel due to easier deprotonation of carboxyl groups and less uniform structure/organization compared to Cel 2.0 Is a component of,Composes 2.0 Efficient solvent for SF when concentration is near saturation due to efficient hydration of ions preventing desolvated ion interactions 1.0 Dissolution occurs first due to easier solvent penetration 1.0 Induces conformational changes that favor unwrapping and penetration of hydrated ions inside the protein 1.0 probes 1.0 separates 1.0 correspond to 1.0 represent 1.0 contributes to 1.0 has 1.0 is responsible for 1.0 specific impact on 1.0 provides insight into 1.0 provides 1.0 leads to 1.0 leads to 1.0 leads to 1.0 enormously increased 1.0 Led to an improvement in amplitude for all examined geometries 1.0 takes into account 1.0 separates 1.0 separates 1.0 The singleTurnAHMolecule may be loaded into its environment or a specific material through a loading process. 1.0 Loading must be interrupted due to long imaging acquisitions. 1.0 Loading occurs during tissue creep. 1.0 can be achieved through STEPS 1.0 Histological Analysis is performed on Specimens to analyze their microstructure. 1.0 Micro-CT Tests are performed on Specimens to analyze their internal structure. 1.0 Damage Resistance refers to a material's ability to resist damage, while damage tolerance refers to a material's ability to tolerate existing damage without catastrophic failure. 1.0 are attributed to 1.0 form 1.0 consist of 1.0 houses 1.0 is susceptible to hydration sensitivity for 1.0 include 1.0 include 1.0 include 1.0 tested_under 1.0 tested_in 1.0 tested_under 1.0 tested_in 1.0 tested_in 1.0 cyclic_mechanical_tests_performed_at 1.0 not_treated_with 1.0 pre_soaked_for 1.0 embedded_in_before_examination_on_a_Leica_Ultracut_UCT_ultramicrotome_using_a_diamond_blade 1.0 observed 1.0 post_stained_with 1.0 stained_with 1.0 only 1.0 tested_at 1.0 experience high impact loading during 1.0 are composed of 1.0 provide 1.0 are rich in 1.0 have 1.0 have 1.0 Are dominated by partially charged Arg and Glu/Asp residues 1.0 Is approximately 0.45 pN/A 1.0 Range from approximately 100 to lower hundreds of pN at physiologically relevant deformation speeds 1.0 Is approximately 5.5 pN/A through full atomistic molecular dynamics simulations 1.0 Exceed several nanonewtons for individual hydrogen bonds at high pulling speeds leads to unfolding forces. 1.0 which will be evaluated in future studies 1.0 with potential biological activity 1.0 a commercially available 1.0 underwent 1.0 involves 1.0 involves 1.0 involves 1.0 Contributes to 1.0 Results in 1.0 Results in 1.0 Results in 1.0 Contributes to 1.0 Results in,Results in,Results in 3.0 Results in 1.0 has 1.0 have 1.0 have 1.0 composed of 1.0 associated with 1.0 used to observe 1.0 hydrogen bonding capabilities 1.0 fabricated from 1.0 includes 1.0 has 1.0 Provides method for obtaining 1.0 strength and energy dissipation can be compared side by side,strength and energy dissipation are higher than those of,for a given specimen size 3.0 span 1.0 are segmented by 1.0 allows for 1.0 taken in referential form 1.0 provide 1.0 include number of chains, number of Kuhn segments, bond and bulk moduli, fracture energy, characteristic length scale, and kinetic modulus for damage evolution 1.0 involves history field function 1.0 accounts for irreversible nature of scission through replacement of term in microforce balance 1.0 Exhibits 1.0 Represents for single wall CNTs with a diameter of approximately 1.35 nm 1.0 creates 1.0 requires 1.0 increases during unloading 1.0 contribute to observed inelastic behavior 1.0 Reveal 1.0 more important factor than age at individual lamellae level 1.0 during ACL reconstruction 1.0 shows 1.0 influence 1.0 Exhibit values significantly lower than biological tissue strength at external surfaces 1.0 Acts as barrier to ultrasonic vibrations 1.0 With increasing wave transmission 1.0 influence 1.0 of interlayer adhesive 1.0 due to premature damage initiation 1.0 due to premature damage initiation 1.0 limited solubility 1.0 improves 1.0 physically adsorbed,chemically bonded 2.0 reveal high initial strain rate but eventually reach a steady-state deformation 1.0 characterization through 1.0 exhibits significant behavior with decrease in stress of approximately 50% after 10 minutes of relaxation at 30% water content 1.0 can be mitigated through 1.0 in 1.0 within 1.0 different mechanical properties 1.0 formed 1.0 but 1.0 reported 1.0 used for charging avoidance during scanning electron microscopy 1.0 used for mounting 1.0 used for charging avoidance during scanning electron microscopy 1.0 used for FTIR spectroscopy 1.0 used for characterization 1.0 used for FTIR spectroscopy 1.0 used for visualization 1.0 used for visualization 1.0 used for mounting 1.0 used for mechanical testing 1.0 and 1.0 may account for 1.0 provide functional adaptations to varying tooth morphologies and loading conditions,can provide functional adaptations to varying tooth morphologies and loading conditions 2.0 can be adjusted through electrostatic interaction with nanochitin 1.0 Alters 1.0 under moisture stimuli 1.0 is significantly higher than 1.0 is approximately twice less than 1.0 may be determined by 1.0 obtained 1.0 requires smaller aspect ratio as mineral plate thickness increases 1.0 ranging from 42% to 68% 1.0 provides 1.0 The singleTurnAHMolecule may encounter an energy barrier (Eb) when transitioning from its native state to a transition state. 1.0 The energy required to separate a singleTurnAHMolecule from its environment or a specific material can be measured and recorded. 1.0 The number of hydrogen bonds present in a singleTurnAHMolecule or its environment may affect it. 1.0 The nativeState is the natural or preferred state of the singleTurnAHMolecule. 1.0 The singleTurnAHMolecule may pass through a transitionState during a chemical or physical process. 1.0 The distance between a specific point on a singleTurnAHMolecule and a nearby object or environment can be measured and recorded. 1.0 The distance between two specific points on a singleTurnAHMolecule or its environment can be measured and recorded. 1.0 The energy required to separate a singleTurnAHMolecule from its environment or a specific material at a specific distance can be measured and recorded. 1.0 The interaction potential between a singleTurnAHMolecule and its environment or a specific material can be calculated or measured. 1.0 Involves adding 1.0 Is a specific example of 1.0 Involves 1.0 May include 1.0 Are a specific type of 1.0 Can be used for 1.0 Have potential applications in 1.0 Are being developed for 1.0 Can be used for 1.0 Is a measure of 1.0 Is a specific case of 1.0 Can also be used as 1.0 Are desired for 1.0 Are commonly used as 1.0 Are another type of 1.0 Can exhibit 1.0 Can be created using 1.0 Are often associated with 1.0 Is a technique for 1.0 Can also refer to 1.0 Can facilitate 1.0 Can result in 1.0 Can affect 1.0 Is influenced by 1.0 Refers to 1.0 is a type of 1.0 encapsulates 1.0 decreases 1.0 exhibits dose-dependent anti-tumour activity 1.0 is represented by 1.0 consist of 1.0 Primarily extends down along the fiber in tangent direction 1.0 are susceptible to 1.0 ranges from 1.0 is a scalar variable representing damage 1.0 ranges from 1.0 refers to 1.0 leads to 1.0 includes term for 1.0 influences 1.0 The absorbance is a property of the light absorber. 1.0 The Al resonators are a component of the light absorber. 1.0 The continuous Al layer is a component of the light absorber. 1.0 The glass substrates are a support structure for the light absorber. 1.0 The SiO2 dielectric spacers are a component of the light absorber. 1.0 The square-shape designs are a geometric configuration of the light absorber. 1.0 The strip-shape designs are a geometric configuration of the light absorber. 1.0 The y-axis is a coordinate system used to measure the position of the light absorber during simulations. 1.0 added during 1.0 inversely proportional to 1.0 added to 1.0 has alignment 1.0 was achieved by adjusting 1.0 Results interpretation requires consideration of strain definition. 1.0 Iron oxide is a major component of chiton teeth. 1.0 serves as an ideal material for 1.0 initially increases but then decreases as forming pressure increases 1.0 Energy absorption encompasses energy absorption in the elastic regime. 1.0 Energy absorption encompasses energy absorption in the plastic regime. 1.0 have a remarkable ability to minimize transmission of 1.0 commonly used for 1.0 is 1.0 The ability of functionalized graphene to promote cell differentiation. 1.0 is regulated by 1.0 contributes to 1.0 promotes 1.0 dramatically affects 1.0 Material Property Calculation is performed using a Quantum Mechanical Method. 1.0 Software Packages are used to perform Material Property Calculations. 1.0 Core Electrons are replaced by a simpler potential within a Pseudopotential. 1.0 Valence Electrons interact with the pseudopotential generated by a Pseudopotential. 1.0 Pseudopotentials are used to replace the core electrons of an atom with a simpler potential within a Quantum Mechanical Method. 1.0 Plane-Wave Basis Sets are used as a basis for representing wave functions within a Quantum Mechanical Method. 1.0 The feasibility of a Material Property Calculation can be affected by the choice of Software Package. 1.0 The choice of Software Package is influenced by the Scientific Community. 1.0 evaluates 1.0 focus 1.0 analogue for 1.0 analogue for 1.0 occur between organic matrix and mineral plates 1.0 is 1.0 is typically 1.0 is made of 1.0 Are subject to biomedical engineering research 1.0 Can be used for biomedical implants applications 1.0 Can be used for biomedical implants applications 1.0 Can be cold worked using cold working 1.0 Can be cold worked using these techniques 1.0 Can be simulated using these techniques 1.0 Can be used for energy harvesting applications 1.0 Can be used for energy harvesting applications 1.0 Can be heat treated using these techniques 1.0 Can be joined using these techniques 1.0 Are subject to materials science research 1.0 Are subject to mechanical engineering research 1.0 Can be used for nanotechnology applications 1.0 Can be processed using these techniques 1.0 Are subject to these challenges 1.0 Can be deposited using these techniques 1.0 are used in 1.0 are used in 1.0 and,and 2.0 presents challenges for 1.0 is 1.0 have 1.0 is 1.0 can be performed using 1.0 are used in 1.0 is 1.0 include 1.0 presents challenges for 1.0 is 1.0 depend on 1.0 presents challenges for 1.0 Can be heat treated using heat treatment 1.0 Can be joined using solid-state diffusion bonding 1.0 Are subject to mechanical engineering research 1.0 Can be used for nanotechnology applications 1.0 Can be consolidated using powder consolidation 1.0 Can be deposited using chemical vapor deposition (CVD) 1.0 are ideal for 1.0 applies to 1.0 serves 1.0 serves 1.0 serves 1.0 realizes functionalities in 1.0 is an example of 1.0 is 1.0 can be used to develop new approaches for creating ordered structures at the nanoscale by applying the principles learned from biological systems 1.0 applications of,advancements in,research in,development of,applications of,applications of,applications of 7.0 raises 1.0 has potential impact on 1.0 raises 1.0 hold promise for transformative impacts on 1.0 Is a specific technology used for 1.0 significantly larger 1.0 undergoes 1.0 undergoes 1.0 are synthesized at 1.0 are oriented by 1.0 Depends on 1.0 are characteristic of 1.0 are found in 1.0 can be characterized by 1.0 achieved when 1.0 achieved when 1.0 separate different frequency components into distinct physical locations along the sensor 1.0 are inspired for 1.0 or Helmholtz resonators arranged at sub-wavelength intervals along a spiral tube 1.0 is applicable to 1.0 plays a role in 1.0 and tonotopic properties 1.0 and amplification of low-frequency sounds 1.0 have been used to optimize 1.0 leads to 1.0 forms when 1.0 depending on 1.0 develops when 1.0 or develops when 1.0 induces 1.0 on 1.0 needed to expand applications 1.0 Refers to 1.0 incorporated for 1.0 design inspired by 1.0 incorporated for 1.0 design 1.0 characteristic 1.0 result in 1.0 arranged in 1.0 arranged in 1.0 selectively reflect 1.0 can self-assemble into 1.0 combine with 1.0 have approximately 1.0 have 1.0 can be engineered into 1.0 forms 1.0 have a strong influence on elastic properties in the normal direction 1.0 differ in elastic properties 1.0 serve as templates for 1.0 can be further modified after formation 1.0 changes during formation 1.0 are found to be 1.0 enables 1.0 is a type of 1.0 can aid in the development of 1.0 is an inherent advantage 1.0 is challenging to replicate 1.0 draw inspiration from 1.0 Draws inspiration from 1.0 contains 1.0 developed for 1.0 encapsulated in 1.0 with 1.0 that match those of 1.0 show over seven days 1.0 stronglyAffect 1.0 are affected by,are affected by,are affected by,are affected by 4.0 Specific mechanical property being measured 1.0 Technique for measuring mechanical properties investigates 1.0 has mechanical properties 1.0 enhanced osteogenic gene and protein expression in cultured on anodized titanium substrates compared to untreated ones 1.0 used with 1.0 have 1.0 provide 1.0 have 1.0 have 1.0 have 1.0 are composed of 1.0 have 1.0 have 1.0 have 1.0 constituent material 1.0 impacts 1.0 are aligned at an angle of approximately 1.0 are oriented along 1.0 experience considerable 1.0 used for 1.0 have 1.0 undergo 1.0 experience considerable 1.0 to the animal's head 1.0 allow for 1.0 in dry and hydrated states 1.0 used for 1.0 Refers to 1.0 Decreases significantly for all orientations 1.0 Has highest strength and stiffness after hydration due to its lowest water absorption 1.0 achieved through 1.0 based on 1.0 Synonym or alternative label 1.0 oriented along the layered structure 1.0 described_as_a_function 1.0 described_as_a_function 1.0 described_as_a_function 1.0 Are replicas of. 1.0 Same term used consistently 1.0 More specific description 1.0 play a crucial role in achieving structural and functional integrity due to the presence of. 1.0 are due to their evolved crossed-lamellar structure over millions of years in nature. 1.0 results from 1.0 Resist against 1.0 Resist against 1.0 have 1.0 More specific description 1.0 Same term used consistently 1.0 is observed between 1.0 Is a property measured by 1.0 used as an alternative due to 1.0 is a type of 1.0 exhibited different swelling responses compared to latewood 1.0 measured cell dimensions and calculated water vapor permeability across growth ring 1.0 had lower elastic moduli compared to latewood 1.0 investigated elastic properties in relation to moisture content 1.0 developed for predicting mechanical properties of wood based on cell arrangement and properties 1.0 developed computational up-scaling approach for predicting anisotropic swelling and mechanical behavior 1.0 investigated cell wall thickness and tangential Young's modulus 1.0 Describes Phase Interactions 1.0 Represents Stiffness Properties 1.0 consists of 1.0 has 1.0 is 1.0 offer 1.0 Favorable effect on 1.0 Promotes 1.0 can be controlled through 1.0 promotes 1.0 plays a role in 1.0 is 1.0 is 1.0 is 1.0 higher 1.0 Result 1.0 affects tissue regeneration 1.0 is 1.0 is 1.0 is 1.0 result from 1.0 can be applied without structural degradation due to 1.0 involves depositing materials conformally onto 1.0 expands the toolbox of available processes for 1.0 enables integration into high-throughput manufacturing processes for 1.0 can be uniformly coated on patterned structures using ALD 1.0 allows tuning of 1.0 results from process utilizing positive and negative photoresists on silicon substrate 1.0 are evaporated before photolithography 1.0 are evaporated before photolithography 1.0 can be uniformly coated on patterned structures using ALD for layers of 1.0 exhibits 1.0 greater than 1.0 the bony region 1.0 from penetrating into the underlying bone 1.0 upon hydration 1.0 higher compared to 1.0 with regular overlaps,with staggered microstructures 2.0 linking their nanoscopic properties to macroscale performance 1.0 affecting their mechanical properties 1.0 affecting their mechanical properties 1.0 affecting their apparent failure properties 1.0 affecting their mechanical properties 1.0 provide 1.0 result from 1.0 exhibit 1.0 result from 1.0 significant relationships 1.0 relationship 1.0 relationship 1.0 provide 1.0 regarding 1.0 exhibited 1.0 exhibited 1.0 insensitivity 1.0 differentiate mechanics from bulk materials 1.0 results in 1.0 exhibit 1.0 composition of 1.0 enlarge porosity 1.0 adaptive to 1.0 serves as an ideal material for 1.0 takes 1.0 adaptive to 1.0 used for 1.0 used for 1.0 resists 1.0 Describes a measure of a material's resistance to volumetric compression 1.0 Has a lower yield strength compared to cortical bone due to its porous microstructure. 1.0 Synonym or alternative label 1.0 is a part of 1.0 is 1.0 is a part of 1.0 are fitted to 1.0 comparison with 1.0 confirms prediction 1.0 Investigates 1.0 Provide 1 provide 1.0 enhances 1.0 exhibited 1.0 has 1 flexibility 1.0 flexibility 1.0 varied to explore parameter space 1.0 provides 1.0 The ability of nanoparticles to convert mechanical energy into other forms is a desirable characteristic for many applications. 1.0 Protonation of carboxylate groups on polymer ligands drives their adsorption onto nanoparticle surfaces. 1.0 Rapid transport of nanoparticles through structured liquids is a desirable characteristic for many applications. 1.0 can be used in 1.0 is due to 1.0 enables 1.0 can enter core 1.0 mimics 1.0 enables 1.0 reduce 1.0 render 1.0 require for,prevent agglomeration 2.0 can encapsulate and release 1.0 Enhances through protective group chemistry 1.0 Reversible solubility-precipitation transition at approximately 29°C attributed to reversible changes in interactions between introduced functional groups and given aromatic solvent 1.0 enhance 1.0 has 1.0 is improved through chemical oxidation 1.0 applied to 1.0 hasProperty 1.0 isComposedOf 1.0 Nominal stress for Hierarchical Composite Fibrous Materials (HC-FMs) can be predicted based on a bundle of fibers 1.0 are composed of 1.0 hasProperty 1.0 hasProperty 1.0 isComposedOf 1.0 isComposedOf 1.0 isComposedOf 1.0 isComposedOf 1.0 hasProperty 1.0 dominant mechanism for 1.0 comparison with 1.0 derived solely from 1.0 similar mechanical behavior 1.0 similar mechanical behavior 1.0 involves 1.0 required for ilibrium 1.0 have 1.0 undergo 1.0 is ensured through 1.0 measure 1.0 effect of 1.0 have 1.0 is applied to enhance 1.0 determination achieved through 1.0 during testing 1.0 is used for DIC analysis 1.0 approach 1.0 has area 1.0 during 1.0 Limited use due to poor mechanical properties and susceptibility to bacterial adhesion. 1.0 Are ideal for a variety of biomedical applications due to their unique physicochemical properties,Can be used as scaffolds for tissue engineering due to their high mechanical strength and stimulus-responsive behavior,Can be used as drug delivery vehicles due to their high mechanical strength, stimulus-responsive behavior, and electrical conductivity 3.0 Can exhibit electrical conductivity due to the presence of conductive nanoparticles such as carbon nanotubes or graphene oxide,Can be used as biosensors due to their electrical conductivity and stimulus-responsive behavior 2.0 Can exhibit stimulus-responsive behavior due to the presence of responsive nanoparticles such as pH-sensitive or temperature-sensitive nanoparticles 1.0 Can be made optically transparent due to the use of transparent nanoparticles such as silica or titania nanoparticles 1.0 traditional hydrogels are a type of non-conductive hydrogels 1.0 Through a simple chemical treatment. 1.0 To PDMS substrates. 1.0 Compared to native PDMS and PDMS lubricated with a non-bonded aqueous lubricant. 1.0 Displayed negligible swelling in PBS and cell culture medium (cell culture media). 1.0 Controlled by protein modification. 1.0 retained due to CHI's inherent antibacterial properties 1.0 inherent 1.0 exhibits 1.0 improve 1.0 investigated for antibacterial properties 1.0 Applies To 1.0 Provided Fundamental Theories For 1.0 integrated in nested multiscale modeling framework 1.0 represents domain geometry 1.0 effective for modeling 1.0 simulated using image data obtained from confocal laser scanning microscopy 1.0 Consists of 1.0 Involves the growth of 1.0 Involves the maturation of 1.0 Can be synthesized as 1.0 Method for synthesizing 1.0 Have 1.0 Have 1.0 Can be synthesized by varying 1.0 Can be synthesized by varying 1.0 Can be synthesized by varying 1.0 Can be synthesized using 1.0 Can be synthesized using 1.0 Uses different types of 1.0 Uses different types of 1.0 connect 1.0 are ideal for 1.0 use 1.0 can be spun into 1.0 design and fabrication 1.0 easily integrated into 1.0 allows for 1.0 involves creating 1.0 suitable for creating complex shapes with intricate optical surfaces 1.0 with 1.0 transfers pattern onto substrate coated with self-assembled monolayer (SAM) 1.0 use in 1.0 Renaming for consistency and clarity 1.0 copolymers are composed of polycaprolactone and urethane dimer. 1.0 dynamic network crystallization is prevented by urethane dimer in copolymers. 1.0 elastomeric properties are observed due to crosslinking points in copolymers containing urethane dimer. 1.0 good thermal and mechanical properties are observed due to dissociation and reformation of physically crosslinked bonds during heating. 1.0 copolymers containing urethane dimer form hydrophilic polymers. 1.0 self-propagating nanocomposites represent a direct pathway for manipulating surface topography. 1.0 urethane dimer is a component of copolymers. 1.0 demonstrate significant 1.0 consist of 1.0 are part of 1.0 are part of 1.0 imparted by 1.0 urethane dimer contains hydrophilic groups. 1.0 urethane dimer acts as a physical crosslinking agent. 1.0 infiltrated 1.0 features 1.0 used for 1.0 use 1.0 enables 1.0 use 1.0 use 1.0 reveal 1.0 reveal 1.0 prepared through combining Ta2O5 nanopowder and BGO coatings 1.0 may result in uneven coating 1.0 may result in uneven coating 1.0 on 1.0 forms 1.0 involves 1.0 Separate from filament 1.0 Prevented by 1.0 reveal resistance to 1.0 results in 1.0 durability 1.0 provide potential 1.0 present 1.0 modulate 1.0 mimics 1.0 can be easily controlled during 1.0 offers easy control over 1.0 is an important property that can be controlled during 1.0 is an important property that can be controlled during 1.0 is a type of 1.0 is a type of 1.0 is the process of removing crystals from 1.0 gains insight into mechanisms that govern 1.0 can be mimicked using 1.0 affect 1.0 interacts with 1.0 Influence 1.0 has controls for 1.0 facilitates 1.0 has controls for 1.0 mimics more realistically 1.0 reveals 1.0 differs from 1.0 is attributed to 1.0 is an example of 1.0 is consistent with 1.0 is made of 1.0 involves etching with 1.0 involves soaking in for 1.0 is mineralized with 1.0 can be used as a 1.0 is a type of 1.0 can be used as a 1.0 can be used as a 1.0 fixed at each endpoint 1.0 suitable for 1.0 promotes differentiation into 1.0 applicable for 1.0 effectively enables 1.0 effectively enables 1.0 exhibits 1.0 Spring boundary conditions based on previous research (Alheti et al., 2020) and traction-free boundary conditions are used for some faces. 1.0 This boundary condition is used for some faces. 1.0 influenced by 1.0 Explicit dynamics simulation is used for this simulation. 1.0 Integrated approach could evolve into new paradigm of materials research,Complement experimental analyses,Start from smallest scales considering electrons and atoms,Reach all the way up to macroscopic scales of entire tissues,Explicitly consider characteristic structural features at each scale 5.0 involves 1.0 varies 1.0 captures 1.0 varies 1.0 contributes to 1.0 controls 1.0 adopts 1.0 includes 1.0 researches 1.0 contained in 1.0 mathematically represented as 1.0 involves 1.0 Turns wood blocks/sheets into H&As with preserved natural porous structure using a simple chemical treatment with H2O2, Na2SO3, NaOH, or acetic acid. 1.0 has 1.0 has 1.0 has 1.0 is removed by 1.0 BET was used to measure the specific surface area of KCS 1.0 FTIR was used to examine the functional groups of KCS 1.0 KCS was synthesized by treating crab shell waste with potassium hydroxide 1.0 KCS has the ability to remove p-xylene from aqueous solutions 1.0 undergoes 1.0 reaches 1.0 is related to 1.0 is affected by 1.0 Paun et al. 1.0 Can be mimicked 1.0 Can be printed 1.0 Can be printed 1.0 Can be controlled 1.0 Can be overcome 1.0 Explained 1.0 Explained 1.0 Provided Examples 1.0 exists in previous work 1.0 have 1.0 have due to unique porous structure 1.0 Offer 1.0 presented 1.0 presented crystal-structure-guided design of 1.0 form with at least two hydrogen bonds 1.0 are highly dependent on 1.0 can increase the propensity of RNA to assemble 1.0 can contribute to the assembly of 1.0 drugs 1.0 is influenced by 1.0 can self-assemble into 1.0 can self-assemble into 1.0 Parallel-aligned nanowires through bidirectional freezing 1.0 forms 1.0 resulting in 1.0 are present 1.0 coordinate to six oxygen atoms during curing with zinc acrylate in the presence of FeCl3 1.0 are present 1.0 allow for 1.0 can be tuned between 7 and 65 °C depending on the valencies of zinc acrylate and FeCl3 used 1.0 occurs at 1.0 has under high frequency conditions 1.0 is found in 1.0 synthesized through 1.0 draws inspiration from 1.0 are developed through 1.0 introduce sacrificial links that dissipate stress 1.0 results in 1.0 are introduced to generate transient pyridine-Zn2+-pyridine cross-links 1.0 are 1.0 Applies to 1.0 denotes fibers with a length greater than a critical value that provide mechanical strength through fiber reinforcement 1.0 denotes fibers with a length less than a critical value that provide mechanical strength through fiber reinforcement 1.0 Applies to 1.0 Applies to 1.0 Applies to 1.0 Applies to 1.0 Does not apply to 1.0 Applies to 1.0 Applies to 1.0 defined by factor 1.0 is a type of 1.0 is connected to 1.0 less than 1.0 describes number of cycles required for decay 1.0 is connected to 1.0 Used to divide 1.0 Collagen-based composites are a specific type of collagen-based material. 1.0 Collagen-based microspheres are a specific type of collagen-based material. 1.0 Allows for time-controlled delivery of incorporated proteins or drugs triggered by naturally occurring enzymes through degradation rate tunability 1.0 Size control based on 1.0 Allows for smaller spheres with higher stability and sterilization capabilities 1.0 Prepared using 1.0 Degradate into non-cytotoxic monomers at 1.0 Enhance within bone-filling materials 1.0 Formed through 1.0 Collagen-based biomaterials is a more general term that encompasses both constructs and composites. 1.0 Improved By Modification 1.0 Improved By Modification 1.0 generate 1.0 Important for biomimetic surface engineering applications 1.0 Minimize thermal damage effects during biomimetic surface engineering 1.0 Allow for engineering of biomimetic surfaces 1.0 Includes temporally shaped ultrafast pulses and filamentation effects produced by fs lasers 1.0 Offer unique capabilities to address biomimetic surface engineering applications 1.0 Meet demand for controllable fabrication at nanoscale 1.0 can have different effects on 1.0 relationship between 1.0 can be generated during 1.0 can have,can be generated during 2.0 Prepared through freeze-induced assembly 1.0 Coated HAP nanowires prepared through bidirectional freezing 1.0 Nanowires with amorphous intercrystalline phase 1.0 Used in 3D-printed materials for ordered microstructures 1.0 In situ mineralization in solution containing 1.0 Self-assembled inspired by nacre multiscale structure 1.0 Self-assembled inspired by nacre multiscale structure 1.0 can be categorized based on shape and orientation as 1.0 In situ mineralization in solution containing 1.0 do not promote crystal growth 1.0 stands for 1.0 results in a decrease in degree of polymerization for chitin chains 1.0 is connected to 1.0 is 1.0 is connected to 1.0 found in 1.0 found in 1.0 found in 1.0 found in 1.0 is connected to 1.0 Selectively cut 1.0 Has higher concentration compared to 1.0 contain 1.0 is connected to 1.0 is connected to 1.0 contain 1.0 affects energy-to-break distribution 1.0 is connected to 1.0 contain 1.0 Used to divide 1.0 contain 1.0 is connected to 1.0 contain 1.0 is connected to 1.0 is determined through energy balance considerations 1.0 is connected to 1.0 is connected to 1.0 is connected to 1.0 leads to 1.0 influences 1.0 contributes through changes in osmotic potential 1.0 is connected to 1.0 is connected to 1.0 in 1.0 Mimics primary and secondary xylem structures found in compact bone 1.0 Difference in Mg(2+) and Sr(2+) ion retention due to diffuse micro and nano-porosity 1.0 Presence leads to higher specific surface area 1.0 Similar overall porosity 1.0 Exhibits cell structure similar to 1.0 Mimics protoxylem tracheids 1.0 Constitute scaffold 1.0 Closely resembles 1.0 Preventing failure phenomena related to 1.0 Tensile strength greater than compressive strength 1.0 Promoting biomimetic behavior during vascularization process 1.0 Describes the connections between rigid bodies as building blocks. 1.0 Composed of rigid bodies as building blocks. 1.0 results from longitudinal cracks 1.0 affects energy absorption and failure mode 1.0 begin at the center of the bottom and propagate upward 1.0 form in weaker interfaces under low bending stress 1.0 contribute to lower pH 1.0 Observed 1.0 made of 1.0 mimicked 1.0 promotes 1.0 important for 1.0 used for developing 1.0 mimicked 1.0 promote 1.0 encompasses 1.0 do not form due to gel shrinkage 1.0 are essential for 1.0 with tailored mechanical properties for various applications 1.0 can be subjected to 1.0 is a technique that enhances mechanical properties 1.0 bridge the gap between protein monomers and final fibers 1.0 Reveals percolation of molecular deformation mechanisms and predicts accurate deformation behavior with insights into mechanical stability and ultimate strength at the molecular level 1.0 Incorporates a mechanistic understanding of deformation regimes based on 1.0 Bridges the gap between molecular-scale mechanisms and size-independent behavior 1.0 Failure strain is smaller than 1.0 Belongs to 1.0 Belongs to 1.0 Belongs to 1.0 Belongs to 1.0 has high tensile strength and elasticity 1.0 incorporate 1.0 Such As 1.0 Reach Up To 1.0 Beyond Hydrogen Bonding 1.0 Beyond Hydrogen Bonding 1.0 Occurs In Clusters Due To 1.0 Result In 1.0 Control 1.0 are formed between 1.0 are 1.0 connect 1.0 cleaved on 1.0 cleaved on 1.0 depending on 1.0 Categorization 1.0 play a crucial role in gecko attachment due to size and shape 1.0 allows for the precise control of hierarchically_ordered_structures by combining the advantages of bottom-up fabrication with the precision and reproducibility of top-down lithography methods. 1.0 are caused by charged species. 1.0 is a driving force for self-assembly in various environments. 1.0 result from the entropic effects of polymer_chains and colloidal_particles. 1.0 enable adhesion 1.0 are critical for 1.0 larger compared to gravity after trapping 1.0 influences 1.0 Exhibit 1.0 Possess 1.0 Participates in 1.0 Promotes 1.0 Promotes 1.0 Promotes 1.0 Promotes 1.0 is a potent inhibitor of 1.0 promotes followed by OPN interaction with extrafibrillar crystals modifying their growth 1.0 than baseline solid design 1.0 is regulated by 1.0 promotes 1.0 result in lower 1.0 is evaluated through 1.0 is evaluated through 1.0 is measured during 1.0 undergoes grain fragmentation and rotation during 1.0 involves 1.0 result from 1.0 are removed during 1.0 becomes elongated during 1.0 is a part of 1.0 are observed near 1.0 has 1.0 traps 1.0 have 1.0 have 1.0 inspired by 1.0 can increase effectiveness of applications 1.0 are present 1.0 is filled with 1.0 fabricates architectures layer by layer in 1.0 in 1.0 is sensitive to 1.0 Anisotropic spring networks can exhibit critical behavior when the fiber alignment approaches a critical coordination number. 1.0 Anisotropic spring networks exhibit an elastic response that is directionally dependent due to the alignment of fibers. 1.0 Anisotropic spring networks exhibit anisotropic mechanical properties due to the alignment of fibers. 1.0 Geometric frustration is a phenomenon that can arise in critical systems due to competing interactions and constraints. 1.0 Criticality refers to a state of matter that exhibits unique properties and behaviors near a phase transition. 1.0 affects 1.0 Geometric frustration can give rise to the formation of phonons, which are quantized vibrational modes in a crystal lattice. 1.0 carries 1.0 emerge in 1.0 is 1.0 successfully created 1.0 higher for pores smaller than 50nm due to optimized sintering 1.0 can generate 1.0 is synthesized through mechanical exfoliation 1.0 is 1.0 promising performance as anode 1.0 is 1.0 consist of 1.0 consist of 1.0 consist of 1.0 consist of 1.0 is 1.0 applications 1.0 used in body armours and undergoes catastrophic failure when damaged resulting in dangerous fragments being ejected at high velocities 1.0 can react upon contact 1.0 Influence 1.0 Enables 1.0 Enables 1.0 Enables 1.0 result 1.0 form 1.0 improves 1.0 used as a pore former for 1.0 forms valid channels for 1.0 are more mature in 1.0 allows 1.0 are more mature in 1.0 form earlier in 1.0 allows 1.0 positively affect 1.0 Exhibit mechanism 1.0 Mechanism exhibited 1.0 Mechanism exhibited 1.0 Subset of 1.0 calcium carbonate phase transforms into calcite 1.0 calcium carbonate phase transforms into calcite 1.0 higher dissolving rate than vaterite crystals 1.0 slightly higher solubility than aragonite crystals 1.0 reveals structural transitions 1.0 reveals structural transitions 1.0 higher solubility than lapillus 1.0 determine 1.0 significantly reduces principal strains in all characteristic anatomical zones under both compression and extension load cases 1.0 manipulation 1.0 lags behind 1.0 lags behind 1.0 lags behind 1.0 have 1.0 have 1.0 performance gap between 1.0 have 1.0 have 1.0 have 1.0 is 1.0 allows for 1.0 inspiration for improved mechanical properties 1.0 occurs at 1.0 occurs at 1.0 Provide mathematical representation of 1.0 Part of 1.0 Incorporated based on 1.0 affects 1.0 are 1.0 is optimized for 1.0 produces 1.0 are applied up to 1.0 are subjected to 1.0 used for 1.0 used to analyze 1.0 used to analyze 1.0 justify processing efforts 1.0 play a significant role in 1.0 contribute to 1.0 contribute to strength gains 1.0 strength falls short of 1.0 Describes the material that surrounds and supports the reinforcing elements in a composite material, which is typically softer than the reinforcing elements. 1.0 Describes a specific arrangement of reinforcing elements in a composite material, where they are spaced apart and aligned in a staggered pattern. 1.0 Refers to the reinforcing components of a composite material that provide stiffness and strength. 1.0 defined by 1.0 requires 1.0 affects 1.0 promote 1.0 has a value of 1.0 determines 1.0 depends on 1.0 added to centerline of print path 1.0 Reduces 1.0 component 1.0 facilitate hydration and disrupt aggregation 1.0 accelerate aggregation and crystallization 1.0 incorporate into 1.0 offer 1.0 offer 1.0 requires plateau stress value 1.0 has tight bonding due to ridges and smooth transition 1.0 has tight bonding due to ridges and smooth transition 1.0 is contributed by tight bonding between cortex and foam components 1.0 Strengthened by 1.0 dictates through surrounding permeable shell structure 1.0 isComposedOf 1.0 Introduced into 1.0 can be reinforced with 1.0 can be used at the interface of 1.0 can be reinforced with 1.0 influences 1.0 denotes the bonding strength between the matrix and reinforcing phase at the interface 1.0 Grafted through formation of amide bonds mediated by EDC and N-hydroxyactinimide 1.0 N-maleylates surface-deacetylated ChNF chemo-selectively and quantitatively in aqueous media 1.0 N-naphthaloylates surface-deacetylated ChNF chemo-selectively and quantitatively in aqueous media 1.0 Reductive amination interaction produces thiol-functionalized ChNF with maintained morphology 1.0 N-phthaloylates surface-deacetylated ChNF chemo-selectively and quantitatively in aqueous media 1.0 is a component of 1.0 Enhances due to enhanced steric repulsion endowed by modified surface 1.0 is used in combination with 1.0 is modified with 1.0 catalyzes 1.0 contributes to 1.0 associated with 1.0 contributes to 1.0 contributes to 1.0 promotes 1.0 modifies 1.0 Studied to establish bounds using principles of minimum potential energy, minimum complementary energy, and correspondence 1.0 Another type of staggered microstructure studied for establishing bounds for dynamic modulus 1.0 One type of staggered microstructure studied for establishing bounds for dynamic modulus 1.0 A third type of staggered microstructure studied for establishing bounds for dynamic modulus 1.0 Applied to staggered composites 1.0 Obtained by separating imaginary parts 1.0 have potential applications in 1.0 are expected in the nanoscale zone for applications such as 1.0 include 1.0 offers advantages over 1.0 offers advantages over 1.0 offers advantages over 1.0 offers advantages over 1.0 prevents 1.0 with ordered lamellar microstructures 1.0 enhance 1.0 are embedded by 1.0 both inside the macropores of tubes and interior of lamellar structure rods promote 1.0 facilitate 1.0 result in 1.0 can be regulated to support 1.0 is based on 1.0 and have photothermal abilities for 1.0 and tissue regeneration applications 1.0 include 1.0 include 1.0 include 1.0 include 1.0 include 1.0 include 1.0 include 1.0 include 1.0 employed to create efficient structures for energy absorption applications 1.0 include cutting machines and adaptive manufacturing (3D printing) 1.0 support the cuticle and deflect cracks 1.0 Presence or absence of solid material in cross-section 1.0 is evaluated through 1.0 is evaluated through 1.0 limits their effectiveness 1.0 guide 1.0 additive 1.0 inspire 1.0 Can Permit Accumulation of 1.0 Is Important For 1.0 Is Important For 1.0 enhancing conductivity and stability of 1.0 have 1.0 have 1.0 inspire 1.0 guides 1.0 interact through molecular complementarity 1.0 used as 1.0 can be used as 1.0 confirms 1.0 enables 1.0 is compatible with 1.0 enables 1.0 results from 1.0 Property of 1.0 Property of 1.0 Property of 1.0 Characterized by 1.0 Characterized by 1.0 Studied under various preparation conditions 1.0 Component of 1.0 Component of 1.0 reveals information about 1.0 exhibits 1.0 exhibits 1.0 shows 1.0 exhibits 1.0 confirms properties of 1.0 supports the aggregation properties of 1.0 used to 1.0 has more calcium deposition than 1.0 has less calcium deposition than 1.0 has significantly greater 1.0 shows less due to 1.0 demonstrates less than 1.0 is an important factor that affects 1.0 Investigated by immersing dried scaffolds in PBS and monitoring pH during incubation 1.0 has less than 1.0 with 1.0 showed significant 1.0 leads 1.0 fabricates 1.0 combined with 1.0 has 1.0 forms part of 1.0 surface modifications applied through chemical reactions in 1.0 is 1.0 is 1.0 provides 1.0 offers 1.0 offers 1.0 offers 1.0 provides information about 1.0 Has been demonstrated 1.0 are affected by,are affected by,are affected by,are affected by 4.0 enhances 1.0 decreases strength 1.0 is studied for 1.0 is measured during 1.0 release behavior is studied for 1.0 release behavior is studied for 1.0 provides insight into 1.0 has comparable drug delivery capabilities to 1.0 has at each time point 1.0 results in 1.0 is due to 1.0 is due to 1.0 stabilizes 1.0 Are generated around 1.0 occurs due to thermal fluctuations of bundles covered in sticker molecules 1.0 the sintering profile was optimized to minimize 1.0 used for 1.0 used for 1.0 used for 1.0 used for 1.0 used for 1.0 used for 1.0 Learning at 1.0 Learning at 1.0 Learning at 1.0 Learning at 1.0 Learning at 1.0 Learning at 1.0 Accelerates 1.0 applicationsIn 1.0 The impact of adsorption time on PX removal efficiency was evaluated 1.0 provide information about 1.0 indicates weak peaks 1.0 is not significant 1.0 develops slowly over seven days 1.0 provides information about 1.0 provides 1.0 provides information about 1.0 was used to characterize 1.0 show an increase in 1.0 do not show a significant increase in 1.0 assemble into 1.0 resulting in 1.0 is made up of 1.0 involves shedding 1.0 is followed by 1.0 Renaming for consistency and clarity 1.0 requires smaller aspect ratio as mineral plate thickness increases 1.0 varying 1.0 is observed between 1.0 is observed up to 1.0 is about 1.0 is approximately 1.0 is observed between 1.0 is part of 1.0 is part of 1.0 is part of 1.0 is related to 1.0 helps 1.0 is related to,is related to 2.0 is part of 1.0 is part of 1.0 is part of 1.0 varies linearly between 25 mW and 50 mW 1.0 maximizes 1.0 is part of 1.0 is part of 1.0 is part of 1.0 up to 1.0 investigates 1.0 has 1.0 is part of 1.0 is part of 1.0 is part of 1.0 during 1.0 defines 1.0 allows for 1.0 control 1.0 imparted by 1.0 determined through 1.0 during assembly 1.0 crucial for understanding at a fundamental level 1.0 helps understand 1.0 selectively decorated with 1.0 reveal 1.0 May enable the exploitation of superior nanoscale properties for applications 1.0 May enable the exploitation of superior nanoscale properties for applications 1.0 common issue 1.0 prevents 1.0 provides enough for imaging 1.0 minimizes 1.0 improves 1.0 has 1.0 features 1.0 observes 1.0 includes,resembles 2.0 has 1.0 are created through 1.0 observes 1.0 observes 1.0 features 1.0 features 1.0 has 1.0 has 1.0 reveals 1.0 applies to 1.0 uses 1.0 offers 1.0 offers 1.0 requires 1.0 requires 1.0 offers 1.0 involves 1.0 is an example of 1.0 is an example of 1.0 has 1.0 has 1.0 offers 1.0 enables 1.0 compared to 1.0 has 1.0 have 1.0 utilizes 1.0 achieved at 1.0 combines 1.0 have 1.0 Hydroxyapatite scaffolds can also be modified to promote angiogenesis by incorporating VEGF. 1.0 L-scaffolds can be modified to promote angiogenesis by incorporating VEGF. 1.0 Similarly porous scaffolds can also be modified to promote angiogenesis by incorporating VEGF. 1.0 Both types of scaffolds are used for bone tissue engineering applications. 1.0 MC3T3-E1 cells are also used to seed hydroxyapatite scaffolds for tissue engineering applications. 1.0 Hydroxyapatite scaffolds also support osteogenic differentiation of cells and express osteogenic markers. 1.0 aims to enhance 1.0 the degradation rate was examined considering that 1.0 biological evaluations based on were carried out to investigate the influence of porosity features on essential performance such as 1.0 Both types of scaffolds have similar porosity levels. 1.0 MC3T3-E1 cells are seeded onto L-scaffolds for tissue engineering applications. 1.0 L-scaffolds support osteogenic differentiation of cells and express osteogenic markers. 1.0 MC3T3-E1 cells can also be used to seed similarly porous scaffolds for tissue engineering applications. 1.0 Similarly porous scaffolds also support osteogenic differentiation of cells and express osteogenic markers. 1.0 Accurately reproduce force-stretch tensile behavior through fitting parameters in a piecewise linear function defined in equation (12) 1.0 Provide results for fitting parameters in piecewise linear function 1.0 Gradient distribution of 1.0 are monitored throughout the simulation 1.0 play a crucial role in its extreme tear resistance and toughness 1.0 can be varied independently through STEPS 1.0 can be achieved through STEPS 1.0 can be readily achievable through STEPS 1.0 controls between layers 1.0 provides independent of array-level properties 1.0 can be varied independently through STEPS 1.0 uses during casting process 1.0 can be achieved through STEPS 1.0 benefit from stiffness gradients and anisotropy 1.0 can be varied independently through STEPS 1.0 can be achieved through STEPS 1.0 can be achieved through STEPS 1.0 can be modulated independently through STEPS 1.0 increases by 21.1% 1.0 The degree to which a product or service can be used by specific users to achieve specific goals efficiently and effectively. 1.0 affects 1.0 Mobile applications provide various functionalities such as communication, entertainment, or productivity. 1.0 Offers 1.0 Involves 1.0 Between -60° and +60° 1.0 enables 1.0 enables 1.0 encoded in bulk volume of soft matrix 1.0 more robust with each additional HB 1.0 applied to explain molecular structure 1.0 interrupts superhelical arrangement 1.0 predicts location with least resistance to unfolding 1.0 explains barrier to implement additional HB due to increased material use 1.0 under deformation 1.0 leads to 1.0 influences 1.0 have 1.0 contribute to 1.0 influences 1.0 Use of tensegrity principles to alleviate limitations associated with conventional simulation strategies 1.0 Various approaches used to dynamically model complex structures 1.0 as aspect ratio decreases 1.0 as aspect ratio decreases 1.0 for bone repair applications remains to be explored 1.0 have been successfully applied to 1.0 have been successfully applied to 1.0 The 9 + 2 bundle structure of axonemes 1.0 Use of cylindrical mesh simulations to study axonemes 1.0 MT doublets as a component of axonemes 1.0 Use of complementary systems to study complex structures 1.0 Use of conventional simulation strategies to study larger axonemes 1.0 Use of data sets to validate and refine dynamically modeling approaches 1.0 Use of increased resolution techniques to improve dynamically modeling approaches 1.0 Presence of larger axonemes with multiple MT doublets 1.0 Use of mathematical principles to analyze and interpret experimental data 1.0 Application of mathematical principles to develop models for simulating systems 1.0 Process of modeling the dynamic behavior of complex structures 1.0 Tension as a force acting on inner MTs 1.0 Tension as a force acting on outer MTs 1.0 starts during 1.0 undergoes spatial expansion during 1.0 refolds into beta-sheets during 1.0 undergoes structural change under 1.0 Analyzed using nonlocal damage model 1.0 exhibits asymmetric mechanical properties 1.0 utilizing 1.0 transfer load while 1.0 shears 1.0 researches 1.0 Result in 1.0 Result in 1.0 Result in 1.0 Display 1.0 Provide 1.0 has not yet been found due to limitations 1.0 Can Be Processed Into 1.0 involves 1.0 involves 1.0 are fabricated through 1.0 involves 1.0 take into account 1.0 combined with 1.0 contains a small amount of 1.0 undergo significant deformation during loading 1.0 are alternated 1.0 are alternated 1.0 separate 1.0 have been further explored 1.0 reported 1.0 reported 1.0 study found that 1.0 study found that 1.0 used in creating 1.0 presented a method for creating 1.0 Lead to more complex failure patterns in collapse mode 1.0 Of multi-cell square thin-walled structures 1.0 Used to study 1.0 Used to study 1.0 Studied using 1.0 with,with 2.0 resulted in 1.0 had 1.0 Coexist in nanocomposites (NCs) 1.0 Is a component of 1.0 Has a microstructure of 1.0 Undergoes 1.0 Has a weight ratio adjustment of 1.0 comparison 1.0 Similar dissolution mechanism involves deprotonation and coordinative binding of OH groups 1.0 has 1.0 Central to producing Cel/SF composites 1.0 Natural animal protein 1.0 used for 1.0 are incorporated into 1.0 used for 1.0 different from 1.0 addresses limitations of traditional electrical circuit models 1.0 provides a more robust description of behavior by recognizing that macroscopic network properties are functions of their underlying molecular structure 1.0 consists of 1.0 consist of 1.0 consist of 1.0 are 1.0 demonstrates potential applications in increasingly complex configurations 1.0 have limitations in accurately capturing underlying physical phenomena and predicting material functionalities beyond voltage-clamp or current-clamp conditions 1.0 Localized within 1.0 promotes 1.0 undergoes 1.0 suggests approximately 12-year timescale due to depositing and removing material 1.0 takes place as a reaction to stress generation 1.0 clockwise around bearing 1.0 undergo 1.0 The goniometric stage allows for rotation. 1.0 and 1.0 used for 1.0 Observes cross sections 1.0 Observes top surfaces 1.0 Further examines 1.0 mounted on 1.0 is investigated through 1.0 measurements 1.0 decreases 1.0 decreases 1.0 traditional 1.0 passage of information 1.0 overlap 1.0 predict macroscale Mechanical, Optical, and Electrical Properties based on 1.0 investigated through 1.0 overlap 1.0 includes 1.0 applications 1.0 directly impacts 1 investigates behavior of 1.0 applies to 1.0 investigates behavior of 1.0 dynamically identifies regions 1.0 passage of information 1.0 integrated use 1.0 bridge the gap between 1.0 hinders understanding of 1.0 Proposes 1.0 provides more accurate description 1.0 less expensive model 1.0 provides information about 1.0 due to 1.0 utilize 1.0 contains 1.0 affected by roots of high tilted pillars due to their projection onto the microsphere 1.0 related to height of pillars 1.0 enables 1.0 Capillary force is used to assemble furcate slanted micropillars during fabrication. 1.0 1-propanol is used as a solvent during the development process of furcate slanted micropillars. 1.0 The laser-modulated technique is a specific method used to fabricate furcate slanted micropillars. 1.0 The superposition of optical vortices is a specific laser technique used in the laser-modulated method to create furcate slanted micropillars. 1.0 The zirconium-silicon hybrid sol-gel material is used to create furcate slanted micropillars. 1.0 used as relief mask for generating 1.0 compared to after trapping due to larger van der Waals force 1.0 arranges in after repeated trapping processes 1.0 integrated on for sensing applications 1.0 involves using furcate slanted micropillars 1.0 combined forces that allow for selective manipulation and transport of small objects through remote magnetic manipulation 1.0 dominated by 1.0 preserves 1.0 filled with 1.0 consists of 1.0 Variations in secondary phase continuity can also be used to influence the strength of the reinforcing phase(s). 1.0 Reinforcing phases can have either particulate or fibrous morphology. 1.0 Reinforcing phases can have either particulate or fibrous morphology. 1.0 Reinforcing phase(s) are typically stiffer and stronger than the matrix phase. 1.0 adds 1.0 substantially increases 1.0 can be observed on 1.0 can be observed on 1.0 do not arrange in 1.0 bulk 1.0 exhibits higher strength but lower strain at its growth direction compared to 1.0 exhibits lower strain at its growth direction compared to 1.0 consists of 1.0 acts as 1.0 employed with 1.0 Higher absorption coefficients result in lower thresholds for LST at shorter wavelengths 1.0 Affects s for LST 1.0 Processing time varies based on structure period and repetition rate,Smaller structure periods more efficiently produced through DLIP, larger structure periods more efficiently produced through DLW,Carbon-doped polymers better suited for LST using shorter wavelengths,Use of longer wavelengths can result in swelling and pore formation due to thermal decomposition of polymer matrix,Incubation effect affects ablation threshold and overall LST process,Maximum energy input required for ablation is dependent on ionization energy 6.0 Higher ionization energies required for ablation at shorter wavelengths 1.0 Influences ablation rate and type of surface features produced 1.0 Influences ablation rate and type of surface features produced 1.0 Varies at different wavelengths for different polymers 1.0 Dependent on ionization energy 1.0 Decreases processing time for smaller structure periods 1.0 of laser 1.0 decreases as the gel network increases in density due to an increase in bulk elastic modulus (E) 1.0 The scattering vector is affected by the wavelength. 1.0 conducted with 1.0 conducted at 1.0 conducted with 1.0 Within timescales 1.0 Determines 1.0 Provides a characteristic timescale for the exponential decay of 1.0 Quantified by 1.0 Involves 1.0 Involves 1.0 used to make 1.0 introduced into 1.0 incorporated into 1.0 Experience failure mechanism due to delamination 1.0 Type of failure mechanism that occurs due to collapse and densification of cells in delaminated layers of body armor materials 1.0 Type of failure mechanism that occurs due to buckling of delaminated layers in body armor materials 1.0 Type of failure mechanism that occurs due to fiber bridging between delaminated layers in body armor materials 1.0 Type of failure mechanism that occurs due to debonding of protective layers from delaminated layers in body armor materials 1.0 Reduces resistance to stress and strain of body armor materials 1.0 Occurs at different size scales in body armor materials 1.0 Experience failure mechanism due to delamination 1.0 Isotropic behavior refers to nearly isotropic behavior for total energy absorption in both hydrated and dehydrated tibias. 1.0 assumes 1.0 does not significantly affect 1.0 does not significantly affect 1.0 are explored as safer alternatives for 1.0 less pronounced 1.0 induce over time 1.0 predicts mechanical behavior and energy dissipation starting from constituent properties and volumes 1.0 form 1.0 reveals 1.0 comparable hardness values as determined by nanoindentation tests,comparable to those determined by nanoindentation tests 2.0 discovered within individual cell wall layers 1.0 Employed 1.0 rose petals offer efficient gas exchange with high sensitivity 1.0 structural architecture provides support for 1.0 encompasses 1.0 encompasses 1.0 achieves 1.0 involves 1.0 achieves 1.0 explores the role of interlaminar fracture 1.0 consist of 1.0 can lead to inflammatory reactions due to potential toxicity 1.0 has not yet been found due to limitations 1.0 are present within 1.0 of cracks through 1.0 with 1.0 compared to 1.0 are uniformly dispersed 1.0 compared to 1.0 is attributed to 1.0 both fracture 1.0 provide 1.0 The enhanced properties of functionalized graphene due to synergistic interactions. 1.0 In biological materials 1.0 formed between 1.0 boundary between 1.0 outer part of 1.0 outer part of 1.0 consists of 1.0 outer part of 1.0 consists of 1.0 inclusive hierarchical relation 1.0 inclusive hierarchical relation 1.0 Enhances 1.0 Provides a potential explanation for 1.0 contains 1.0 is,involves 2.0 tolerates 1.0 can be designed to scale proportionally to 1.0 increase non-linearly,decrease sensitivity 2.0 to tolerate cracks of all sizes 1.0 for 1.0 is 1.0 is 1.0 for 1.0 resulting in 1.0 are stiff 1.0 are examples of 1.0 distributes stress over a larger area 1.0 ranging from 1.0 ranging from 1.0 increases as it allows for more 1.0 as it varies along both width and thickness 1.0 in correspondence with stress concentrations. 1.0 should also be considered 1.0 in dorsal and ventral parts of setae. 1.0 with width and thickness variations over the length of setae 1.0 Exhibited by cortical and trabecular lamellar bone in different directions 1.0 Explored by Goodwin and Sharkey 1.0 compared with 1.0 consists of 1.0 depends on 1.0 consists of 1.0 consists of 1.0 utilizes 1.0 utilizes 1.0 consists of 1.0 investigation of mechanical behavior using computational methods 1.0 is 1.0 Based on 1.0 Combining 1.0 Added as 1.0 Essential for 1.0 Over 1.0 demonstrated positive impact on for cartilage repair 1.0 enhance 1.0 promoted osteoblast growth and proliferation compared to blank medium 1.0 exhibited both bactericidal properties and cytocompatibility 1.0 Suitable rheological properties for 1.0 Creating 1.0 Provides 1.0 Tailored using 1.0 represents 1.0 is 1.0 causes 1.0 treats 1.0 enhances 1.0 causes 1.0 results in 1.0 using 1.0 using 1.0 displayed by 1.0 investigated using 1.0 replaced traditional toxic solvents for 1.0 displayed by 1.0 investigated using 1.0 displayed by 1.0 Used for 1.0 Used for 1.0 occurs at 1.0 is regulated by 1.0 translates into 1.0 involves transferring 1.0 translates into 1.0 involves defining 1.0 studies 1.0 involves finding 1.0 size distribution altered in 1.0 size distribution altered in 1.0 promotes 1.0 move directionally 1.0 is due to 1.0 is not caused by 1.0 is due to 1.0 bears decreasing stress after reaching a tensile strain of 1.0 presence of 1.0 comparison between 1.0 presence in 1.0 is not caused by 1.0 lack of 1.0 absence in 1.0 exhibits an opposite trend with remarkable strain-hardening behavior 1.0 produce 1.0 produce 1.0 are 1.0 effects on performance have not been thoroughly investigated 1.0 are relatively few examples 1.0 most devices have been actuated through 1.0 could cause coatings to flake off 1.0 are 1.0 are suitable for 1.0 are suitable for 1.0 are 1.0 Both terms refer to interconnected networks of materials that can change shape or properties. 1.0 popular approach for 1.0 enable through integration 1.0 Imitates 1.0 Mimics 1.0 Enhanced 1.0 Compared to 1.0 Compared to 1.0 have shown promising results for 1.0 Is higher than 1.0 Is higher than 1.0 is compatible with 1.0 is an example of 1.0 method for fabrication 1.0 have potential applications in 1.0 Potential Applications In 1.0 allows for disaggregation due to 1.0 DA 1.0 is 1.0 is 1.0 is 1.0 are 1.0 yields 1.0 are present 1.0 are formed upon mixing 1.0 entraps M13 bacteriophages 1.0 is 1.0 triblock copolymers 1.0 through 1.0 employed 1.0 allows for greater versatility in hydrogel design and customization compared to 1.0 involves the study of molecular aggregates formed through 1.0 of polymeric structure 1.0 across multiple length scales 1.0 constitutive theories are applied to mcl 1.0 constitutive theories are applied to mcl's behavior in transverse direction 1.0 mcl is a subclass of ligament 1.0 reconstructs 1.0 mcl supports, coordinates, and resists within knee_joint 1.0 in composites made of hydroxyapatite fibers 1.0 COR value for snake eggshells 1.0 helps to absorb energy upon impact by resisting catastrophic deformation 1.0 increases via buckling, bending, collapse, delaminating, vibration, and inhibiting crack propagation 1.0 influences impact deformation, with smaller diameters buckling more and larger diameters buckling less but expanding more due to changes in moment of inertia and resistance to bending 1.0 provide 1.0 Rupture 1.0 has been successful in simulating 1.0 Break 1.0 lacks ordered crystal structure 1.0 occurs through 1.0 Present an innate ability 1.0 Mirrors an innate ability 1.0 can be balanced 1.0 are universally found nanostructural components 1.0 are influenced by H-bonds 1.0 Self-protect against 1.0 Self-protect against 1.0 Can show better interaction due to reduced competition with other solvent molecules 1.0 allows for reversible deformation 1.0 at 1.0 develop during physiological loading 1.0 transfers and distributes loads applied to the femur head during physiological loading 1.0 Generated across sliding areas 1.0 Generates 1.0 Experiences 1.0 self-associate via hydrophobic interactions above CMC to drive self-organization of formed calcium phosphate crystals 1.0 act as nucleation sites for calcium phosphate crystals 1.0 was used to quantitatively estimate 1.0 CXG contains 1.0 was achieved using 1.0 interact through charged groups 1.0 cooperates with to form 1.0 cooperates with to form 1.0 used to create mesopores 1.0 used to create mesopores 1.0 shows 1.0 causes 1.0 Relationship between the two concepts is that 'elephant ivory' is a synonym for 'ivory' 1.0 minimizes energy loss due to heat diffusion,reduces cracking and recast melt layers 2.0 Constituent of matrix in 1.0 Producing 1.0 Exhibit 1.0 Designed for constructing more 1.0 involves 1.0 include 1.0 represents 1.0 Matrix phase is improved upon by one or more reinforcing or secondary phases. 1.0 causes 1.0 causes 1.0 plays a crucial role 1.0 Is related to 1.0 require 1.0 do not require 1.0 results in 1.0 challenges 1.0 provide 1.0 reveals that increasing chain length significantly raises 1.0 connect vertically 1.0 composed of 1.0 plays a critical role in 1.0 have been further explored 1.0 have 1.0 undergoes 1.0 is embedded in 1.0 undergoes 1.0 is mixed with 1.0 undergoes 1.0 is visualized by 1.0 is visualized by 1.0 used for assembly 1.0 are based on 1.0 can be realized through 1.0 are based on 1.0 are used for 1.0 are used for 1.0 provide inspiration for 1.0 can be realized through 1.0 can be realized through 1.0 can be used for synthesizing CNFs. 1.0 can be functionalized by depositing electroluminescent layers on transparent CNF-based substrates. 1.0 results in increased 1.0 can be used as a standalone method to control 1 increases 1.0 precedes 1 precedes 1.0 CNFs have shown potential applications in diabetic wounds due to their ability to accelerate healing by promoting angiogenesis and reducing oxidative stress. 1.0 CNFs have shown potential applications in biomedical applications beyond tissue engineering, including promoting angiogenesis and reducing oxidative stress in diabetic wounds and promoting differentiation of mesenchymal stem cells into bone tissue. 1.0 CNFs have shown potential applications in biosensors and wound dressings. 1.0 CNFs have been shown to promote the differentiation of mesenchymal stem cells into bone tissue. 1.0 improves connectivity and load transfer between chains for high strength but not stiffness 1.0 controlled to fix fibrils in place with lowered repulsion 1.0 increases obtained properties through water removal 1.0 combined through methods 1.0 used in 1.0 enhanced via activation of FAK and ERK1/2 pathways 1.0 enhance cell adhesion 1.0 for albumin and fibronectin is stronger compared to untreated surfaces 1.0 exhibits due to its contact angle less than 5° 1.0 with high mechanical strength, fatigue resistance, and corrosion resistance 1.0 via chemical vapor deposition 1.0 has recently gained importance with diverse applications such as 1.0 provides a model with 1.0 superwettability and superhydrophilic are both terms used to describe a membrane's ability to spread water evenly over its surface 1.0 results from 1.0 encompasses 1.0 reveals 1.0 depends on 1.0 depends on 1.0 arises from 1.0 describes fundamental property of 1.0 has units of 1.0 describes property of 1.0 have 1.0 combined with for cell adhesion 1.0 used for 1.0 required after removal of unbounded powder 1.0 composed of 1.0 added to for biocompatibility 1.0 contains 1.0 simulates 1.0 provides insight into 1.0 could improve energy absorption 1.0 has exceptional stiffness,has exceptional softness,improves toughness 3.0 Are composed of many single-crystal tiles stacked upon each other 1.0 The structure of conch shell is analogous to plywood or fiber-reinforced laminated composites. 1.0 Has ten times the work of fracture compared to Nacre. 1.0 are 1.0 Has significant differences based on 1.0 Have significant differences based on 1.0 are found on 1.0 along 1.0 has 1.0 absorb more energy compared to higher stiffness nacre-like ceramics under quasi-static loads 1.0 provide 1.0 COR value for snake eggshells 1.0 has 1.0 compares structure and mechanical properties with 1.0 increases 1.0 composed of 1.0 dissipation via 1.0 creates 1.0 increases within beak 1.0 increases from tip to root 1.0 results in 1.0 observed in 1.0 compared to toucans and brombills 1.0 are found in 1.0 enables effective construction of heterojunctions 1.0 enables effective construction of heterojunctions 1.0 enables effective construction of heterojunctions 1.0 controls at different angles 1.0 enables effective construction of heterojunctions 1.0 enables effective construction of heterojunctions 1.0 have 1.0 can be incorporated 1.0 combine 1.0 result from oriented aggregation determined by 1.0 have been measured on smaller nanohydroxyapatite particles 1.0 have been observed in cell experiments 1.0 is promoted significantly by nano-HAP 1.0 are expected in the nanoscale zone for applications such as 1.0 in metallic implants 1.0 achieves precise control over,achieves precise control over 2.0 confirms 1.0 Guides 1.0 Influences 1.0 further stabilizes the structure within 1.0 is formed through 1.0 involves dispersing 1.0 involves dispersing 1.0 is a type of 1.0 Occurs in 1.0 Causes 1.0 Has 1.0 Variation is examined in 1.0 Variation is examined in 1.0 Overcomes 1.0 Enables 1.0 Enables 1.0 Enables 1.0 Enables 1.0 facilitated 1.0 integrated 1.0 enabled resistance to water absorption 1.0 integrated 1.0 enabled resistance to water absorption 1.0 Enhances 1.0 Enables 1.0 Enables 1.0 Enables 1.0 Enables 1.0 Enables 1.0 more likely to be leveraged for 1.0 Is a specific function of 1.0 more likely to be developed for 1.0 Is a specific function of 1.0 biomedical application 1.0 contain 1.0 discovered in 1.0 Allows for creation of structures with tailored electrical properties through alignment of conductive particles or fibers within printed objects 1.0 Offers advantages over 1.0 combined with 1.0 combined with 1.0 Is a material used for 1.0 deposits onto 1.0 electrically conductive materials are a type of conductive fillers 1.0 poly(aniline) is a type of electrically conductive materials 1.0 silver nanowires are a type of electrically conductive materials 1.0 a type of machine learning that enables an agent to learn by interacting with its environment and receiving feedback 1.0 Subcategory of Machine Learning Algorithms 1.0 Subcategory of Machine Learning Algorithms 1.0 Specific type of Reinforcement Learning Algorithm 1.0 Specific type of Reinforcement Learning Algorithm 1.0 Combination of Deep Learning and Reinforcement Learning 1.0 Specific type of Reinforcement Learning Algorithm 1.0 Specific type of Reinforcement Learning Algorithm 1.0 Specific type of Supervised Learning Algorithm 1.0 Ensemble Learning Technique for Supervised Learning 1.0 Specific type of Supervised Learning Algorithm 1.0 Ensemble Learning Technique for Supervised Learning 1.0 Specific type of Supervised Learning Algorithm 1.0 Specific type of Unsupervised Learning Algorithm 1.0 Specific type of Unsupervised Learning Algorithm 1.0 Specific type of Unsupervised Learning Algorithm 1.0 Eliminates 1.0 Relationship between fibers and protofilaments is that fibers are formed by the alignment of protofilaments and protofilaments interact with neighboring subunits through steric zippers. 1.0 Related parameter 1.0 Related parameter 1.0 is 1.0 could improve impact resistance 1.0 is 1.0 is 1.0 is facilitated by 1.0 suggests 1.0 crystallize upon exposure to 1.0 promising therapeutic tool for 1.0 enhance 1.0 have 1.0 programmable carriers for 1.0 added to 1.0 reduces due to uniform dispersion 1.0 reduces due to uniform dispersion 1.0 facilitates increased storage modulus due to uniform dispersion and tight interfacial bonding 1.0 reveal rod-shaped morphology with length 50-100 nm and width 20 nm 1.0 directs similarly to negatively charged elements 1.0 significantly increase penetration depth of 1.0 are detected 1.0 Composed of fibers built into lamellar layers forming V-shaped connections between different regions 1.0 exhibited 1.0 Consists of a fine, disordered meshwork of fibers covering most of the surface 1.0 is a part of 1.0 are developed through 1.0 result in 1.0 result in 1.0 generates upon 1.0 is 1.0 allows for through remote magnetic manipulation 1.0 identifies 1.0 would enhance mechanical properties 1.0 could be developed 1.0 would enhance mechanical properties 1.0 would enhance mechanical properties 1.0 could be used 1.0 hydrophilic-oleophobic textile membranes are used for oil/water separation and other applications 1.0 hydrophilic-oleophobic textile membranes are used for oil/water separation through their ability to separate oil and water 1.0 hydrophilic-oleophobic textile membranes are a type of membrane with similar functionality and properties as superhydrophilic and underwater superoleophobic micro/nanoscale hierarchical-structured fabric membranes 1.0 initial hydrophobicity is exhibited by hydrophilic-oleophobic textile membranes 1.0 microscale porosity is exhibited by hydrophilic-oleophobic textile membranes 1.0 superabsorbency is exhibited by hydrophilic-oleophobic textile membranes 1.0 superwettability is exhibited by hydrophilic-oleophobic textile membranes 1.0 underwater self-cleaning is exhibited by hydrophilic-oleophobic textile membranes 1.0 initial hydrophobicity is a property exhibited by hydrophilic-oleophobic textile membranes 1.0 initial hydrophobicity and temporarily hydrophobic are both terms used to describe a membrane's initial resistance to water 1.0 microscale porosity and intrinsic microscale holes are both terms used to describe the microscale structure of membranes 1.0 microscale porosity is a property exhibited by hydrophilic-oleophobic textile membranes 1.0 separation of oil and water is achieved by hydrophilic-oleophobic textile membranes through their ability to separate oil and water 1.0 superabsorbency is a property exhibited by hydrophilic-oleophobic textile membranes 1.0 superwettability is a property exhibited by hydrophilic-oleophobic textile membranes 1.0 underwater self-cleaning is a property exhibited by hydrophilic-oleophobic textile membranes 1.0 underwater self-cleaning and robust underwater self-cleaning property are both terms used to describe a membrane's ability to clean itself underwater 1.0 exhibits 1.0 exhibits 1.0 can be incorporated into 1.0 allows for 1.0 enables the creation of 1.0 allows for 1.0 can be used instead of 1.0 solidifies 1.0 allows for 1.0 requires 1.0 uses 1.0 has 1.0 allows for 1.0 uses 1.0 Limited Use Due to Resin Availability 1.0 Regulatory Hurdle 1.0 uses 1.0 uses 1.0 is associated with 1.0 typically around 1.0 of laser 1.0 of laser 1.0 induce 1.0 determined by 1.0 are 1.0 are 1.0 deviations from 1.0 for potential use in 1.0 for potential use in 1.0 irradiation 1.0 combination with 1.0 at normal incidence 1.0 irradiation 1.0 combination with 1.0 is 1.0 combination with 1.0 observed within 1.0 fail to replicate 1.0 determines 1.0 affects 1.0 affects 1.0 due to decreased normal stiffness 1.0 due to decreased normal stiffness 1.0 of interlayer adhesive 1.0 influences,at failure,up to failure 3.0 retained even upon close packing of bundled LHNTs 1.0 The absence of a surrounding outer cylinder in bundled LHNTs results in spectral changes that can be observed through theoretical simulations. 1.0 The inner cylinder of LHNTs is composed of molecules that undergo higher-energy transitions. 1.0 The molecular packing of the inner cylinder of LHNTs affects the spectral changes observed in theoretical simulations. 1.0 possesses 1.0 incorporation of 1.0 compared to irreversible fibrils 1.0 has 1.0 used as coatings 1.0 used as nanofillers 1.0 significantly inhibits future mineral loss 1.0 significantly inhibits future mineral loss 1.0 approaches zero 1.0 significantly inhibits future 1.0 involves creating a gradient 1.0 are created by 1.0 results in 1.0 increase 1.0 are distributed on 1.0 provide complete structural characterization for 1.0 population of 1.0 construct through principles of irreversible thermodynamics 1.0 can form through self-assembly 1.0 Generate 1.0 contains 1.0 contains 1.0 is 1.0 Endocarp Samples are samples taken from endocarps for mechanical testing. 1.0 Rectangular Coconut Endocarps are a specific type of coconut endocarp with a rectangular shape. 1.0 can exceed 1.0 interrupt 1.0 is part of 1.0 are 1.0 is part of 1.0 are light due to 1.0 consists of 1.0 are_located_within relation 1.0 allows for 1.0 enables 1.0 accounts for 1.0 created through design of layered structure model, control over ratio of organic and inorganic phases, optimization of interface, and choice of assembly method 1.0 consist of 1.0 connect vertically 1.0 are demonstrated by 1.0 Defined as in-frency distances 1.0 Defined as in-frency distances 1.0 In a real case 1.0 Summarize theoretical outcomes 1.0 Summarize theoretical outcomes 1.0 Investigating feasibility of 1.0 Investigating feasibility of 1.0 Specialized for sensitivity analyses 1.0 Specialized for sensitivity analyses 1.0 Interact with 1.0 Interact with 1.0 Interact with 1.0 Affect activity of 1.0 and 1.0 depend on 1.0 grow into 1.0 are killed by 1.0 is combined with 1.0 has 1.0 Obtained analytically using conventional mechanics of materials 1.0 Part of 1.0 Used for 1.0 Different properties due to constituent material, cellular architecture or cell orientation,Determined using multi-scale approach,Determined using conventional mechanics of materials 3.0 Provide similar stiffness for a given weight 1.0 Modeled as interconnected array of one-dimensional struts 1.0 provides greater control over 1.0 can be used for 1.0 offers through precise structural engineering 1.0 have 1.0 have 1.0 have potential applications in 1.0 have due to storage of larger molecules 1.0 Produced For 1.0 through biodegradable micelles 1.0 applications 1.0 applicable for 1.0 of 1.0 Potential Applications In 1.0 form hydrogen bonds with 1.0 produce 1.0 do not promote crystal growth 1.0 induce rhombohedral calcite crystal formation without additives 1.0 With 1.0 can be achieved through 1.0 exhibits 1.0 well-aligned along cell axis 1.0 Resulted in 1.0 open structures 1.0 more closed structures 1.0 during frency response testing under ultrahigh pressure 1.0 remained at a large sensitivity during multiple cycles of hand approach and removal 1.0 as applied pressure increases 1.0 between distance sensing and pressure sensing modes 1.0 increase non-linearly 1.0 directly impacts 1.0 facilitate 1.0 facilitate 1.0 directly impacts 1.0 provides overview 1.0 analyzes 1.0 Are 1.0 Stiffness approximately equal 1.0 Water reduces magnitude of term 1.0 regulate stress-strain relationship during loading 1.0 occurs during loading 1.0 occurs during loading 1.0 occurs during loading 1.0 regulate stress-strain relationship during loading 1.0 occur during loading 1.0 occurs during loading 1.0 occurs during loading 1.0 distribute axial tensile stress more uniformly along their length than uniform cylindrical fibrils during loading 1.0 are more likely to fracture during PG-rich interfibrillar matrix rupture than tapered fibrils 1.0 requires insights into through 1.0 Determines strength of complexes 1.0 Allow selective complexation without cross-complex formation 1.0 Form complexes through non-covalent interactions 1.0 Can be incorporated through monofunctionalization approaches 1.0 Advantage of grafting to approach 1.0 Exhibits upon application of external stimuli 1.0 Can Accommodate 1.0 B-(1-4)-linked anhydroglucose units 1.0 Balancing structure and functional properties 1.0 can reach ultra-high levels within,can reach ultra-high levels within 2.0 are ultra-highly loaded within 1.0 observed 1.0 affects 1.0 depends on 1.0 influences 1.0 commonly used model substances,class of polymers 2.0 and 1.0 used to enhance electrical signal transmission 1.0 based on 1.0 visible prior to 1.0 feature 1.0 also investigated,specific elastomer 2.0 provides a potential solution for wearable devices due to 1.0 alternative for 1.0 A femtosecond laser source is used as a laser source during micropillar fabrication. 1.0 A reflective liquid-crystal SLM is used as an optical component during micropillar fabrication. 1.0 A nanopositioning stage is used as a positioning system during micropillar fabrication. 1.0 The process of fabricating micropillars involves using a specific method such as the laser-modulated technique. 1.0 is related to 1.0 is 1.0 is related to 1.0 is 1.0 is 1.0 is extracted using wormlike chain model 1.0 varied to explore parameter space 1.0 becomes unstable when doping an excess of 1.0 identified at a PVA content greater than 1.0 has value of 1.0 were adjusted according to 1.0 result in 1.0 based on 1.0 high_content 1.0 maximal_content 1.0 decreased_content 1.0 high_content 1.0 creates 1.0 closely resembles 1.0 provides mechanical support,guides cell behavior 2.0 varying content in opposite trends 1.0 Produced collectively from subwavelength three-dimensional nanostructures 1.0 results in 1.0 Produced by interaction 1.0 promoted by 1.0 located at 1.0 developed by 1.0 awarded to 1.0 seeks to emulate 1.0 seeks to emulate 1.0 seeks to emulate 1.0 generate 1.0 allows for 1.0 are 1.0 The visual and interactive elements of a computer system or application that enable users to interact with it and perform tasks. 1.0 Mobile applications provide a user interface for interacting with smartphones. 1.0 results in reduced 1.0 results in increased 1.0 precedes 1.0 has lower mechanical property improvements due to less significant changes in structure and properties 1.0 do not show substantial differences in mechanical performance in response to a change in orientation 1.0 exhibit significant improvements in alignment, stiffness, strength, and toughness with higher spinning rates 1.0 takes place in 1.0 follows 1.0 allows for production 1.0 decreases 1.0 benefit from 1.0 on (110) planes 1.0 improves mechanical properties by breaking up fibril aggregates more efficiently 1.0 detects 1.0 results from rapid impact 1.0 understands 1.0 applies 1.0 applies 1.0 requires when manufacturing complex architectures compared to 1.0 preserves 1.0 mechanical properties similar to 1.0 allows for complex structure development below 100 microns 1.0 describes 1.0 represents 1.0 describes 1.0 describes 1.0 describes 1.0 describes 1.0 describes 1.0 describes 1.0 focuses on 1.0 determines 1.0 investigates 1.0 is proportional to 1.0 refers to 1.0 determines 1.0 belongs to 1.0 allows for 1.0 maintains 1.0 has 1.0 has 1.0 has 1.0 shows 1.0 has 1.0 has 1.0 has 1.0 is deposited onto 1.0 color changes observed 1.0 Affects 1.0 Promotes 1.0 Affects 1.0 Promotes 1.0 Not correlated 1.0 Negatively correlated 1.0 Not correlated 1.0 Not correlated 1.0 Not correlated 1.0 Not correlated 1.0 Highly correlated 1.0 Highly correlated 1.0 Highly correlated 1.0 Highly correlated 1.0 Correlated 1.0 Weakly correlated 1.0 have 1.0 does not significantly impact due to surface tension adhesion at steep angles 1.0 demonstrated through printing 1.0 have 1.0 insensitivity 1.0 influence on mechanical behavior 1.0 influence on mechanical behavior 1.0 stronger in coronal region bC 1.0 increases gradually from top to bottom of branch-stem-attachment 1.0 lack in individual DM10 1.0 involved 1.0 neglect 1.0 have 1.0 a novel way to create 1.0 focus on 1.0 proposed scenario for spikes formation 1.0 proposed scenario for spikes formation 1.0 exhibit at large accumulated fluences 1.0 coalesce and cover surface homogeneously 1.0 simulations suggest spike-related protrusions rive 1.0 increase until they disappear due to enhanced temperature gradients generated from the grooves' grating 1.0 progressively increases with increasing number of pulses 1.0 evolve into supra-wavelength protruding structures upon melt solidification 1.0 resulting from debris clusters shielding underlying material 1.0 shield underlying material 1.0 homogeneously redistributed across scanned area 1.0 composed of 1.0 do not alter 1.0 gradually diminish 1.0 composed of 1.0 uniformly cover surface at medium accumulated fluences 1.0 occurs in ablative regime,further reinforced for increasing numbers of overscans 2.0 can be arranged through self-assembly using noncovalent bonding to create ordered structures with unique properties,can be arranged through self-assembly using noncovalent bonding to create ordered structures with unique properties 2.0 requires optimization 1.0 requires optimization 1.0 should be considered 1.0 is included 1.0 is included 1.0 needs to be considered 1.0 is included 1.0 is included 1.0 requires optimization 1.0 result from 1.0 refers to 1.0 Prepare through moderate crosslinking 1.0 Fabricate through covalent bonding 1.0 Prepare with ultrahigh modulus and strength 1.0 Prepare with ultrahigh modulus and strength 1.0 Form through donor atoms 1.0 are less attenuated under compression 1.0 are less attenuated under extension load 1.0 compared to underlying layers for both cases A and B 1.0 regulates 1.0 induces 1.0 Can reach 1.0 affects 1.0 raised on 'over-use' diet develop greater proportion of, and larger, 1.0 positively affect force-producing capabilities 1.0 subjected to elevated masticatory stress during 'over-use' diet 1.0 underwent 1.0 in some scorpions 1.0 provides 1.0 related to 1.0 influences 1.0 in both structures due to their rigid, internally ordered components within a readily hydrated matrix 1.0 is 1.0 can withstand up to 1.0 describes 1.0 accounts for 1.0 accounts for 1.0 accounts for 1.0 is incorporated into 1.0 confirm 1.0 is a part of 1.0 is 1.0 is 1.0 covers 1.0 has 1.0 provides 1.0 Studies focused on CNT-based 3D architectures and aerogels. 1.0 type 1.0 involves 1.0 Renaming for consistency and clarity 1.0 A type of carrier used for graphene-based materials that can be used to transport biological compounds. 1.0 A type of carrier used for graphene-based materials that can be used to transport drugs. 1.0 Graphene-based devices used for biosensing applications. 1.0 The ability of graphene-based devices to detect C-reactive protein. 1.0 Electronic devices made using graphene that can be used for homogeneous immunoassay. 1.0 The ability of graphene-based devices to detect key markers. 1.0 The pore volume of graphene-based materials used for graphene-based devices. 1.0 Graphene-based materials with large pore volumes used for graphene-based devices. 1.0 used for encapsulation and controlled release 1.0 have 1.0 recruits 1.0 interacts 1.0 promotes 1.0 decorates 1.0 provides 1.0 resembles 1.0 forms 1.0 results in 1.0 affects 1.0 indicate 1.0 may be necessary for 1.0 may be necessary for 1.0 forms boundary with 1.0 constituent of 1.0 applies elastic-plastic fracture mechanics to study toughness of 1.0 composed of 1.0 have relatively high stiffness and low extensibility 1.0 Preferentially follow,Has lower concentration compared to 2.0 one of the forms of. 1.0 one of the forms of. 1.0 one of the forms of. 1.0 presents a cross-ply feature. 1.0 reconciles successfully. 1.0 includes several orders. 1.0 when exhibits various forms of architectures. 1.0 has 1.0 exhibits impressive mechanical properties due to its ability to control cracks and dissipate energy through structural synergy 1.0 related to 1.0 when exhibited by. 1.0 one of the forms of. 1.0 approximately 0.12 mg mm^-3 day^-1 1.0 experiences significant demineralization 1.0 utilized for formation 1.0 have due to unique porous structure 1.0 mixed with 1.0 dispersed in water 1.0 mixed with 1.0 added to facilitate formation of silica layers 1.0 mixed with 1.0 mixed with 1.0 dispersed in mixed oil 1.0 mixed with 1.0 added to stabilize water-in-oil emulsion 1.0 mixed with 1.0 undergoes structural change to 1.0 is dependent on hydration 1.0 is exhibited at highest strain rate for 20% water content 1.0 is observed for most hydrated samples 1.0 diverge strain rate effect at higher strains for most hydrated samples 1.0 is observed with decreasing hydration and increasing strain rate 1.0 is expressed at intermediate strain rates 1.0 is exceeded for samples tested at faster strain rates at 20% water content 1.0 is observed at lower hydration levels 1.0 Results in 1.0 exhibit 1.0 has 1.0 result from 1.0 had 1.0 made from a polyurethane-acrylate based polymer 1.0 reached 13 kPa 1.0 reached 30 kPa 1.0 fabricated 1.0 progressively decreased 1.0 compared to other designs 1.0 integrated for biosignal recording 1.0 developed for medical applications 1.0 involve 1.0 form 1.0 form 1.0 converge 1.0 result in 1.0 result in 1.0 result in 1.0 result in 1.0 result in 1.0 lead to 1.0 result in 1.0 have a high density in 1.0 is contributed by 1.0 can reach 1.0 reveals 1.0 allows for simulation over wide range of length and timescales with high accuracy compared to full atomistic MD simulations 1.0 is used in 1.0 relationship between 1.0 takes weeks to months 1.0 define material performance 1.0 organize into units that form larger-scale structures 1.0 can be manipulated to control 1.0 inserted through arc spraying and supersonic flame spraying for improving wear resistance 1.0 inserted through arc spraying and supersonic flame spraying for improving wear resistance 1.0 contains 1.0 provides 1.0 added to 1.0 Highly sensitive to 1.0 Highly sensitive to 1.0 Both have similar elastic modulus values in their hydrated state 1.0 Exhibits a more favorable combination of stiffness, toughness, and strength due to its inner nacreous ultrastructure and deformability from the outer prismatic ultrastructures 1.0 Requires consideration of 1.0 performed using 1.0 used for 1.0 used for 1.0 performed on 1.0 performed on 1.0 conducted using 1.0 Is used at 1.0 Is used for 1.0 have trimodal density distribution in site-matched measurements 1.0 have trimodal density distribution in site-matched measurements 1.0 have consistently higher value than 1.0 higher release due to more effective anchoring 1.0 release profile 1.0 follows 1.0 exhibited bactericidal properties 1.0 Result in lower values compared to 1.0 Require higher values than 1.0 Significantly influences 1.0 Atrial Samples are a type of Arch-Shaped Sample with a loading direction parallel to the equator of the coconut. 1.0 Result in higher values compared to 1.0 Result in higher values compared to 1.0 Require lower values than 1.0 Significantly influences 1.0 Meridional Samples are a type of Arch-Shaped Sample with a loading direction parallel to the meridian of the coconut. 1.0 Has lower values than 1.0 Significantly influences 1.0 Has no significant effect on 1.0 Has significant differences based on 1.0 Reveals significant effects on 1.0 provides 1.0 includes 1.0 Renaming for consistency and clarity 1.0 reducing sintering shrinkage in 1.0 generated through 1.0 used for 1.0 formed through 1.0 Prolong release 1.0 Loaded into for controlled release 1.0 applied to 1.0 have 1.0 have 1.0 Has 1.0 separation process 1.0 separation process 1.0 separation process 1.0 process of separating bast fiber from xylem 1.0 high-throughput method 1.0 process of producing long undamaged fibers at slower rate 1.0 process of weakening middle lamella through microorganism or enzyme action 1.0 operate in 1.0 is weaker than 1.0 dependence on 1.0 Depends on anions employed, with sulfate being less efficient than citrate, tartrate, acetate-chloride-nitrite-bromide-iodide-thiocyanate-dichloroacetate 1.0 polarize adjacent water molecules 1.0 bond 1.0 Ca2+ < Sr2+ < Ba2+ < Li+ < Zn2+ 1.0 polarize adjacent water molecules 1.0 bond 1.0 Central to producing Cel/SF composites 1.0 modulates 1.0 hasProperty 1.0 hasProperty 1.0 hasComponent 1.0 possesses 1.0 maintains 1.0 derived from 1.0 oppositeOf 1.0 is a part of 1.0 is a part of 1.0 is a part of 1.0 has 1.0 is found in 1.0 is found in 1.0 has 1.0 has 1.0 has 1.0 is a part of 1.0 are used for 1.0 are parallel to 1.0 are arranged in 1.0 freechain is a type of chain 1.0 allows for orientation against 1.0 are used for active movement 1.0 is template for 1.0 exposes 1.0 uses for exposure 1.0 is achieved through 1.0 contain 1.0 can be used for 1.0 are 1.0 uses as template 1.0 can be synthesized by 1.0 arranged into densely packed arrays with slightly different orientations in each layer 1.0 crystal fibers form an interlocked mosaic structure 1.0 near outer surface has linearly aligned fibers and curved regions 1.0 defined by 1.0 aligned as closely as possible with 1.0 provides more detailed and comprehensive images 1.0 reveal 1.0 are controlled by 1.0 provided visual representation of 1.0 defined 1.0 are not consistent with 1.0 consist of 1.0 are 1.0 appear as 1.0 are not consistent with 1.0 intersect at an angle of 1.0 results in 1.0 composed of 1.0 are arranged in 1.0 and 1.0 between 1.0 and 1.0 Can be adjusted 1.0 is tunable with 1.0 affects 1.0 affects 1.0 identified by 1.0 reviewed 1.0 identified for flow pattern generation 1.0 results in 1.0 formulated as 1.0 determined 1.0 connect nearby critical points in the flow field 1.0 included 1.0 included 1.0 included 1.0 involves 1.0 minimizes 1.0 involves 1.0 formulated as 1.0 minimizes 1.0 suitable for 1.0 suitable for 1.0 associated with 1.0 involves 1.0 constraint set 1.0 associated with 1.0 are arranged in 1.0 that resists 1.0 and 1.0 Indicate 1.0 in 1.0 in the path of enamel prisms within Hunter-Schreger bands can lead to 1.0 are oriented randomly within 1.0 this adaptation is thought to be a response to,is a type of loading condition that can lead to variations in enamel prism path 2.0 in some cases, such as in carnivores with zigzag enamel,,can be observed in some types of enamel, such as in carnivores with zigzag enamel 2.0 in the path of enamel prisms within Hunter-Schreger bands can lead to 1.0 is 1.0 are wound around 1.0 are wound around 1.0 based on 1.0 causes 1.0 assume part of 1.0 causes 1.0 DS of approximately 1.35 sulfate per monosaccharide,DS of approximately 1.35 sulfate per monosaccharide confirmed by FTIR spectroscopy and elemental analysis,pore size smaller than that of SA/PAM hydrogel due to increase in cross-linking sites after sulfonation,pore size smaller than that of SA/PAM hydrogel due to increase in cross-linking sites after sulfonation confirmed by SEM observations 4.0 predictably affects 1.0 is attributed to 1.0 considers 1.0 results in 1.0 increases toward 1.0 is 1.0 of chitin fibers 1.0 of chitin fibers 1.0 is tested 1.0 during testing or sample pre-conditioning 1.0 cannot be compared directly 1.0 influences 1.0 NFSKs are formed by decorating electrospun nanofibers with polymer single crystals. 1.0 NFSKs share similarities with the mineralized structure of bone tissue due to their periodic and uniform structures. 1.0 NFSKs exhibit periodic and uniform structures due to the decoration of polymer single crystals onto electrospun nanofibers. 1.0 NFSKs consist of polymer single crystals decorating electrospun nanofibers. 1.0 The orientation and periodicity of NFSKs are size-dependent due to the decoration of polymer single crystals onto electrospun nanofibers. 1.0 NFSKs are formed through soft epitaxy during crystal growth onto electrospun nanofibers. 1.0 NFSKs can have tunable chemistry due to the decoration of polymer single crystals with polyelectrolyte segments onto electrospun nanofibers. 1.0 Polyelectrolyte segments can be used to decorate electrospun nanofibers and create NFSKs. 1.0 denotes the wettability of fibers at the interface with the matrix 1.0 denotes materials with high mechanical strength as a result of fiber reinforcement within a hydrogel matrix 1.0 should be varied 1.0 may facilitate easier optimization of mechanical properties 1.0 lack information regarding 1.0 influence on mechanical properties 1.0 denotes the condition where the mechanical properties of the matrix and reinforcing phase match at the interface 1.0 loss of 1.0 dominated by 1.0 not leaking through extensive washing 1.0 exposed through surface of 1.0 Show strong synergistic effects 1.0 Strong bonding interaction between the hydrogel and fabric 1.0 can maximize their therapeutic potential 1.0 densification of 1.0 template for 1.0 control over 1.0 detects 1.0 0.05 MPa in all directions except for z-axis 1.0 Excludes 1.0 include 1.0 contributes to 1.0 is a component of 1.0 is related to 1.0 is a component of 1.0 is a component of 1.0 is a component of 1.0 contributes to 1.0 contributes to 1.0 contributes to 1.0 approximately 50% greater than 1.0 provides 1.0 increases from tip to root 1.0 decreases from tip to root 1.0 used for 1.0 used for 1.0 used for 1.0 used for 1.0 reinforcement 1.0 can be used as 1.0 are composed of 1.0 are composed of 1.0 enhancing conductivity and stability of 1.0 is 1.0 coated onto 1.0 reduction state 1.0 is a component of 1.0 used for 1.0 used for 1.0 reinforcement 1.0 can be used as 1.0 formed through reduction 1.0 used for 1.0 are protonated at pH values lower than their pKa values,are deprotonated at pH values above their pKa values 2.0 exhibit 1.0 are referred to as 1.0 is 1.0 is 1.0 is 1.0 includes 1.0 presents 1.0 presents 1.0 includes 1.0 simplifying assumption 1.0 focus is on 1.0 exhibits at macroscale 1.0 aligns with 1.0 has expertise in 1.0 focuses on 1.0 studies 1.0 important for converting mechanical deformation into electrical signals in 1.0 Has potential applications in 1.0 Renaming 1.0 Enables 1.0 Enables 1.0 The deep layer is a part of the calcified layer. 1.0 Accelerates quickly 1.0 The superficial layer is a part of the calcified layer. 1.0 is a component of 1.0 has 1.0 offer advantages over traditional materials due to 1.0 can be achieved through 1.0 provides insights into 1.0 determines 1.0 can be tuned by 1.0 Underlie 1.0 Deemed adequate for 1.0 Used for 1.0 Based on 1.0 involved in 1.0 can involve 1.0 deterioration during 1.0 potentially better suited for 1.0 lower than 1.0 different from 1.0 cause of 1.0 shorter than 1.0 different from,different from 2.0 lower than 1.0 present in 1.0 different from 1.0 embedded in 1.0 not present in 1.0 lead to 1.0 have a tunable 1.0 are a property of 1.0 Particulate Material Bonding Solely by Binder 1.0 density should be carefully controlled to avoid affecting structural stability of printed constructs 1.0 Has a significant impact at small aspect ratios of minerals 1.0 Falls somewhere between 1.0 Falls somewhere between 1.0 Plays a crucial role in determining 1.0 limited to 1.0 it is crucial to ensure that no 1.0 involves the use of 1.0 involves 1.0 Tightly bonded to 1.0 Leading to enhanced 1.0 Present 1.0 Minimized while maintaining high attacking potency 1.0 Contains 1.0 Contains 1.0 matches 1.0 found in 1.0 intimately associated with 1.0 includes 1.0 includes 1.0 developed based on 1.0 performed on 1.0 varying within 1.0 exhibit surface changes and edge rounding at concentrations of 1.0 grow on 1.0 consists of 1.0 Mimics Structure of 1.0 can be 1.0 provides sites for mineral deposition through specific motifs 1.0 coassembly behavior in suspension is affected by initial charge at intermediate pH identified by isothermal titration calorimetry 1.0 ChNFs have shown potential applications in biomedical applications beyond tissue engineering, including promoting angiogenesis and reducing oxidative stress in diabetic wounds and promoting differentiation of mesenchymal stem cells into bone tissue. 1.0 ChNFs have shown potential applications in biosensors and wound dressings. 1.0 ChNFs have been modified with folic acid to selectively deliver drugs to cancer cells that overexpress the folate receptor. 1.0 should consider for processing nanochitin both in wet and dry forms 1.0 is relevant to transport, storage, and redispersion of chitin nanomaterials 1.0 is crucial for controlling during drying 1.0 is coated with denatured zein 1.0 promotes self-healing in 1.0 makes it possible for 1.0 shows improved fluid flow compared to 1.0 replicates the biological characteristics of natural vascular systems 1.0 shows improved fluid flow compared to 1.0 replicates the biological characteristics of natural vascular systems 1.0 is suitable for 1.0 is co-cultured with 1.0 enhances 1.0 exhibits 1.0 have 1.0 under the same compression strain 1.0 is significantly better than 1.0 is associated with 1.0 result in 1.0 result in 1.0 is less than 1.0 lead to 1.0 result in 1.0 result in 1.0 have 1.0 compare favorably to 1.0 exhibit better compression performance than 1.0 provide 1.0 served as 1.0 combined 1.0 provide 1.0 had 1.0 provide 1.0 acted as 1.0 had 1.0 showed 1.0 compared to 1.0 tensile strength higher than 1.0 same as 1.0 evolution of polymer network structure characterized during 1.0 exhibited 1.0 evolution of polymer network structure characterized during 1.0 had good anti- 1.0 involves 1.0 results in increased 1.0 draws inspiration from 1.0 in metallic implants 1.0 have smooth transitions 1.0 have distinct interfaces 1.0 result from gradual transitions 1.0 Occurs throughout specimen for small notch lengths 1.0 Limited to for larger notch lengths 1.0 calculated at mesoscale level 1.0 compete in estimating mesoscale effective stiffness tensor 1.0 calculated at nanoscale level 1.0 calculated at nanostructural and sub-microstructural levels 1.0 Exist in three basic systems 1.0 used in hierarchical homogenization approach 1.0 can bring added functionality 1.0 estimated through hierarchical homogenization approach 1.0 calculated at nanoscale level 1.0 Reveal high density regions 1.0 With distance 1.0 Resulting from controlled, confined compression 1.0 Have an average compressive modulus significantly higher compared to 1.0 Correlated with,Exceeded in size compared to current literature 2.0 In collagen-fibril matrices 1.0 In collagen-fibril matrices 1.0 enhances 1.0 is applied at 1.0 alternative to 1.0 resistsIncreasingMomentDueToGrowth 1.0 respondsTo 1.0 appliesTensionOrCompression 1.0 is 1.0 HC-FMs are a specific type of Fiber Materials (FMs) 1.0 Weibull Fibers (type-(i)) are a component of Hierarchical Composite Fibrous Materials (HC-FMs) 1.0 is an example of 1.0 is an example of 1.0 is a consideration in 1.0 is an example of 1.0 is a factor in 1.0 are important in 1.0 Guides 1.0 Guides 1.0 Guides 1.0 Guides 1.0 Guides 1.0 is an example of 1.0 can be modeled using 1.0 has 1.0 has 1.0 has 1.0 has 1.0 has 1.0 are on lateral walls for improved torsional stiffness 1.0 consist of 1.0 isComposedOf 1.0 caused significant damage during friction testing due to localized stresses and deformations 1.0 consisted of 1.0 led to damage on the PDMS surface during friction testing 1.0 shows similar behavior 1.0 is exhibited at highest strain rate for 20% water content 1.0 is observed for most hydrated samples 1.0 diverge strain rate effect at higher strains for most hydrated samples 1.0 is observed with decreasing hydration and increasing strain rate 1.0 is expressed at intermediate strain rates 1.0 consists of 1.0 exhibits 1.0 exhibits 1.0 is exceeded for samples tested at faster strain rates at 20% water content 1.0 is observed at lower hydration levels 1.0 consists of 1.0 has 1.0 has 1.0 causes 1.0 causes 1.0 causes 1.0 shows 1.0 introduced explicitly 1.0 formed by fibers oriented at different angles under compression 1.0 Includes sway properties 1.0 consists of 1.0 shows 1.0 shows 1.0 used to investigate piezoelectric properties 1.0 Involves investigating 1.0 Significantly impacts 1.0 Can significantly affect 1.0 is 1.0 Reproduce 1.0 dependence on fracture process 1.0 of composites is set to 1 1.0 conducted by Loper et al. (2016) in abalone macro formation and mechanical response 1.0 are common components of endoskeletons,are common components of exoskeletons 2.0 are crucial factors in determining 1.0 play a role in determining 1.0 result in 1.0 result in 1.0 primary motivation 1.0 used for sustained and controlled drug elution 1.0 primary motivation 1.0 used to overcome challenges 1.0 used to overcome challenges 1.0 used to overcome challenges 1.0 used to overcome challenges 1.0 used to overcome challenges 1.0 used to overcome challenges 1.0 drugs 1.0 loaded for sustained local delivery 1.0 drugs 1.0 drugs 1.0 loaded for sustained local delivery 1.0 loaded for sustained local delivery 1.0 loaded for sustained local delivery 1.0 cannot be achieved due to batch-to-batch variability 1.0 determined through super-critical fluid processing 1.0 Deposited during long-term cell culture 1.0 Measured for calcium concentration calculation during calcium concentration measurement 1.0 Used for calcium concentration calculation during calcium concentration measurement 1.0 process 1.0 cause 1.0 process 1.0 prepared through click reactions 1.0 functional groups 1.0 has due to reactive functional groups 1.0 Has 1.0 Has 1.0 Involves 1.0 Produced For 1.0 Includes 1.0 Applications In 1.0 Applications In 1.0 Accelerate release rate 1.0 Hinder initial burst release 1.0 Offer controllability due to adjustable pore distributions 1.0 Achieved through encapsulation 1.0 Offer controllability due to adjustable pore distributions 1.0 Achieved through encapsulation 1.0 Achieved step by step 1.0 Potential Applications In 1.0 Applications In 1.0 Allows for Production of Materials With 1.0 possess features similar to 1.0 Includes 1.0 Includes 1.0 Primarily Dependent On 1.0 is found in 1.0 provides less adhesion strength than 1.0 is found in 1.0 have 1.0 is utilized by 1.0 can be achieved using 1.0 Is used for producing 1.0 Is used for producing 1.0 Is used for producing 1.0 Is subjected to 1.0 involves 1.0 involves 1.0 involves 1.0 Requires 1.0 Undergoes 1.0 utilizes 1.0 directs growth of 1.0 needs to be carefully controlled to prevent 1.0 synthesizes through 1.0 dissolves in 1.0 have 1.0 can form 1.0 have 1.0 are ideal for 1.0 are ideal for 1.0 can be assimilated during bioprinting based on the functional molecule used 1.0 has 1.0 has 1.0 ideal for 1.0 ideal for 1.0 leads to 1.0 can create surpassing current sensitivity limits 1.0 Is a specific type of 1.0 applications of 1.0 capable of producing 1.0 Made of 1.0 Has 1.0 Has 1.0 part of 1.0 exhibits dispersion properties for 1.0 mimic design of 1.0 include 1.0 Describes the mineralized tissue that makes up most of the skeleton, which consists of mineralized collagen fibrils and a softer matrix. 1.0 Describes a specific arrangement of mineralized collagen fibrils and a softer matrix in bone tissue, which allows for efficient load transfer and stiffness. 1.0 contain 1.0 have 1.0 contain 1.0 differ in starting elements 1.0 Consisting of nanophase titania/PLGA composites created via aerosol-based 3D printing technique are very promising for more effective bone regeneration due to 1.0 Through high-power sonication 1.0 Due to 1.0 But they carry certain risks for biomedical applications 1.0 Form in a PLGA solution 1.0 Provide a regulated pathway for nutrient and waste transportation as well as vascularization due to 1.0 Caused by less favorable biological properties and mechanical properties 1.0 Compared to randomly packed pores formed from porogen leaching or phase separation techniques 1.0 Can form in a PLGA solution 1.0 Demonstrate after 3D printing 1.0 is 1.0 have 1.0 have 1.0 have 1.0 can be synthesized using 1.0 is a type of 1.0 nanoparticles made of metal oxide elements can be used as substitutes for metallic nanoparticles in biomaterial matrices due to greater aqueous processability and dispersibility. 1.0 is a type of 1.0 Gas sensing materials 1.0 have 1.0 used to measure 1.0 set at 1.0 conducted using 1.0 reveals 1.0 set at 1.0 created by varying 1.0 Applies to 1.0 Experience 1.0 produces 1.0 produced using 1.0 used to investigate 1.0 is based on 1.0 is compounded with 1.0 is promoted by 1.0 results in 1.0 is controlled 1.0 is promoted by 1.0 is controlled 1.0 is promoted by 1.0 is compounded with 1.0 is a rapid prototyping technique for fabricating 1.0 is applicable to 1.0 is applicable to 1.0 allows for 1.0 is offered a significant advantage over due to 1.0 reduces friction during 1.0 mimic 1.0 provided hospitality and assistance 1.0 provided hospitality and assistance 1.0 contributed 1.0 provided travel grant 1.0 funded 1.0 contributed 1.0 provided travel grant 1.0 found in 1.0 used for drop casting 1.0 located on 1.0 can be used as a heating mechanism for 1.0 depends on 1.0 is attributed to 1.0 when conjugated to the polymer backbone 1.0 function as the host 1.0 occurs 1.0 occurs 1.0 occurs 1.0 molecules 1.0 additive 1.0 conducted using 1.0 conducted using 1.0 conducted on 1.0 consist of 1.0 captures 1.0 can be routinely used to analyze, even when they contain 1.0 generated for 1.0 deviate from 1.0 constructed from 1.0 averaged to yield 1.0 resulting from 1.0 involves 1.0 prepared using 1.0 differ from 1.0 Connected to 1.0 High crystallinity leads to low solubility. 1.0 investigation at 1.0 achieved through 1.0 extend over several orders of magnitude in size 1.0 maintains after swelling 1.0 Maintain 1.0 negatively affects during swelling 1.0 fulfill essential roles for 1.0 fulfill essential roles for 1.0 fulfill essential roles for 1.0 achieve without sacrificing 1.0 provide insights into the basic principles of design for developing composites with exceptional properties through a combination of traditional design strategies and advanced synthetic materials while minimizing environmental impact 1.0 enable multiple deformation, self-healing, plasticity, and toughening mechanisms across length scales 1.0 fulfill essential roles for 1.0 fulfill essential roles for 1.0 enables creation of 1.0 has led to systematic studies 1.0 uses of 1.0 renders 1.0 through folding and reconuration,to the best of our knowledge 2.0 by synthesizing and modifying geometric features embedded in 2D crease-cut-attachment patterns 1.0 still faces uncertainties in building combinatorial systems from a single folded sheet 1.0 further achieves efficient fabrication and packaging via 3D printing 1.0 involves 1.0 reveals underlying 1.0 creates 1.0 involves folding 1.0 uses of 1.0 enables creation of 1.0 enables creation of 1.0 through analogous three-dimensional folding schemes 1.0 through 1.0 enables creation of 1.0 linked to 1.0 are examples of 1.0 are examples of 1.0 hydrophobization or bonding interactions 1.0 can be characterized by 1.0 used to examine 1.0 limited impact 1.0 tested through 1.0 accessed through isolation and testing 1.0 released from 1.0 released from 1.0 investigated for 1.0 exhibited 1.0 synthesized via esterification and crosslinking 1.0 synthesized via esterification and crosslinking 1.0 through esterification and crosslinking 1.0 was determined for 1.0 was carried out using 1.0 CXG is a 1.0 was determined for 1.0 was used to analyze 1.0 control 1.0 integrate with 1.0 can be fabricated directly onto 1.0 can be fabricated directly onto 1.0 exhibit 1.0 exhibit 1.0 can be fabricated directly onto 1.0 are 1.0 does not alter 1.0 does not alter 1.0 limits 1.0 limits 1.0 maintains 1.0 reinforcement 1.0 high stiffness and energy absorption 1.0 mimicked for impact resistance applications 1.0 exhibit superior energy absorption capacity 1.0 obtained via 1.0 obtained via 1.0 inherits the unique mechanical properties and energy absorption potential of 1.0 compares to 1.0 can be controlled through 1.0 rounder 1.0 limited to 1.0 limited to 1.0 used for 1.0 determines 1.0 influences peptide binding 1.0 sonicated at 1.0 where 1.0 sonicated at 1.0 used for dispersion 1.0 where 1.0 determines 1.0 have replaced 1.0 have outperformed 1.0 have exhibited 1.0 have exhibited 1.0 study found that 1.0 study found that 1.0 is brought closer to through structural modification 1.0 allows for 1.0 are determined by,are used in 2.0 are conducted using CHARM force field with NAMD package to investigate radial elasticity at molecular level 1.0 is 1.0 shows comparable toughness to 1.0 measured with 1.0 measured following 1.0 measured using 1.0 RelatesTo relationship. 1.0 Warning that use of equation (1) may not always be accurate or reliable for all materials and sliding conditions. 1.0 Assumes certain conditions such as constant sliding velocity, constant normal load, and no slip or wear at surface contacts. 1.0 Measure of sensitivity of friction to roughness. 1.0 Indicates that friction is independent of roughness. 1.0 self-assembled at interfaces,self-assembled at interfaces 2.0 can self-assemble into 1.0 form 1.0 transform into 1.0 exist in 1.0 measures 1.0 measures 1.0 analyzes 1.0 decalcifies 1.0 increases over time 1.0 Bone Volume Fraction is measured through Micro-CT Tests to evaluate bone density. 1.0 Bell-Evans-Polanyi model for bond rupture is a type of bond rupture model. 1.0 Biomimetic composites with sacrificial bonds are a type of biomimetic materials. 1.0 Initial bond strength is a type of initial material strength. 1.0 Fits 1.0 related to 1.0 related to 1.0 analyzed by changing both the magnitude and direction of the externally applied force 1.0 false 1.0 false 1.0 false 1.0 true 1.0 Release rate comparison 1.0 during 1.0 have 1.0 have 1.0 but not in 1.0 reveal 1.0 Are Derived From 1.0 Can be transformed into 1.0 Have 1.0 Have 1.0 Have 1.0 is then constructed 1.0 consists of 1.0 has property of 1.0 Applies 1.0 should not have any response because of its highly symmetrical structure 1.0 studied 1.0 may also exhibit behavior due to distortion of its initial symmetrical structure 1.0 believed to be the origin of 1.0 universal feature 1.0 internal rotation of 1.0 studied 1.0 cut from 1.0 stored at 1.0 cut from 1.0 stored at 1.0 used for 1.0 used for 1.0 involved 1.0 used for 1.0 used for 1.0 stored at 1.0 used for 1.0 used for 1.0 used for 1.0 used to analyze 1.0 used for 1.0 used to analyze 1.0 used to analyze 1.0 critical for function 1.0 distinguishes between 1.0 have been continuously adapted to meet 1.0 are common components of endoskeletons,are common components of exoskeletons 2.0 occurs in 1.0 is dominant 1.0 nanoparticles can be introduced into biomaterial matrices through in situ growth using select biomaterials that act as both metal ion reductants and stabilizers. 1.0 complex metallic nanoscaffolds are three-dimensional structures made of metallic nanoparticles that can be used to provide mechanical support for biomedical applications. 1.0 self-organization refers to the process by which DNA nanostructures spontaneously assemble into specific shapes and structures. 1.0 nanoparticles can be substituted with metal oxide nanoparticles for biomaterial matrices due to greater aqueous processability and dispersibility. 1.0 reduces sensitivity to intrinsic imperfections 1.0 modeled as 1.0 analyzed through theoretical investigation 1.0 sacrifice strength and vertical stability to reduce external bending moments as a passive automatic adjustment 1.0 resembles 1.0 resemble 1.0 resemble 1.0 contacts during breathing 1.0 Can be patterned through selective exposure, which allows for the regulation of the silk secondary structure and subsequent control over the photonic lattices. 1.0 show significant improvement over conventional gels for producing 1.0 used for 1.0 used for 1.0 control 1.0 induce in compressed collagen gels 1.0 inhibit via 1.0 used for 1.0 inhibit via 1.0 used for 1.0 used for 1.0 express 1.0 attribute to 1.0 control 1.0 express 1.0 address 1.0 reproduce 1.0 attribute to 1.0 used for 1.0 used for 1.0 Presented 1.0 Normalized with 1.0 Corresponding shape and geometrical properties 1.0 Normalized with 1.0 Factored in through layering 1.0 Calculate at each hierarchical order 1.0 Expressed using 1.0 provide 1.0 enhance 1.0 alternative to 1.0 enhance 1.0 at a CHI content of 15 wt% 1.0 incorporated through electrospinning technology 1.0 commonly used for 1.0 can be computationally expensive for 1.0 combines 1.0 produces 1.0 offers an alternative to 1.0 is crucial for 1.0 includes 1.0 predicts 1.0 used for assembly 1.0 used for assembly 1.0 involved in 1.0 used for expression 1.0 extracted from 1.0 used for spinning out fibers 1.0 changes match well with stress distribution 1.0 are sensitive and reversible 1.0 disruption of 1.0 can be restored to initial state after stress unloaded 1.0 increases as sample shape changes,has higher value at position 2 2.0 are progressively oriented along tensile direction 1.0 Are Converted Into 1.0 Are Converted Into 1.0 Can Permit Accumulation of 1.0 Are Commonly Used For 1.0 Are Commonly Used For 1.0 Allows for Creation of 1.0 Allows for Creation of 1.0 Allows for 1.0 Does Not Require Use of 1.0 Allows for 1.0 investigated effect on materials inspired by biological materials 1.0 offers advantage 1.0 hierarchical structures can be found in nature 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 is a type of 1.0 can be removed by 1.0 includes 1.0 can be applied as a step for 1.0 can be used as an alternative to chemical processes for 1.0 can be applied as a pretreatment for 1.0 can be used as a heating mechanism for 1.0 can be applied as a pretreatment for 1.0 can be applied as a pretreatment for 1.0 can occur during pretreatments 1.0 can be applied as a pretreatment for 1.0 can be used as a type of 1.0 can be used as a type of 1.0 can be removed by 1.0 can be used as a type of 1.0 causes 1.0 protect from high stresses during loading,have comparatively lower stresses during loading 2.0 transfer stresses 1.0 stress oscillates according to periodicity of spoke laminations 1.0 have reduced or absent interstitial regions 1.0 Are subdivided into 1.0 Are 1.0 Creates 1.0 evaluated through 1.0 has 1.0 prepared with 1.0 provides new ideas for future tissue engineering scaffolds that are more similar to the extracellular matrix (ECM) and more favorable for cell adherence and proliferation 1.0 are suitable for due to their cost-effectiveness and versatility compared to traditional lithography methods 1.0 can be tailored for biological applications using nonlithographic micromachining processes 1.0 have 1.0 consists of 1.0 consists of 1.0 Used to calculate apparent stiffness 1.0 Compared to apparent stiffness values 1.0 Influence apparent mechanical behavior 1.0 Used to calculate apparent stiffness 1.0 Used to investigate apparent mechanical behavior 1.0 are determined by,are used in 2.0 are determined by 1.0 Is affected by 1.0 affected by 1.0 stabilize 1.0 are characterized by 1.0 Determines 1.0 Form 1.0 Form 1.0 Is Related To 1.0 Follows 1.0 assumes 1.0 Is commonly adopted for 1.0 Is useful for 1.0 Were calculated in previous studies 1.0 Were performed using COMSOL Multiphysics to confirm results obtained in previous studies 1.0 Were implemented at the other end 1.0 Were excited at one end 1.0 Were enforced at the upper and lower boundaries 1.0 Exhibit dynamic responses to 1.0 Exhibit dynamic responses to 1.0 while,while 2.0 with 1.0 with 1.0 at 1.0 captured using 1.0 with 1.0 with 1.0 with 1.0 with 1.0 is 1.0 faster 1.0 results in,limited to near base-center 2.0 for Li+/Na+ intercalation 1.0 for Li+/Na+ intercalation 1.0 results in 1.0 improves 1.0 reduces energy required for 1.0 Applied to 1.0 Developed by 1.0 offer 1.0 applied for modeling 1.0 necessary 1.0 Influence on overall properties 1.0 Transition point for mechanical behavior 1.0 Specific aspect ratio range 1.0 Specific aspect ratio range 1.0 Specific arrangement 1.0 Alternative arrangement 1.0 Vascular area is significantly smaller at both time points 1.0 has 1.0 provides barrier between,allows controlled diffusion of nutrients and ions for 2.0 allows controlled diffusion of 1.0 allows controlled diffusion of 1.0 controls 1.0 can trigger 1.0 can have ultrahigh permeability 1.0 change as well 1.0 explicitly changes 1.0 are crucial for 1.0 Related parameter 1.0 Related parameter 1.0 Related parameter 1.0 contain 1.0 as the crack propagates 1.0 cause 1.0 used to capture 1.0 range from 1.0 contain 1.0 occur 1.0 of 1.0 using 1.0 using 1.0 using 1.0 using 1.0 Renaming for consistency and clarity 1.0 researches 1.0 comes into contact due to 1.0 depends on 1.0 Depends on 1.0 is accompanied by 1.0 due to 1.0 being under tensile strain in the top layer 1.0 between resting state and post-Yield stiffening 1.0 The transition from single HB rupture to concurrent rupture of several HBs occurs at larger hierarchical levels. 1.0 requires overcoming 1.0 reflects 1.0 associated with 1.0 encompasses 1.0 are still lacking 1.0 is missing 1.0 is crucial due to 1.0 is crucial due to 1.0 are due to 1.0 are improved by 1.0 are electrospun onto 1.0 offer 1.0 is ensured by 1.0 Influenced through morphology and dispersion quality 1.0 Affected through morphology and dispersion quality 1.0 Involves 1.0 Exhibit 1.0 increase in intensity 1.0 lower 1.0 uniform 1.0 higher 1.0 confirms 1.0 Increases from 243 Hv to 296 Hv 1.0 has 1.0 fails at less than 1.0 exhibits 1.0 has 1.0 has higher density-normalized 1.0 dispersed uniformly in 1.0 has lower density-normalized shear modulus than 1.0 exhibits 1.0 has 1.0 has 1.0 has 1.0 is 1.0 is found in 1.0 microlens arrays can be made of dynamically tunable protein microlenses 1.0 at micrometer length-scales 1.0 microlens arrays have the ability to trap liquids or fluids through liquid trapping 1.0 microlens arrays are optical systems that manipulate light to achieve a specific function or effect 1.0 shape-controllable microlens arrays are a type of microlens arrays with a specific shape or geometry 1.0 are 1.0 exhibit 1.0 are 1.0 are 1.0 exhibit 1.0 are 1.0 are found on 1.0 focus light towards 1.0 exhibit 1.0 exhibit 1.0 exhibit 1.0 is evaluated through 1.0 is evaluated through 1.0 is used for evaluation through 1.0 is assessed through 1.0 is used for evaluation through 1.0 is evaluated through 1.0 interacts with 1.0 involves 1.0 involves 1.0 confirm dense organized matrix formation along pore wall and tight integration with scaffold inner surface 1.0 was performed 1.0 Trabecular Number is measured through Micro-CT Tests to evaluate bone density. 1.0 Trabecular Spacing is measured through Micro-CT Tests to analyze bone structure. 1.0 Trabecular Thickness is measured through Micro-CT Tests to analyze bone structure. 1.0 in osteogenic gene expression 1.0 reveal 1.0 minimizes 1.0 prevent better than 1.0 provides a model with 1.0 investigates deformation and fracture behavior of 1.0 Observed 1.0 Observed 1.0 Varied,Had 2.0 Appeared 1.0 Object 1.0 Revealed 1.0 have 1.0 depend on 1.0 have 1.0 depend on 1.0 analyzed theoretically 1.0 modeled as 1.0 subjected to 1.0 subjected to 1.0 modeled as 1.0 modeled as 1.0 modeled as 1.0 modeled as 1.0 modeled as 1.0 modeled as 1.0 modeled as 1.0 used to study 1.0 analyzed by changing both the magnitude and direction of the externally applied force 1.0 modeled as 1.0 is 1.0 assumes 1.0 Is related to 1.0 less important than previously believed 1.0 limited success as substrate for 1.0 used as 1.0 used to enhance barrier properties for 1.0 fabricated on using all-dry fabrication and monolithic integration strategy 1.0 Define 1.0 Include 1.0 Arrange into 1.0 Affects the price at which a trade is executed, leading to slippage,Affects the price at which a trade is executed, leading to slippage 2.0 Determine the price at which a trade is executed and can result in slippage,Determine the price at which a trade is executed and can result in slippage 2.0 Influences the price at which a trade is executed and can result in slippage,Influences the price at which a trade is executed and can result in slippage 2.0 Results in price movements that affect the execution price of a trade, causing slippage,Results in price movements that affect the execution price of a trade, causing slippage 2.0 Affects the ability to execute a trade at a desired price and can result in slippage,Affects the ability to execute a trade at a desired price and can result in slippage 2.0 Influences the price at which a trade is executed and can result in slippage,Influences the price at which a trade is executed and can result in slippage 2.0 Determines the price at which a trade is executed and can result in slippage,Determines the price at which a trade is executed and can result in slippage 2.0 Causes unexpected price movements during execution of a trade, resulting in slippage,Causes unexpected price movements during execution of a trade, resulting in slippage 2.0 Influences the price at which a trade is executed and can result in slippage,Influences the price at which a trade is executed and can result in slippage 2.0 Occurs as a result of market conditions during execution of a trading strategy 1.0 dampens 1.0 enables 1.0 is combined with 1.0 includes 1.0 includes 1.0 combination 1.0 exploration 1.0 are 1.0 are 1.0 exhibit 1.0 should focus on 1.0 should take account of 1.0 embedded in 1.0 Complex 3D microfluidic channels enable manipulation of fluids during laser processing. 1.0 Materials exhibiting hydrophobic properties are used in laser processing due to their surface chemistry. 1.0 results in 1.0 are subjected to 1.0 involves 1.0 introduces a new method for fabricating 1.0 is presented as a new method for fabricating 1.0 results in 1.0 results in 1.0 results in 1.0 results in 1.0 results in 1.0 offers for developing layered-hybrid materials with controlled microstructure and properties 1.0 Produces porous materials composed of a mixture of aluminum (Al) and aluminum oxide (Al2O3) with hierarchical anisotropic pores using ice templating. 1.0 are created by 1.0 Provides 1.0 Synonym 1.0 can be 1.0 Cellular alignment occurs in densified regions of high density collagen 1.0 Chondrocyte gene expression is influenced by collagen signaling 1.0 Monolayer-cultured chondrocytes undergo chondrogenic differentiation 1.0 Native cartilage cells undergo chondrogenic differentiation 1.0 Collagen signaling occurs through the pericellular matrix 1.0 Nuclear alignment occurs in densified regions of high density collagen 1.0 Type VI collagen is downregulated in some but not all high density collagen regions 1.0 consist of 1.0 while 1.0 Protein Filaments exhibit a specific relationship between strength and robustness known as the Banana Curve. 1.0 Protein Filaments have evolved under selective forces known as evolutionary pressure. 1.0 The use of hierarchies enables protein filaments to overcome the disparity between strength and robustness. 1.0 Protein Filaments exhibit inverse behavior between strength and robustness. 1.0 Less than 2% of all hierarchical structures exhibit unique mechanical behavior similar to that of protein filaments. 1.0 Protein Filaments are designed to meet multiple objectives beyond just strength or robustness. 1.0 Protein Filaments are composed of subelements. 1.0 Protein Filaments exhibit a specific arrangement of subelements at three levels of hierarchy. 1.0 Contact size 1.0 Structural features found specifically in Haliotis pulcherina shells 1.0 Structural features found specifically in Haliotis rufescens shells 1.0 Structural features that are produced through controlled biomineralization systems 1.0 Structural features that provide evolutionary advantages to mollusc shells 1.0 Structural features that are genetically conserved across different species of molluscs 1.0 Structural features that provide mechanical advantages to mollusc shells 1.0 Structural features found in mollusc shells 1.0 Specific type of structural feature found in certain biominerals, such as nacreous shells 1.0 Another specific type of structural feature found in certain biominerals, such as prismatic shells 1.0 when polymer layers overlap in poor solvents due to polymer-polymer interactions being preferred over polymer-solvent interactions 1.0 when neighboring polymer 'brushes' are compressed due to conformational entropy change 1.0 when a non-adsorbing polymer is present due to depletion of polymeric chains in the vicinity of contact volumes between interacting particles 1.0 through attachment of polymers to DNA microarrays 1.0 result in 1.0 when polymer layers overlap in good solvents due to loss of entropy caused by restriction on molecular motion or orientational freedom of the polymer,due to conformational entropy change when neighboring polymer 'brushes' are compressed 2.0 in colloidal dispersions through tethering long-chain molecules onto particle surfaces 1.0 show 1.0 show 1.0 measured using 1.0 contained in 1.0 exist in 1.0 show 1.0 form 1.0 enable 1.0 provides 1.0 when pressure is applied 1.0 develop 1.0 describes under varying stress levels 1.0 characterizes 1.0 is 1.0 characterizes 1.0 shows 1.0 Evidence supporting the biocompatibility of engineered carbon scaffolds or covalently bonded carbon nanotube carpets compared to current wound healing scaffolds. 1.0 Ability to manipulate the height of covalently bonded carbon nanotube carpets to control cell growth compared to current wound healing scaffolds. 1.0 Ability to modify the surface wettability of engineered carbon scaffolds or covalently bonded carbon nanotube carpets to influence cell growth compared to current wound healing scaffolds. 1.0 Evidence supporting the ability of engineered carbon scaffolds or covalently bonded carbon nanotube carpets to protect cells against environmental stressors compared to current wound healing scaffolds. 1.0 Evidence supporting the ability of engineered carbon scaffolds or covalently bonded carbon nanotube carpets to promote directed cell growth compared to current wound healing scaffolds. 1.0 Advantage of engineered carbon scaffolds over current wound healing scaffolds in terms of compatibility with biological tissues and fluids. 1.0 Advantage of engineered carbon scaffolds over current wound healing scaffolds in terms of structural strength and resistance to deformation or fracture. 1.0 Advantage of engineered carbon scaffolds over current wound healing scaffolds in terms of the ability to tailor their surface properties for specific applications or cell types. 1.0 Advantage of engineered carbon scaffolds over current wound healing scaffolds in terms of their high surface area to volume ratio, which can enhance their interactions with cells or drugs. 1.0 Potential of engineered carbon scaffolds to address strategic challenges or limitations in wound healing compared to current wound healing scaffolds. 1.0 Potential of engineered carbon scaffolds to promote tissue regeneration compared to current wound healing scaffolds. 1.0 Contains 1.0 Can be adjusted 1.0 Increases 1.0 Produces 1.0 Produces 1.0 Produces 1.0 Affects how protein structures change under applied forces 1.0 is 1.0 includes 1.0 includes 1.0 is calculated using 1.0 is used to smoothly transition to the final velocity 1.0 produced through 1.0 produced through 1.0 allows for consistent fiber production 1.0 is used to initiate attachment and prevent breakage during release of the meniscus 1.0 pairs with 1.0 support 1.0 initiate collagen array formation and drive them to continuity 1.0 address 1.0 demonstrated through larger driving forces and displacements 1.0 offered for small-scale robots 1.0 Crystallographic analysis is directed at crystal sample 1.0 Crystallographic analysis uses known patterns 1.0 Crystallographic analysis uses mathematical methods 1.0 belongs to 1.0 belongs to 1.0 significance of 1.0 belongs to 1.0 Collagen fiber bundles help spread loads over a wider area. 1.0 Collagen fiber bundles terminate at junctions connecting to other tissues. 1.0 Collagen fiber bundles are lined with tenocytes. 1.0 Muscle cells are regularly spaced at muscle-tendon junction (MTJ). 1.0 Satellite cells are around muscle cells. 1.0 Satellite cells could lead to impairment of capillary functions. 1.0 Satellite cells could lead to deleterious effects on ECM functionality at low dimensional levels. 1.0 blocks 1.0 influences 1.0 influences 1.0 has led to 1.0 has developed 1.0 Results in 1.0 results in differences in degree of polymerization and interaction potential compared to 1.0 Allows for Production of 1.0 Results in 1.0 Eliminates 1.0 Forms through 1.0 Results in 1.0 Forms through 1.0 Forms through 1.0 Forms through 1.0 Allows for 1.0 Results in 1.0 cellular responses to severe plastic deformation techniques 1.0 performed on 1.0 formation through 1.0 impact on 1.0 is related to 1.0 appearsInExpressionsFor 1.0 describes 1.0 dependsOn 1.0 appearsInExpressionsFor 1.0 involvesFitting 1.0 involvesDeveloping 1.0 independenceFrom 1.0 independenceFrom 1.0 independenceFrom 1.0 toMeasurementsObtainedFrom 1.0 involves 1.0 thatLinkTheValueOfTheConstitutiveParameter 1.0 thatMathematicallyDescribeMomentumTransport 1.0 withSufficientSpatialResolution 1.0 stronglyAffect 1.0 associated with 1.0 consideration for 1.0 used for treating 1.0 relationship between 1.0 relationship between 1.0 relationship between 1.0 may increase risk of 1.0 prevention strategies for 1.0 used for treating 1.0 may increase risk of 1.0 impact on 1.0 impact on 1.0 used for investigating 1.0 effects on 1.0 reduced bone strength in 1.0 leads to 1.0 leads to 1.0 leads to 1.0 are integrated into 1.0 have 1.0 significantly affects 1.0 can lead to 1.0 play a significant role in 1.0 improves 1.0 leads to 1.0 strongly depends on 1.0 lacks 1.0 combination with 1.0 combination with 1.0 combination with 1.0 have 1.0 Generate 1.0 due to 1.0 results in 1.0 results in 1.0 allows for 1.0 refers to 1.0 effectively enables 1.0 dominates failure under compression 1.0 demonstrated under tension 1.0 demonstrated under tension 1.0 occurs for cuticula layer under compression 1.0 occurs under compression 1.0 bridged by sharing fibers and fiber bundles under tension 1.0 occurs under compression 1.0 exceeds measured ultimate strength under compression 1.0 results from macroscopic axial splitting under compression 1.0 affects under tension 1.0 Subclass of 1.0 Species of 1.0 Subclass of 1.0 Species of 1.0 belong to 1.0 fish 1.0 Improve gas sensing properties 1.0 Involve compared to UNSM 1.0 Are complex, costly, and time-consuming compared to UNSM 1.0 Are created through manipulation of process parameters such as tip diameter, strike intensity, and strike density,Are created through scanning a tungsten carbide ball attached to an ultrasonic device over the sample surface while striking it at high frequency 2.0 Processes through Ultrasonic Nanocrystal Surface Modification (UNSM) to enhance biocompatibility, corrosion performance, and mechanical properties of 1.0 Increases by 22% 1.0 is a type of 1.0 is a type of 1.0 Are added directly into for increased mineralization and formation of bone nodules 1.0 Formed using 1.0 resists both opening and sliding of ts 1.0 indicate topographic arrangement of 1.0 has 1.0 is parallel to 1.0 Exhibited a higher value of amplitude compared to other geometries 1.0 Appear 1.0 applies to 1.0 measured using 1.0 provides insights into 1.0 provides insights into 1.0 describes 1.0 forms 1.0 belong to 1.0 are 1.0 Connected by 1.0 correlated with water droplet contact angles 1.0 the seta detaches when it reaches this angle with the substrate 1.0 with minimal dependence 1.0 was investigated 1.0 was investigated 1.0 was observed 1.0 was studied 1.0 was compared to latitudinal orientation 1.0 higher compressive stiffness 1.0 was studied 1.0 mechanical properties investigated under 1.0 was investigated 1.0 were tested 1.0 was observed 1.0 investigates under both tensile and compressive loading conditions 1.0 represents 1.0 obtained from 1.0 is synthesized from 1.0 is presented by 1.0 is predicted by 1.0 are obtained through 1.0 is consistent with 1.0 has compressive properties that are similar to 1.0 shows 1.0 shows 1.0 shows 1.0 has compressive properties that differ from 1.0 shows 1.0 shows 1.0 demonstrates 1.0 Applied 1.0 explores 1.0 produces 1.0 occurs during 1.0 comparable to 1.0 forms at 1.0 occurs during 1.0 mitigates 1.0 allows for 1.0 essential for 1.0 remained unaffected by unwanted polymerization on exterior during 1.0 mitigates 1.0 allows for 1.0 resulted from minimizing formation of 1.0 based on 1.0 results in 1.0 comparable to 1.0 Present Antigens 1.0 Encounter 1.0 Present Antigens 1.0 Hinder Antigen Extraction 1.0 Facilitate Efficient Antigen Extraction 1.0 Lead to Higher Cell Contractility 1.0 Make B Cells More Likely to Extract High-Affinity Antigens 1.0 Inherits structure from 1.0 Formed from 1.0 Characterized by 1.0 can impart 1.0 technique 1.0 Easily Fabricated on 1.0 Introduced for Skeletal Structures 1.0 Enables through 1.0 Required for Synthesis 1.0 Enabled through Conuring 1.0 Consists of 1.0 Required for Synthesis 1.0 Enables through 1.0 Representative Module 1.0 Representative Module 1.0 Derived from 1.0 Explored through Multiple Folding States 1.0 Maintained at each generation 1.0 Enables through 1.0 Common Hinge Edge 1.0 Required for Synthesis 1.0 are obtained after polymer infiltration 1.0 are attributed to 1.0 By facilitating 1.0 Can aid 1.0 Enables 1.0 Of information 1.0 maximum load under hydrated conditions is lower than 1.0 suitable for 1.0 indicates a fatigue failure of 1.5 million cycles under physiological walking loads of 400 N 1.0 falls within physiological range reported in literature 1.0 Contribution 1.0 Are in good agreement with beam theory results 1.0 Can still be accurately described 1.0 allows for traverse through multiple length-scales 1.0 from atomistic structures 1.0 reveals mitigation of mechanical strains due to repeated breaking of H-bonds in response to tensile loading with a defect 1.0 Used for image analysis to determine area fraction 1.0 Calculated through image analysis using MATLAB software and thickness ratio measurement 1.0 Calculated as product of area fraction and ratio of microfiber thickness to final composite thickness 1.0 and 1.0 are similar to 1.0 indicates presence of 1.0 indicates presence of 1.0 forms at expense of 1.0 has 1.0 has 1.0 has 1.0 are used in 3D hierarchical porous scaffolds for cartilage repair 1.0 is approximately equal in magnitude to 1.0 Provides A Method For Calculating Percent Elastic Anisotropy 1.0 Exhibits 1.0 Exhibits 1.0 Exhibits 1.0 Describe Shear Anisotropy 1.0 Describe Compressive Anisotropy 1.0 has 1.0 exhibits 1.0 has 1.0 is considered in the model 1.0 is considered in the model 1.0 decreases as frequency increases from 1.0 E3 1.0 is characterized by 1.0 E2 1.0 are created from 1.0 are packed into 1.0 are packed into 1.0 alternate with 1.0 causes 1.0 allow for 1.0 contain 1.0 contains 1.0 alternate with 1.0 Have low mechanical strength 1.0 Indicates 1.0 Decreases Upon Addition Of Peptide Segment 1.0 Attributed To 1.0 Still Apparent In DSC 1.0 Emerges Upon Addition Of Peptide Segment 1.0 Enhances Phase Mixing 1.0 Decreases 1.0 contain 1.0 serves 1.0 serves 1.0 serves 1.0 forms boundary layer 1.0 involves description of 1.0 main constituents (in some cases) 1.0 main constituents 1.0 can be 1.0 can be 1.0 have hexagonal structure 1.0 predominant among waxes 1.0 show triclinic phase with significant disorder 1.0 form two-dimensional crystals at molecular level 1.0 possess 1.0 possess 1.0 surface modification for 1.0 possess 1.0 applications for 1.0 possess 1.0 applications for 1.0 used for 1.0 is 1.0 investigated in collagenase and lysozyme enzymatic solutions 1.0 had a higher blood clotting index than CS and SIS 1.0 composed of 1.0 investigation of 1.0 widely used due to anisotropic properties 1.0 higher due to non-gradient pore structures 1.0 minimal due to non-gradient pore structures 1.0 widely used due to anisotropic properties 1.0 ability to produce 1.0 ability 1.0 has 1.0 have the potential to improve sensor sensitivity due to their ability to adapt more conformally to rough surfaces 1.0 is sealed against an upper conductive layer with 1.0 is sealed against an upper conductive layer with 1.0 has been observed 1.0 have a negative correlation between sucker size and adhesion strength 1.0 adhesion force is proportional to the cup area at 1.0 have a negative correlation between sucker size and adhesion strength 1.0 Appear 1.0 Not Shown For Peptide Segment Due To 1.0 techniques for fabricating 1.0 integration with 1.0 techniques for fabricating 1.0 values can be extended to with specific assumptions 1.0 present challenges for commercial structural applications 1.0 are limited by 1.0 present challenges for commercial structural applications 1.0 is abundant 1.0 are limited by 1.0 retain their properties when combined into bulk materials due to 1.0 have lower mechanical performance than 1.0 have lower mechanical performance than 1.0 changes can be monitored through 1.0 changes can be monitored through 1.0 changes can be monitored through 1.0 are used for 1.0 are used as 1.0 are used for 1.0 can be fabricated through 1.0 are fabricated through 1.0 are composed of 1.0 are constructed through 1.0 Major disadvantage 1.0 Overcomes 1.0 includes 1.0 causes a significant change 1.0 consists of 1.0 assumes that the force-indentation response is a result of the serial superposition of operating within well-defined ranges of deformations 1.0 identifies three major contributors to the micromechanical response: 1.0 identifies three major contributors to the micromechanical response: 1.0 is particularly advantageous for analyzing large datasets of force-indentation curves 1.0 uniquely obtains an elastic modulus that is similar to the bulk elastic modulus of 1.0 identifies three major contributors to the micromechanical response: 1.0 Has potential applications in 1.0 provides 1.0 reveals some degree of preferred orientation 1.0 size suggests formed by,size suggests formed by 2.0 very well oriented potentially due to synchronized activity of a single mantle cell forming highly ordered matrix-mineral structure 1.0 reveals no lateral preferred orientation 1.0 subject 1.0 applied to 1.0 Gradually transfers 1.0 Primarily bears 1.0 results in 1.0 doped with 1.0 hydrophobization,bonding interactions 2.0 Slightly Improved 1.0 Decreased 1.0 Negatively Affected 1.0 Decreased 1.0 forms on surface and within pores 1.0 declines 1.0 increases 1.0 mechanical properties were significantly enhanced 1.0 modulus was also lower 1.0 are named based on the days of mineralization 1.0 mechanical properties were significantly enhanced 1.0 contributesTo 1.0 increasesWith 1.0 is characterized by 1.0 manifests 1.0 further controls fibril electrostatic repulsion and alignment through supramolecular interactions 1.0 generates higher elongational rates for better orientation and alignment 1.0 experience faster alignment but lower mechanical properties due to lower orientation degree 1.0 is dominated globally by 1.0 has excellent energy absorption properties under 1.0 is a component of 1.0 used for determining 1.0 Renaming 1.0 is dominated globally by 1.0 has a high indentation resistance while the inner portion absorbs more energy through 1.0 is a type of 1.0 has a similar structure to 1.0 used for determining volume fraction of porosity 1.0 used for determining 1.0 equals 1.0 equals 1.0 is dominated globally by 1.0 Mixed With 1.0 Is 60 Vol % Powder-40 Vol % Polymer Based On The Dry Mass 1.0 Agitated For 1.0 Require Milling And Filtration For 1.0 Is Approximately 40 Vol % Based On 1.0 connected through colloidal assembly 1.0 utilized for artificial nacre formation 1.0 used in body armours and undergoes catastrophic failure when damaged resulting in dangerous fragments being ejected at high velocities 1.0 attacks 1.0 is imaged using 1.0 is investigated using 1.0 Occurs during stretching of single drawn fibers 1.0 Mobile applications are compatible with specific operating systems and smartphone models. 1.0 Smartphones can run various mobile applications for different purposes. 1.0 Mobile networks enable data transfer between smartphones and other devices or networks. 1.0 Mobile networks provide mobile broadband for high-speed internet access on smartphones. 1.0 Mobile networks enable mobile hotspot functionality for sharing internet connectivity with other devices. 1.0 Smartphones can connect to mobile networks such as 3G or 4G for internet access. 1.0 allow for a comprehensive understanding of observed high performance 1.0 related to 1.0 detects 1.0 is 1.0 related to 1.0 detects 1.0 is 1.0 is 1.0 is 1.0 is 1.0 is 1.0 is 1.0 is 1.0 is 1.0 is 1.0 is 1.0 is 1.0 can significantly reduce the risk of 1.0 undergoes 1.0 results from 1.0 exhibits 1.0 are incubated with 1.0 is measured by 1.0 are isolated from 1.0 grown on 1.0 consider 1.0 not consider 1.0 from 1.0 developed 1.0 specifically for 1.0 compare 1.0 for 1.0 for 1.0 include 1.0 is 1.0 are generally described and modeled as 1.0 Produces porous materials with a random distribution of pores and no preferred orientation using gel-casting. 1.0 Not applicable. 1.0 Produces porous materials composed of a mixture of aluminum (Al) and aluminum oxide (Al2O3) with hierarchical anisotropic pores. 1.0 Produces porous materials composed of aluminum oxide (Al2O3) with a uniform distribution of microscale pores. 1.0 Produces porous materials with a random distribution of pores and no preferred orientation. 1.0 Enables production of different types of porous materials through various colloidal assembly routes. 1.0 Offer 1.0 Offers 1.0 Can be modulated 1.0 Can be modulated 1.0 are mainly located at the margins 1.0 higher number 1.0 primarily distributed at 1.0 leads to 1.0 exceeds 1.0 leads to 1.0 bind 1.0 is sensitive to 1.0 where it can replace fossil fuels 1.0 has potential applications in 1.0 is a sustainable alternative to 1.0 involves developing 1.0 involves developing 1.0 involves developing 1.0 operates at 1.0 involves developing 1.0 involves exploring 1.0 where it can replace fossil fuels 1.0 describes the material's response to bending forces in different orientations (M-L and A-P) 1.0 refers to a specific design feature that enhances the material's strength and durability 1.0 indicates whether the material is stiff and resists deformation 1.0 composed of multiple sub-layers with specific modulus values 1.0 Behavior under 1.0 Is highest for 1.0 Exhibit 1.0 Exceeds 1.0 Exceeds 1.0 Is significantly lower than 1.0 Is shorter than 1.0 Is longer than 1.0 Exhibits 1.0 Is higher than 1.0 Have 1.0 Have 1.0 Is higher than 1.0 Is higher than 1.0 Is higher than 1.0 Is lower than 1.0 Common abbreviation for material name 1.0 is higher than 1.0 exhibits characteristic continuous stiffening behavior as deformation increases 1.0 exhibits lower value that increases significantly at high strains 1.0 linearly decrease with respect to 1.0 involves 1.0 provides due to its proximity to 1.0 has 1.0 outperform 1.0 have 1.0 outperform 1.0 serve as 1.0 provide 1.0 allow for 1.0 exhibit 1.0 outperform 1.0 manifest 1.0 phenomena 1.0 is 1.0 is 1.0 has 1.0 is 1.0 is 1.0 are 1.0 results in 1.0 includes 1.0 result in 1.0 control 1.0 control 1.0 understand 1.0 control 1.0 higher repulsive energy barriers 1.0 control 1.0 reduce 1.0 reduce 1.0 reduce 1.0 result in 1.0 prevent nanocrystal overlap 1.0 act on assembly 1.0 control 1.0 higher repulsive energy barriers 1.0 affect,affect assembly 2.0 integrate into 1.0 originate from 1.0 take place during colloidal assembly 1.0 take place during colloidal assembly 1.0 assist in oriented 1.0 Indicates 1.0 caused by 1.0 allows for 1.0 incorporate 1.0 simulate 1.0 incorporate 1.0 utilize 1.0 utilize 1.0 deliver 1.0 utilize 1.0 utilize 1.0 deliver 1.0 exhibited 1.0 map 1.0 are composed of at micro-level 1.0 result from the combined features of the structure during deformation 1.0 are attributed to 1.0 contain 1.0 experiences greater 1.0 differ in protein content attributed to differing mechanical demands 1.0 has 1.0 shows 1.0 yields 1.0 against 1.0 is 1.0 shows 1.0 is 1.0 shows 1.0 shows 1.0 are found in 1.0 related to 1.0 manipulation 1.0 manipulation 1.0 possible through 1.0 possible through 1.0 manipulation 1.0 tuning through 1.0 possible through 1.0 Renaming for consistency and clarity 1.0 includes 1.0 provides 1.0 provides 1.0 provides 1.0 leads to 1.0 modulates 1.0 intrinsic properties are tuned by 1.0 serves 1.0 leads to 1.0 provides 1.0 may be 1.0 may be 1.0 including 1.0 modulates 1.0 provides 1.0 has implications for 1.0 compromises 1.0 attach to through byssus attachment facilitated by protein-based disc-like structure called the byssus plaque 1.0 Opposite biological process 1.0 Protein folding is facilitated by molecular chaperones, which prevent protein aggregation and assist in proper folding. 1.0 can be manipulated to control 1.0 Leads to 1.0 Protein misfolding is targeted by the proteasome, which degrades misfolded proteins to prevent aggregation and cellular damage. 1.0 forms a layer on 1.0 is passivated by 1.0 is characterized by 1.0 Have 1.0 Are 1.0 Have 1.0 Have 1.0 predators 1.0 Aligned with 1.0 Contains 1.0 Has 1.0 Consists of 1.0 Consists of 1.0 confirms 1.0 Contributes to 1.0 Affects 1.0 Affects 1.0 Exhibits 1.0 occur without fibrous connective tissue 1.0 significantly increases 1.0 does not significantly affect 1.0 results in a small reduction 1.0 improves 1.0 decreases 1.0 affects 1.0 does not significantly affect 1.0 Accomplished 1.0 Caused 1.0 Object 1.0 without significant initial HAP deformation 1.0 are suitable for 1.0 are suitable for 1.0 are 1.0 are suitable for 1.0 are suitable for 1.0 are 1.0 are 1.0 are 1.0 are suitable for 1.0 are suitable for 1.0 are 1.0 are 1.0 are suitable for 1.0 are suitable for 1.0 are 1.0 cause 1.0 are 1.0 cause 1.0 allows for adjusting self-assembled structures 1.0 is 1.0 are suitable for 1.0 are suitable for 1.0 are 1.0 cause 1.0 are 1.0 are 1.0 are suitable for 1.0 are suitable for 1.0 are 1.0 are 1.0 are suitable for 1.0 are suitable for 1.0 are 1.0 is 1.0 are 1.0 are 1.0 observed 1.0 located in middle part of cortical bone 1.0 observed throughout 1.0 investigated through TEM investigations of sauropod bones 1.0 may provide 1.0 original structure preservation 1.0 achieved better than conventional preparation methods 1.0 consistent with diagenesis 1.0 did not differ significantly in width 1.0 impacts 1.0 reveals 1.0 reveals 1.0 reveals 1.0 reveals 1.0 is greater 1.0 is more significant 1.0 consist of 1.0 are observed between certain strands 1.0 and aromatic stacking 1.0 is stabilized by 1.0 compared to irreversible fibrils 1.0 can be dynamically regulated by 1.0 such as temperature, pH, salt, and PTMs 1.0 are made of 1.0 are prepared by 1.0 bioactive sulfonated groups retained after sulfonation 1.0 crack bridging 1.0 a recent trend in synthesis 1.0 results from 1.0 hysteresis 1.0 potential as 1.0 synthesized through dual network synthesis 1.0 ionically cross-linked network formed after covalent cross-linking 1.0 ionically cross-linked network formed after covalent cross-linking 1.0 incorporated after interfacial polymerization 1.0 while 1.0 consist of 1.0 is an outer moderately ordered,is a highly ordered middle 2.0 is an amorphous inner 1.0 is filled with 1.0 is divided into 1.0 have 1.0 resemble 1.0 Glucose is a primary source of energy for energy production 1.0 glucose-derived carbon source is a type of carbon source derived from glucose 1.0 Oxygen is required for the breathing process 1.0 input parameters taken from 1.0 used for evaluating damage at issue level 1.0 for Li+/Na+ intercalation 1.0 impacts 1.0 introduction leads to 1.0 for Li+/Na+ intercalation 1.0 Alkali metal ion batteries 1.0 introduction leads to 1.0 Higher specific capacity 1.0 for Li+/Na+ intercalation 1.0 introduction leads to 1.0 impacts 1.0 leads to 1.0 impact 1.0 for Li+/Na+ intercalation 1.0 introduction leads to 1.0 can enhance 1.0 Higher specific capacity 1.0 impacts 1.0 leads to 1.0 for ion adsorption 1.0 undergo 1.0 impacts 1.0 promotes 1.0 impact 1.0 Alkali metal ion batteries 1.0 impact 1.0 leads to 1.0 impacts 1.0 Alkali metal ion batteries 1.0 can enhance 1.0 impacts 1.0 for ion adsorption 1.0 impacts 1.0 impacts 1.0 introduction leads to 1.0 can enhance 1.0 leads to 1.0 for ion adsorption 1.0 leads to 1.0 impacts 1.0 for Li+/Na+ intercalation 1.0 can enhance 1.0 impacts 1.0 leads to 1.0 for ion adsorption 1.0 with excellent lithium and sodium storage performances,for MSNPs/NCF products,cycles 3.0 can enhance 1.0 for ion adsorption 1.0 introduction leads to 1.0 for Li+/Na+ intercalation 1.0 introduction leads to 1.0 introduction leads to 1.0 for ion adsorption 1.0 with excellent lithium and sodium storage performances,for MSNPs/NCF products,cycles 3.0 can enhance 1.0 can enhance 1.0 can enhance 1.0 leads to 1.0 for ion adsorption 1.0 for ion adsorption 1.0 predict superhydrophobicity due to air pockets 1.0 are achieved through 1.0 exposed and available for binding host bacteria 1.0 offers more binding sites for desired ligands 1.0 is prepared for high underwater crude oil contact angle and meager underwater oil adhesion force 1.0 is easily polluted by crude oil in the dry state due to 1.0 has 1.0 is 20 times lower than 1.0 is functionallyized by impregnating an epoxy-amine system into delignified wood for selective separation of 1.0 have 1.0 naturally perform 1.0 have 1.0 naturally perform 1.0 enables the design and construction of 1.0 enables 1.0 forms via chemical reduction 1.0 forms in presence of NaBH4 1.0 occur as triple helix uncoils during uniaxial extension 1.0 are straightened during uniaxial extension 1.0 results from yielding during uniaxial extension 1.0 is involved in fundamental mode of deformation during uniaxial extension 1.0 is involved in fundamental mode of deformation during uniaxial extension 1.0 result from 1.0 are applied after gelation to 1.0 can be prepared through 1.0 have 1.0 depends on via equations 1.0 depends on via equations 1.0 Aids in hydrolysis 1.0 and increasing mineralized level in MC3T3-E1 preosteoblasts 1.0 is promoted by upregulating SOX9 and COL II genes in chondrocytes 1.0 has significantly higher compressive strength compared to 1.0 prevents 1.0 Enhances ALP activity in osteopergenitor cells compared to all other conditions 1.0 expressed at an earlier stage 1.0 not explicitly stated 1.0 was developed by 1.0 is derived from 1.0 assumes 1.0 assumes 1.0 was developed by 1.0 assumes 1.0 assumes 1.0 further presented 1.0 assumes 1.0 assumes 1.0 involves 1.0 uses 1.0 is dependent on density difference during bone remodeling 1.0 is dependent on mechanical stimulus during bone remodeling 1.0 relates temporal changes in density parameter during bone remodeling 1.0 necessary for formation of functional tendons 1.0 responds to 1.0 enhanced and complemented 1.0 used for 1.0 used to characterize 1.0 additive 1.0 utilizes 1.0 aims to design and manufacture 1.0 involves 1.0 achieves 1.0 demonstrates 1.0 include 1.0 Remains Elusive 1.0 In drop tower experiments 1.0 Of each design element 1.0 Below 25 m/s in drop tower experiments 1.0 Can make it challenging to compare results 1.0 Examined 1.0 Must be considered for higher strain rates 1.0 Examined 1.0 May require impedance mismatch ratios and pulse shapers 1.0 In drop tower experiments 1.0 For maximizing 1.0 critical role 1.0 Exist in 1.0 Are affected by 1.0 Are affected by 1.0 Influences 1.0 shows 1.0 commitment 1.0 provides 1.0 provides 1.0 provides 1.0 provides 1.0 provides 1.0 provides 1.0 provides 1.0 provides 1.0 provides 1.0 provides 1.0 provides 1.0 provides 1.0 provides 1.0 enables identification and quantification of 1.0 resulting from 1.0 Results in 1.0 Are part of 1.0 Form on 1.0 Are generated around 1.0 Include 1.0 Promote 1.0 Promote 1.0 are compared for proliferation,are compared for ALP activity 2.0 attach well after 1 day of culture 1.0 are compared for cellular compatibility,have different areas of cell attachment according to FESEM results 2.0 are used to observe cell attachment 1.0 occurs due to 1.0 features that limit current approaches 1.0 used information obtained from 1.0 enabled high precision force-displacement data 1.0 provided value 1.0 promising results obtained using pointed or spherical-tipped indenters 1.0 presents significant challenges due to high fluid content and structural anisotropy 1.0 used information obtained from 1.0 features that limit current approaches 1.0 can be considered bound or mobile 1.0 applied to investigate local mechanical behavior due to low loads and substantial displacements required for these materials 1.0 require different test parameters than traditional engineering materials due to high fluid content and structural anisotropy 1.0 provided information about 1.0 initial design for 1.0 exist for interpretation of results obtained using standard Berkovich diamond pyramid 1.0 utilized for interpretation 1.0 limitations for interpreting outcomes 1.0 Developed further, particularly in soil mechanics 1.0 Considers materials to have a bi- or multi-phasic structure with fluid flow through porous elastic regions 1.0 limitations for interpreting outcomes of force-displacement responses generated during testing 1.0 limitations for interpreting outcomes 1.0 pioneered by Field more than 25 years ago 1.0 cause pile-up and sinking-in of impression 1.0 limited due to issues related to 1.0 Undergoes 1.0 involves 1.0 is active 1.0 is active 1.0 involves 1.0 involves 1.0 involves 1.0 incorporates enough material 1.0 is initially quiescent 1.0 prevents further nucleation 1.0 can nucleate a new layer 1.0 found in 1.0 constitute 1.0 results from 1.0 responds to through chiral twist 1.0 for 1.0 for 1.0 and 1.0 may ultimately lead to 1.0 depend on 1.0 strongly depend on 1.0 do not 1.0 depend on 1.0 grow into 1.0 Is 1.0 Is 1.0 Is 1.0 Is 1.0 Is 1.0 Catches 1.0 obtained through 1.0 obtained through 1.0 expand across the interfaces 1.0 can be observed using various microscopy techniques 1.0 is highly conformal so that adjacent ts fit perfectly together 1.0 facilitates 1.0 facilitates 1.0 maximize 1.0 have 1.0 have 1.0 exist in 1.0 have 1.0 indicate highly uniform sizes 1.0 have 1.0 follow 1.0 share similar variations in 1.0 have 1.0 drive energetic stabilization 1.0 exchange energy and materials 1.0 absorb energy 1.0 draws inspiration from 1.0 dissipate energy efficiently for improved toughness and self-recovery properties 1.0 further sustains the hierarchical structure and enhances stress transfer 1.0 consists of 1.0 prepared via simultaneous host-guest polymerization and ionic coordination triggered by 1.0 consists of 1.0 has 1.0 inspires 1.0 has 1.0 Application 1.0 Application 1.0 Application 1.0 Application 1.0 Application 1.0 Application 1.0 Application 1.0 forms on the surface and is relatively incompressible compared to the interior 1.0 buckle in one direction 1.0 due to saturation with sticker molecules 1.0 forms as a large piece tears off from the bulk 1.0 may stick in that position to form a permanent tube structure 1.0 reached when bundle fluctuations are not great enough to result in additional sticking events 1.0 is not observed 1.0 is locked-in due to networking of bundles 1.0 causes 1.0 contains 1.0 Is varied in proportion to 1.0 Have 1.0 Have 1.0 Have 1.0 Have 1.0 Have 1.0 Exhibit 1.0 same as,same as,same as,same as,same as,same as,same as,same as,same as,same as,same as,same as,same as,same as,same as,same as 16.0 investigated self-cleaning efficiency 1.0 conducted on 1.0 inspired by 1.0 exhibited after 1.0 consists of 1.0 forms through 1.0 consists of 1.0 fibronectin facilitates cell adhesion and migration while laminins form a structural barrier and interact with other extracellular matrix proteins 1.0 forms 1.0 separates from underlying connective tissue 1.0 consists of 1.0 was solved through a simple dip coating method 1.0 conducted on 1.0 exhibited after 1.0 exhibited after 1.0 imparts 1.0 enables 1.0 reliance on 1.0 are 1.0 contain 1.0 involves designing and fabricating at the molecular scale 1.0 involves 1.0 allows for 1.0 allows for 1.0 allows for producing particles with 1.0 is related to 1.0 Resulted in 1.0 biomedical application 1.0 during fabrication requires 1.0 technique 1.0 technique 1.0 strategy 1.0 affects 1.0 influenced by 1.0 is controlled by 1.0 conformally covers 1.0 reacts with 1.0 are influenced by 1.0 contain 1.0 allow for 1.0 allow for 1.0 reveal 1.0 reveal 1.0 facilitate 1.0 Facilitate 1.0 May lead to 1.0 Does not account for 1.0 May lead to 1.0 Increase 1.0 utilize 1.0 contains 1.0 establish 1.0 provides opportunity for direct comparison 1.0 allow for 1.0 exhibit 1.0 exhibit without short-circuiting 1.0 The larger spatial resolution of SAM and PRS compared to SR-nanoCT may limit one-to-one comparison due to parameter maps representing average values integrated over several sublamellae, resulting in a blurring effect. 1.0 exhibit 1.0 have 1.0 have 1.0 offer potential applications in 1.0 interact with 1.0 cause 1.0 exhibits distinct mechanical properties compared to 1.0 diameter 1.0 affects measured properties 1.0 during testing 1.0 during testing 1.0 probes 1.0 can be fabricated through 1.0 can have developed stresses measured through 1.0 can be utilized for 1.0 applies to 1.0 is found to be independent of structural hierarchy 1.0 allows for nanomechanical indentation 1.0 is measured as the fibril is compressed 1.0 are constructed based on Aβ amyloid fibrils 1.0 enables high-resolution images 1.0 Involved in 1.0 prepared through 1.0 applied to,results in better responses to bodily fluids for 2.0 results in enhanced mechanical properties such as 1.0 as evidenced by an exponential increase in mechanical and biomedical properties for 1.0 have been found to be most effective in refining grain boundaries for 1.0 Involved in 1.0 are 1.0 is a component of 1.0 are components of 1.0 are 1.0 results in 1.0 results in 1.0 followed by 1.0 crucial for shape- and enantio-selective separations 1.0 followed by 1.0 delivers 1.0 Reaches 1.0 Reaches 1.0 occurs 1.0 is evaluated through 1.0 utilizes 1.0 utilizes 1.0 Analyzers are used with CPL. 1.0 CPL was used for data collection at Leica DM RXA2 microscope. 1.0 Crossed polarizers are used with CPL. 1.0 Scattering patterns are used for data analysis. 1.0 The scattering vector is determined by scattering patterns. 1.0 The scattering vector is related to the scattering cross-section. 1.0 The SAXS/WAXS technique was used for data collection at Leica DM RXA2 microscope. 1.0 Play a critical role in 1.0 Ultimate effect on 1.0 Ultimate effect on 1.0 Ultimate effect on 1.0 Phosphorylate 1.0 Bind and bundle 1.0 Decipher connectivity between complex hierarchical architecture and associated cellular/tissue response for 1.0 Modulate the activity of 1.0 Modulate the activity of 1.0 Ultimate effect on 1.0 Blocks the ATPase activity of 1.0 Necessary for 1.0 Compare 1.0 Respond to 1.0 support 1.0 study of mechanical properties of cells such as 1.0 study of mechanical properties of cells such as 1.0 understanding how cells carry out 1.0 study of how cells function and interact through 1.0 differs as it describes external force required to retain atoms or molecules in initial positions for 1.0 is related to 1.0 is the major toughening mechanism, 1.0 suggests that microcracking is a significant contributor to 1.0 displays higher values at 8 and 12 weeks post-operation 1.0 displays higher values at 8 and 12 weeks post-operation 1.0 exists at both ends 1.0 degrades more rapidly than 1.0 in a variety of applications 1.0 to create scaffolds,to create anti-reflective surfaces,to create microfluidic channels,to create surfaces that repel ice 4.0 through a combination 1.0 have 1.0 a major advancement 1.0 such as 1.0 Reaches maximum value at critical mismatch 1.0 Has a biphasic effect on SIF 1.0 Increases with distance,Decreases with lateral mismatch 2.0 Causes stress amplification 1.0 Causes stress shielding 1.0 Experience mutual stress shielding 1.0 forms part of 1.0 promotes through release of magnesium ions 1.0 composed of 1.0 form 1.0 contain healing agents 1.0 occurs across 1.0 occurs across 1.0 used 1.0 performed 1.0 to number of connected nodes 1.0 provides insight into connectivity and cliquishness 1.0 ratio of number of triangles 1.0 correspond to particles 1.0 held together by evaporated polymer solutions 1.0 composed of floating micro- and nanops and bubbles 1.0 driven by 1.0 give rise to 1.0 formed by aerodynamic interactions 1.0 where aggregates interact via media and fundamental forces simultaneously 1.0 encompass 1.0 Subfield of 1.0 defined based on 1.0 as aspect ratio increases 1.0 is 1.0 as aspect ratio increases 1.0 relative direction of far field tensile stress to global cartesian coordinate axis is applied 1.0 relative positions and orientations of hard particles are correlated via transformation 1.0 hard particles are assumed to be rigid 1.0 hard particles are embedded into soft matrix 1.0 soft matrix is a type of organic biopolymer 1.0 Contains 1.0 Provides 1.0 Consists of 1.0 Creates 1.0 Creates 1.0 Renaming for consistency and clarity 1.0 consist of 1.0 decreases 1.0 encapsulates 1.0 evaluated as candidate nanoplatforms,evaluated as candidate nanoplatforms 2.0 exhibits dose-dependent anti-tumour activity 1.0 provides,provides 2.0 synthesizes,synthesizes 2.0 gentle indentation of 1.0 calibration through repeated contact mode indentation 1.0 kept within elastic range during loading-unloading 1.0 measurement using thermal noise method 1.0 Have 1.0 Have 1.0 Are related to 1.0 is added to 1.0 results in lower 1.0 improves 1.0 limited by 1.0 assembled in 1.0 typical for 1.0 with sizes between 1.0 with diameters ranging from 1.0 were smaller and sparsely distributed due to 1.0 were smaller and sparsely distributed due to 1.0 caused by 1.0 Exhibit 1.0 Maintain 1.0 Employ 1.0 Obtained through 1.0 Exhibit 1.0 Introduce 1.0 Exhibit 1.0 Alternative to,Superior 2.0 composed of 1.0 have 1.0 composed of 1.0 protect 1.0 are 1.0 higher microporosity 1.0 actual rate in vivo could also be accelerated at similar levels 1.0 best performance found 1.0 more favorable distribution of porosity and pore size due to larger numbers of micropores 1.0 exhibits superior nanoporosity in the range of 100-400nm 1.0 have controllable 1.0 combined with 1.0 Flat Smooth Surface does not have Melting Traces. 1.0 Flat Smooth Surface does not have Micro-Pit Structure. 1.0 Flat Smooth Surface does not have Nanotube Structures. 1.0 Flat Smooth Surface does not have Sharp Edges. 1.0 first level of 1.0 Uniform Nanotube Structures do not have Melting Traces. 1.0 Uniform Nanotube Structures do not have Micro-Pit Structure. 1.0 Uniform Nanotube Structures are a type of Nanotube Structures. 1.0 Uniform Nanotube Structures do not have Sharp Edges. 1.0 are composed of 1.0 are oriented relative to 1.0 is 1.0 affects 1.0 contains 1.0 contains 1.0 is 1.0 contains 1.0 have potential for controlling 1.0 are created through 1.0 exhibits wet tolerance after simple deposition of 1.0 is produced by weaving 1.0 Provide 1.0 Produce 1.0 Is related to 1.0 Is related to 1.0 Forms 1.0 Has 1.0 Is related to 1.0 Has 1.0 Is related to 1.0 Does not have 1.0 enhanced through introduction as reinforcing material 1.0 is 1.0 is investigated through 1.0 is investigated through 1.0 indicative of 1.0 indicative of 1.0 in 1.0 Indicates an elevated level of acid phosphate content. 1.0 Introduced 1.0 Is printed 1.0 consistent 1.0 not present 1.0 appear in 1.0 appear as 1.0 generates 1.0 generates 1.0 required for 1.0 defined by 1.0 observed after stress drop 1.0 Is a manufacturing process used for 1.0 Is a specific type of 1.0 Is a specific function of 1.0 Is a specific type of 1.0 Is a specific type of 1.0 Is a manufacturing process used for 1.0 Is a desirable characteristic of 1.0 Is a desirable characteristic of 1.0 Is a specific type of 1.0 Is a feature of 1.0 Is a type of 1.0 Is a material used for 1.0 Is a component of 1.0 Is a specific type of 1.0 Is a component of 1.0 have different elastic properties,differences in elastic properties are primarily correlated with volume fraction of nanofibrils and fiber protein elastic properties 2.0 used to capture 1.0 has 1.0 has 1.0 that can distribute tension evenly among polymer chains,in efficient energy dissipation hydrogels 2.0 end-capped 1.0 can be prevented during stretching through 1.0 creates 1.0 chains are threaded with 1.0 tension is distributed unevenly among polymer chains 1.0 can be created using 1.0 can be controlled through 1.0 can be controlled through 1.0 are incorporated 1.0 are used to fabricate 1.0 effectively enables 1.0 exhibits 1.0 Increase 1.0 Represents 1.0 Shows faster evolution velocity 1.0 Exceeds 1.0 Influences 1.0 takes into account the effects of 1.0 proposes a physically based failure model 1.0 isObservedUnder 1.0 isObservedUnder 1.0 Uses normal-tensile failure strain 1.0 Uses shear failure strain 1.0 requires,of solution viscosity, miscibility, and interfacial tension 2.0 have 1.0 of solution properties 1.0 evaluated through compressive testing 1.0 are used as 1.0 evaluated through compressive testing 1.0 performed until all samples had been collected 1.0 evaluated through compressive testing 1.0 performed until all samples had been collected 1.0 yet they are relatively simple in composition 1.0 modulated by subtle adjustments of its composition 1.0 yet a perceivable alteration 1.0 May exhibit crack propagation due to its complex microstructure and porous nature. 1.0 Exhibits a distinct yield point as a result of its unique microstructure and composition. 1.0 Has a lower elastic modulus compared to cortical bone due to its porous microstructure. 1.0 May eventually fracture due to its complex microstructure and porous nature. 1.0 Can withstand high strains due to its unique microstructure and composition. 1.0 Demonstrates nonlinear elastic behavior due to its complex microstructure and porous nature. 1.0 May undergo progressive failure due to its complex microstructure and porous nature. 1.0 formed 1.0 followed by 1.0 results in 1.0 provides 1.0 due to 1.0 is encapsulated by the immiscible oil phase at the second junction of 1.0 is injected into the central channel of 1.0 consists almost entirely of pure cellulose 1.0 adjusted during interaction with secondary cell wall 1.0 generates 1.0 forms on lower part of stems/branches 1.0 larger 1.0 with 1.0 consisting of 1.0 consisting of 1.0 observed in 1.0 observed in 1.0 could be attributed to 1.0 did not exhibit due to 1.0 did not exhibit due to 1.0 made from 1.0 Similar to 1.0 Is the Primary Source of Toughening Similar to 1.0 is smallest for 1.0 leads to plastic relaxation during loading for 1.0 is largest for 1.0 is fastest for 1.0 results in integration of 1.0 Refers to a specific method for estimating stiffness based on the geometry and properties of collagen fibrils and mineralized collagen fibrils. 1.0 Outperforms in terms of computational efficiency due to direct calculation of polarization stresses 1.0 Still requires complete microstructural information 1.0 Smart use of 1.0 Provides more accurate predictions when detailed microstructural data is not available 1.0 Provides true multiscale approaches without requiring detailed microstructural information 1.0 Can be less computationally expensive than FFT analyses due to simplifying assumptions 1.0 May introduce additional errors or approximations that need to be carefully evaluated and validated against experimental data 1.0 Allows for analytical solutions for homogenized properties 1.0 are infiltrated into at low pressures due to 1.0 describes the shape of the mineral profile at the front 1.0 refers to the degree of demineralization at the front 1.0 Used To Select Hyperparameters For 1.0 Provides More Accurate Predictions Than 1.0 Trained On 1.0 Validated On 1.0 study of how viruses interact with 1.0 potential 1.0 Should also be avoided for polishing purposes 1.0 enables controlled cell placement through selective cellularization 1.0 homogenous cellular distribution not enabled 1.0 homogenous cellular distribution not enabled 1.0 Is part of 1.0 Is made of 1.0 ensured by 1.0 uses 1.0 confers exceptional mechanical properties to 1.0 creates 1.0 impacted by 1.0 allows for 1.0 can be exploited to create more complex, native-like tubular structures 1.0 used for creating complex tubular structures 1.0 compared to 1.0 represents 1.0 agreement observed in 1.0 explained by increased flexural stiffness via higher axial Young's moduli 1.0 compared to 1.0 dominate mechanical behavior under radial tension 1.0 discrepancies observed in 1.0 higher values of Young's modulus compared to other tree-like monocots 1.0 used for comparison 1.0 involved welding a single microsphere to a rigid probe and pressing it against a fixed AFM tip while moving slowly as a whole 1.0 were used to model the deformation of the microspheres under different boundary conditions 1.0 further confirmed the high mechanical strength 1.0 using various methods such as in-situ atomic force microscopy (AFM), scanning electron microscopy (SEM), finite element (FE) simulations, and flat punch experiments 1.0 due to the presence of carbon nanotubes (CNT) and their yarn ball-like matrix structure 1.0 affected by 1.0 reveal evolution from 4 to 1 unbranched rib as relative stiffness increases and thickness decreases 1.0 convergence of separated ribs at large distances due to 1.0 evolve into a single, unbranched rib 1.0 are similar at large aspect ratios 1.0 is subjected to maximum forces 1.0 more tissue is distributed near 1.0 is almost solid 1.0 reduces the risk of 1.0 is almost solid 1.0 are the main load-bearing component 1.0 of reinforcing material is set to 40% 1.0 through evaporation 1.0 are located between 1.0 is a method for 1.0 depend on complementary factors such as 1.0 is a method for 1.0 can improve 1.0 results in 1.0 part of 1.0 Observed in 1.0 Neglects 1.0 Acts as a predetermined breaking point between 1.0 Behavior under loading conditions 1.0 Have higher energy absorption capacity than single-cell counterparts 1.0 are unique features found in nature 1.0 make them 1.0 Si is a component of LIB anodes 1.0 With 1.0 Implemented 1.0 Calculated using 1.0 Based on 1.0 Used for 1.0 With 1.0 Used 1.0 forms,affects drug release rate 2.0 affects density and mechanical properties of hydrogel networks 1.0 has 1.0 has due to hydroxyl free radicals 1.0 fixed from Step 2 1.0 minimized subject to constraints 1.0 provided 1.0 objective function 1.0 constraints 1.0 are grouped together 1.0 Explored role of hierarchy on behavior under simple compression tests 1.0 Methodology developed through optimization parameter fitting 1.0 Determining visco-elastic or poro-elastic behavior 1.0 Determining visco-elastic or poro-elastic behavior 1.0 Applied approach to investigate deformation response of cartilage tissue 1.0 Methodology developed through optimization parameter fitting 1.0 Dependence highlights importance of considering factor when analyzing materials with bi- or multi-phasic structures 1.0 Accurately represents behavior through a combination of springs and dashpots 1.0 has a value of 1.0 has a value of 1.0 are_located_within relation 1.0 is_modeled_as relation 1.0 isComposedOf 1.0 haveLowerStrengthAndYoungsModulusComparedToDrySamples 1.0 undergoes failure process,is influenced by 2.0 is a structural component of,is influenced by 2.0 correlated with function and structure 1.0 allow collagenous tissues to overcome the conflict between stiffness and extensibility 1.0 is labeled with 1.0 interacts with 1.0 is a measure of 1.0 chemical composition of 1.0 using simulations to develop a generalized model for tensile stiffness 1.0 extends 1.0 maintained through electrode layers 1.0 is performed through controlling 1.0 are expressed purely by 1.0 involves 1.0 achieves 1.0 with 1.0 realizes functionalities in 1.0 aggregate between 1.0 have 1.0 have 1.0 have 1.0 have 1.0 show 1.0 after 1.0 have 1.0 but without GO 1.0 compared to 1.0 compared to 1.0 compared to 1.0 excluded from 1.0 observed 1.0 provides 1.0 focuses on implementing 1.0 greatly increases 1.0 controls 1.0 partially replicates 1.0 partially replicates 1.0 lacks 1.0 enables 1.0 lacks 1.0 generates 1.0 has 1.0 produces 1.0 generates 1.0 has 1.0 lacks 1.0 is 1.0 used to examine crystal structure 1.0 used to examine crystal structure 1.0 Increases 1.0 Exhibits 1.0 Displays 1.0 Exhibits 1.0 Subsides 1.0 Appears 1.0 Exhibits 1.0 With 1.0 resulting in 1.0 are able to proliferate, spread, and differentiate osteogenically without the need for any osteoinductive supplements 1.0 utilizing 1.0 resulting minerals include 1.0 resulting minerals include 1.0 inhibitor for promoting 1.0 closely mimics 1.0 resulting minerals include 1.0 is 1.0 results in improved 1.0 have 1.0 are improved by 1.0 react with carboxylic acid groups during esterification 1.0 inspiration for chemical cross-linking approach 1.0 have carboxylic acid groups on surface 1.0 formed during esterification 1.0 chemical reaction for creating covalent bonds 1.0 resulting from esterification 1.0 exhibited 1.0 Demonstrated in 1.0 Coexists with 1.0 tendency 1.0 is 1.0 is 1.0 is 1.0 can be spun into 1.0 is 1.0 can be produced through 1.0 contains 1.0 is 1.0 can be spun into 1.0 is mixed with 1.0 has compared to 1.0 Has highest value of 1.0 Optimizes for enhancing fracture 1.0 influences 1.0 does not rely solely on 1.0 found in natural ECMs 1.0 exhibits highest degree of osteogenesis 1.0 impairs 1.0 has great potential for 1.0 has great potential for 1.0 enhance toughness through 1.0 is greater than 1.0 Common Disadvantage 1.0 Utilizes Except for Binder 1.0 Higher Processing Speed 1.0 Bonds 1.0 Advantage Over BJ Technology 1.0 Advantage Over BJ Technology 1.0 Advantage Over BJ Technology 1.0 are less important for biomimetics compared to 1.0 introduced in 1.0 provides a model with 1.0 causes 1.0 caused by 1.0 Is a technique for 1.0 Is a type of 1.0 applications of 1.0 contains 1.0 applications of 1.0 applications of 1.0 applications of 1.0 applications of 1.0 applications of 1.0 applications of 1.0 contains 1.0 applications of 1.0 detect 1.0 connects to 1.0 applications of 1.0 Different from 1.0 Generated at macroscale 1.0 Impeded 1.0 Captured without local-scale hardening 1.0 Surrounded 1.0 Observed 1.0 Observed 1.0 generates 1.0 are used as nucleation sites for 1.0 results in formation of 1.0 does not contribute to formation of 1.0 are used for comparing 1.0 are used for comparing 1.0 is related to 1.0 is related to 1.0 is related to 1.0 is based on 1.0 are used for meeting 1.0 are used for combining 1.0 is related to 1.0 is related to 1.0 is based on 1.0 are used for meeting 1.0 are used for combining 1.0 covered with 1.0 alloyed with 1.0 alloyed with 1.0 which can occur due to 1.0 used for 1.0 resembles 1.0 resemble 1.0 resemble 1.0 resemble 1.0 resemble 1.0 is partially accumulated in elastic energy or dissipated due to crack surface formation or plastic deformation 1.0 occurs on the order of 150-200% 1.0 applied to investigate behavior under remote loading 1.0 exhibit 1.0 exhibit 1.0 μCT can also be used to analyze porosities during freeze-casting. 1.0 between 1.0 sum of 1.0 sum of 1.0 presented for 1.0 expresses 1.0 usedFor 1.0 consistsOf 1.0 contains 1.0 usedFor 1.0 oscillated at 1.0 performed on 1.0 performed on 1.0 performed on 1.0 performed on 1.0 confirms 1.0 confirms 1.0 decreases as frequency increases from 1.0 offers potential for 1.0 contains 1.0 contains 1.0 allows for programming structure 1.0 enables the creation of complex multidimensional structures 1.0 facilitated by electrostatic interactions 1.0 have been found to be most effective in refining grain boundaries for 1.0 have been found to be most effective in refining grain boundaries for 1.0 used as biomaterials through 1.0 has demonstrated improved mechanical properties after 1.0 Subclass relationship 1.0 Subclass relationship 1.0 Represent 1.0 contains 1.0 leads to 1.0 leads to 1.0 leads to 1.0 Living organisms that belong to the domain Bacteria. 1.0 Microscope used to visualize biological samples labeled with fluorescent dyes. 1.0 Dyes that emit light when exposed to certain wavelengths of light. 1.0 Central value or point of a set of numbers. 1.0 Statistical method used to compare means of multiple groups. 1.0 Distinct components or substances within biological samples. 1.0 Instrument used to measure the absorption or transmission of light by a sample. 1.0 Measure of how spread out a set of numbers is around its mean. 1.0 Use of high-frequency sound waves to agitate or break down materials. 1.0 Act of making something visible or apparent. 1.0 Act of collecting samples at regular intervals of one week. 1.0 induces inertial cavitation 1.0 includes 1 have higher tensile moduli and strengths than 1.0 outperform both bare SWCNT bundles and noncovalent crosslinked CNT bundles in all aspects of modulus, strength, and ductility 1.0 is necessary for 1.0 produced using a power density of 25 mW 1.0 produced using a power density of 50 mW 1.0 with spatial periods between 0.4 μm and 1 μm 1.0 used to rapidly fabricate hierarchical micro and nano structures on 1.0 with spatial periods of ~25 μm 1.0 can be categorized based on shape and orientation as 1.0 specifically used 1.0 used for 1.0 used for 1.0 used to describe structure and properties of 1.0 used to create 1.0 constituent proteins of 1.0 enhancement of 1.0 similarity to 1.0 used to describe structure and properties of 1.0 extends beyond classical polymer theory during 1.0 used to create 1.0 subtype of 1.0 constituent proteins of 1.0 offer immense potential for implantable 1.0 have conformal contact with 1.0 comparison 1.0 cross-linked by incorporation 1.0 surpasses abrasion-resistance 1.0 comparable to 1.0 enhances 1.0 correlates well with increased 1.0 correlates well with increased 1.0 correlates well with increased 1.0 perform 1.0 enhance 1.0 featuring 1.0 enhance 1.0 improve 1.0 improve 1.0 increased 1.0 decreased 1.0 only ~32 nm 1.0 higher 1.0 are held together in 1.0 with some pre-stress from 1.0 demonstrate the potential to 1.0 indicates 1.0 of 1.0 of 1.0 combine 1.0 or another strategy 1.0 with an angle of 1.0 are made using 1.0 Major disadvantage 1.0 Major disadvantage 1.0 Major disadvantage 1.0 play a mechanical role 1.0 combination of macroscale VP- and micrometerscale crossover VolMEW fenestrations offers spatial control along length of tube 1.0 offers positional accuracy to introduce with relative orientation and modify position in relation to MEW mesh 1.0 allows for analogous structures found in vessels larger than 100 um in diameter 1.0 Shows 1.0 Consists of 1.0 Consists of 1.0 Approaches as aspect ratio increases (derivation using principle of minimum complementary energy) 1.0 Lower bound expression (derived using assumed strain and stress fields),Upper bound expression (derived using assumed strain and stress fields) 2.0 computes dissimilarity between,has higher value for mismatched flow field types,reduces with relaxed matching constraints,may affect classification accuracy for large perturbation amplitudes 4.0 produces a matrix of pairwise distances for all pairs of frames in the set 1.0 identifies similar features between 1.0 identifies similar features between 1.0 has small value indicating similarity in their topologies 1.0 grown on 1.0 represents elastic energy stored in the material prior to crack initiation 1.0 control 1.0 control 1.0 induce 1.0 induce 1.0 can significantly reduce the risk of 1.0 can significantly reduce the risk of 1.0 can significantly reduce the risk of 1.0 based on 1.0 is formed by 1.0 are used for intravenous injection 1.0 are a type of 1.0 contributes to 1.0 has 1.0 contributes to 1.0 resultsFrom 1.0 increasesSignificantlyWith 1.0 Pathogens are microorganisms that can cause diseases. 1.0 Can be combined with to create complex 3D nanopatterns on biopolymer materials through a process called ion beam lithography. 1.0 Facilitate a complete photonic bandgap due to the removal of silk through dissolving it in an organic solvent. 1.0 Can be obtained by choosing the initial templates to produce different structural color materials. 1.0 Included 1.0 Composed of 1.0 Achieved compared to real microstructure 1.0 Still generates hardening and large deformations 1.0 Introduced by shifting 1.0 form 1.0 Based on measurements from 1.0 Play a role in strengthening nacre 1.0 Compared to 1.0 Supported by 1.0 Comparison of wound closure rates at days 7 and 14 1.0 Promotion at days 7 and 14 1.0 Promotion at days 7 and 14 1.0 Supported by 1.0 slight difference 1.0 affects 1.0 applies to 1.0 must be much smaller than,typically 2.0 Essential for crystal nucleation and growth 1.0 Reveals complex fibrous structure within 1.0 Does not display any structural features similar to the 2D image 1.0 Confirmed 1.0 Interacts preferentially with sodium phosphotungstate 1.0 is associated with 1.0 is associated with 1.0 regulates 1.0 has 1.0 penetrates 1.0 Causal relationship 1.0 Initial value,Final value 2.0 Filtration is a technique used to remove impurities and create ceramic layers. 1.0 Hydrogel casting is a process that involves creating ceramic layers by embedding ceramic particles into a hydrogel matrix. 1.0 Increasing interconnectivity of cell walls can result in improved cellular pore morphologies during hydrogel casting. 1.0 The nature of the solvent can affect p morphologies during freeze-casting. 1.0 μCT can be used to analyze strut conuration during freeze-casting. 1.0 promote 1.0 produces 1.0 produces 1.0 results in 1.0 involves 1.0 results in 1.0 results in 1.0 involves 1.0 allows for 1.0 allows for 1.0 form within 1.0 affects 1.0 functions during swimming 1.0 researches 1.0 researches 1.0 researches 1.0 researches 1.0 researches 1.0 researches 1.0 researches 1.0 researches 1.0 Exhibits 1.0 exhibit crystal imperfections that contribute to energy dissipation under high strain rates 1.0 can exist due to biomineralization processes 1.0 show significant improvements in 1.0 from hierarchy 1.0 have no appreciable increase in 1.0 have 1.0 type of 1.0 type of 1.0 are dependent on 1.0 from hierarchy 1.0 have 1.0 has higher elastic modulus than 1.0 Dependence 1.0 using 1.0 provide 1.0 have 1.0 reveals CF oriented either at 0° or 90° to the task axis 1.0 can be exfoliated through intercalation with amyloid fibrils for use in electronic devices 1.0 allows for 1.0 potential for 1.0 potential for 1.0 provides strength and stability to connective tissues through its three-stranded structure formed by collagen molecules 1.0 is a major component of connective tissues that provides support and protection to organs and structures in the human body 1.0 may have a different impact on structure and strength compared to interior residues like glycine 1.0 is a consequence of amino acid substitutions associated with severe forms of Osteogenesis Imperfecta that affects bone strength and leads to bone fragility and deformities 1.0 spontaneous reduction of 1.0 using an external electrical current 1.0 involves 1.0 involves 1.0 mechanical properties investigated under 1.0 utilizes natural resources and minimizes waste generation during production 1.0 achieved 1.0 strongly influence 1.0 often exhibit 1.0 fills 1.0 reveals weak bright signal 1.0 was quantified 1.0 is 1.0 is 1.0 difference 1.0 Observed 1.0 Approximately 3 micrometers 1.0 Encountered at 1.0 is a type of 1.0 behaves as 1.0 shows 1.0 undergoes 1.0 can adopt during 1.0 affects 1.0 Making them promising structural materials with wide application potential due to 1.0 Making them promising structural materials with wide application potential due to 1.0 Making them promising structural materials with wide application potential due to 1.0 Making them promising structural materials with wide application potential due to 1.0 Making them promising structural materials with wide application potential due to 1.0 Contribute to 1.0 affect beam path homogeneity 1.0 is an example of 1.0 is associated with 1.0 is an example of 1.0 grown through immersion in 1.0 deposited using 1.0 is attributed to 1.0 depends slightly on 1.0 shows 1.0 represent 1.0 is 1.0 reveal 1.0 is related to 1.0 depends strongly on 1.0 Alligator osteoderms exhibit a network of ridges that provide additional protection. 1.0 Alligator osteoderms may radiate outward from a central point or source, providing additional protection. 1.0 Small round pits are sometimes present on alligator osteoderms and may serve a protective function. 1.0 shows 1.0 shows 1.0 results in 1.0 shows 1.0 shows 1.0 is a part of 1.0 exhibits 1.0 has 1.0 involves 1.0 is adaptable to 1.0 is used with 1.0 utilizes 1.0 can be used with 1.0 can lead to 1.0 can lead to 1.0 can lead to 1.0 involves 1.0 BS have adjacent layers (BS4) 1.0 BS contain chitin bundles (BS13) 1.0 BS have a helicoidal architecture (BS5) 1.0 BS have higher angles to delamination (BS7) 1.0 BS have a honeycomb structure (BS12) 1.0 BS exhibit in-plane isotropy (BS3) 1.0 BS have lamellae or layers resembling plywood (BS2) 1.0 BS have periodic structures (BS10) 1.0 BS have sheetlike helicoidal layers (BS9) 1.0 BS have spheroidal contours (BS11) 1.0 BS consist of stacked and rotated fibrous microstructures (BS1) 1.0 BS have stiffness (BS14) 1.0 BS have topographical motifs (BS8) 1.0 BS have a twist angle (BS6) 1.0 MS exhibit bouligand structures (BS) 1.0 is regulated by 1.0 generates 1.0 generates 1.0 is related to 1.0 Cohesive Zone Model (CZM) introduces Waviness 1.0 Nacreous structure introduces Waviness 1.0 Influences through morphology and dispersion quality 1.0 Influences through morphology and dispersion quality 1.0 does not provide 1.0 used for 1.0 affected by 1.0 affected by 1.0 affected by 1.0 affected by 1.0 affected by 1.0 critical for 1.0 likely to have 1.0 influenced by 1.0 recedes from 1.0 recedes from 1.0 remains in the elastic state during 1.0 is contributed by 1.0 occurs when 1.0 during 1.0 results in 1.0 results in 1.0 propagation of rupture via 1.0 provides tough behavior from outer side 1.0 provides ductility in inner layers 1.0 investigated role in nanoinindentation at multiple sites using experiments and numerical modeling 1.0 regarding 1.0 regarding 1.0 based on 1.0 with 1.0 contains 1.0 is used for creating 1.0 due to 1.0 exhibit remarkable resistance against 1.0 have 1.0 mammals 1.0 reptiles 1.0 historical_use 1.0 material 1.0 also consists of cell surfaces covered with 1.0 is further subdivided into 1.0 involves form and curvature of whole organs such as leaves 1.0 can be categorized based on shape and orientation as 1.0 can be categorized based on shape and orientation as 1.0 consists of cell surfaces covered with 1.0 analogous to 1.0 measured 1.0 measured 1.0 measured 1.0 to 1.0 investigation of 1.0 subject 1.0 can be blended 1.0 can have ultrahigh permeability 1.0 can be 1.0 can have ultrahigh permeability 1.0 can be blended 1.0 can have 1.0 can be blended 1.0 can be well-dispersed 1.0 can have potential applications 1.0 can produce 1.0 can mimic natural tissue environments 1.0 combine 1.0 can control in-vitro mineralization 1.0 can have potential applications 1.0 can have potential applications 1.0 can minimize 1.0 can fill 1.0 can have potential applications 1.0 consist of 1.0 mature through 1.0 result in harder and stiffer leading edges,result in softer and more flexible trailing edges 2.0 consist of 1.0 appear during mineralization 1.0 present at tooth leading edge 1.0 formed from ferrihydrite nanocrystals 1.0 consist of 1.0 formed from ferrihydrite nanocrystals 1.0 formed from ferrihydrite nanocrystals 1.0 formed from ferrihydrite nanocrystals 1.0 consist of 1.0 control mineral nucleation and crystal thickness 1.0 present at tooth trailing edge 1.0 Undergoes 1.0 Cannot produce at reduced costs 1.0 Issues 1.0 Issues 1.0 Generate 1.0 Overcomes 1.0 Overcomes 1.0 Opens up 1.0 Overcomes 1.0 Offers 1.0 Overcomes 1.0 May require 1.0 Resulted in 1.0 Resulted in 1.0 Resulted in 1.0 Resulted in 1.0 Offers 1.0 Resulted in 1.0 revealed by 1.0 Offer 1.0 Having 1.0 Showing Higher Expression Than 1.0 Having 1.0 provides an overview of 1.0 samples undergo 1.0 samples undergo 1.0 used for study 1.0 used for study 1.0 predominant origin other than piezoelectricity 1.0 generate a flow of ions against 1.0 filled with charged fluids 1.0 believed to occur 1.0 samples undergo 1.0 are located between 1.0 are inspired by 1.0 May be broken down by enzymes produced by the body. 1.0 Determine mechanical strength and degradation rate. 1.0 Provide Complementary Information 1.0 Avoids Limitations and Artifacts Associated with 1.0 Provides 3D Analysis 1.0 Correspond to Cross-Sections Along Orthogonal Planes 1.0 added as wrinkled layer through electrospinning 1.0 observed when layers are oriented 1.0 have 1.0 produced for 1.0 applied to 1.0 is combined with 1.0 occurs in 1.0 is induced by 1.0 occurs in 1.0 is a phenomenon where 1.0 is used for creating 1.0 expression promoted by insoluble composites 1.0 demonstrated by insoluble composites 1.0 combined with other functional substances 1.0 imparted by carbon materials derived from hierarchical structure 1.0 expression promoted by insoluble composites 1.0 biomedical application 1.0 involves 1.0 involves 1.0 involves 1.0 addresses limitations of previous methods that only considered simple static loading conditions 1.0 considers 1.0 affects tissue regeneration 1.0 is a type of,is a subtype of 2.0 is a component of 1.0 is formed via 1.0 is a component of,is formed via passive diffusion 2.0 is responsible for 1.0 provide 1.0 provide 1.0 facilitate 1.0 enhance 1.0 is an example of 1.0 promote 1.0 typical for 1.0 observed 1.0 extended to 1.0 began at 1.0 Have Distinct Values Along Principal Axes 1.0 Have Distinct Values Along Principal Axes 1.0 Can Be Calculated For 1.0 Can Be Calculated For 1.0 Are Based On Algebraic Relationships Between Elastic Constants 1.0 consists of 1.0 had PAN nanofibers introduced as reinforcing material 1.0 demonstrated promising performance for 1.0 had higher 1.0 Produces unique silk fibers called byssus threads that play a crucial role in anchoring and preventing dislodgement 1.0 Has 1.0 Is kept in 1.0 Enables 1.0 has orientation 1.0 has alignment 1.0 Are 1.0 Are 1.0 Are 1.0 Are 1.0 Include 1.0 Depends on 1.0 Produces 1.0 Synthesizes via 1.0 Allows for 1.0 are incorporated into,obtain desired mechanical enhancement or added functionalities 2.0 result in uncontrolled aggregation 1.0 utilize 1.0 transform 1.0 exhibit through gradual resistance changes 1.0 exhibit through abrupt resistance changes 1.0 have 1.0 have 1.0 exhibit 1.0 have 1.0 can be tuned for multilevel data storage 1.0 have shown promising results for data storage applications 1.0 have 1.0 Occur at 1.0 includes term for 1.0 isA relationship 1.0 (l) may be considered as for gradient damage theory simulations of fracture 1.0 Alg hydrogel is a specific type of electrically conductive biopolymer-based nanocomposite hydrogel 1.0 dual-enzyme-loaded multifunctional magnetic hydrogel system is a type of electrically conductive biopolymer-based nanocomposite hydrogel 1.0 electrically conductive biopolymer-based nanocomposite hydrogels are a type of conductive biopolymer hydrogels 1.0 Fe5O4 nanoparticles are a component of electrically conductive biopolymer-based nanocomposite hydrogels 1.0 hyaluronic acid is a component of electrically conductive biopolymer-based nanocomposite hydrogels 1.0 is 1.0 necessary 1.0 necessary 1.0 shows 1.0 based on 1.0 shows beyond 1.0 fails to accurately predict mechanical behavior under 1.0 has 1.0 uses 1.0 Subject 1.0 Used for 1.0 Shows 1.0 Correlates with 1.0 Forms 1.0 Used for 1.0 Shows 1.0 face challenges when subjected to 1.0 under complex loading conditions 1.0 in those directions 1.0 such as 1.0 affect 1.0 ensure 1.0 have 1.0 have 1.0 provide 1.0 to nanocomposite properties 1.0 in nanocomposites and all-cellulose materials 1.0 although systematic coarse-graining approaches are being developed to address this issue 1.0 to favor hydrogen bonding over van der Waals interactions 1.0 greatly influences the mechanical performance of systems 1.0 preserves 1.0 absent in 1.0 appear in 1.0 absent in 1.0 cause 1.0 correspond to 1.0 absent in 1.0 interferes with 1.0 is immersed in 1.0 DRTMCs have inferior oxidation resistance due to B2O3 evaporation 1.0 DRTMCs cause strengthDuctilityTradeOff due to excess ceramic reinforcements 1.0 are evaluated for cellular compatibility,are evaluated for proliferation,are evaluated for ALP activity 3.0 attach well after 7 days of culture 1.0 form after 7 days of culture 1.0 enhance due to HA nanostructure coating 1.0 are used to observe cell attachment,are used to observe larger areas of cell attachment 2.0 provide dense population of cellular binding sites 1.0 are laid down by MG63 cells after 3 days of culture 1.0 are exhibited compared to titanate nanowire matrix 1.0 are exhibited compared to titanate nanowire matrix 1.0 enhance due to HA nanostructure coating 1.0 are laid down by MG63 cells after 3 days of culture 1.0 Facilitates the highest levels 1.0 Results in improved cell ingrowth 1.0 endows with compliance and assemblability,can be fixed by increasing the density of borate ester bonds after spatial adjustment by stretching and assembly,curing process involves increasing the density of borate ester bonds to fix the hydrogel's shape after spatial adjustment 3.0 involved in 1.0 affects during swelling 1.0 must be removed for 1.0 Are Possessed By 1.0 Result From 1.0 Are Produced Through 1.0 Is a Part of 1.0 Is a Part of 1.0 strengthen 1.0 strengthen 1.0 of HA/TCP scaffolds during sintering is affected by 1.0 affects 1.0 of HA/TCP scaffolds during sintering is affected by 1.0 during sintering is affected by 1.0 combines 1.0 challenges remaining 1.0 enables 1.0 enables 1.0 challenges remaining 1.0 enables 1.0 enables 1.0 dampens 1.0 enables 1.0 generates 1.0 generates 1.0 challenges remaining 1.0 integrated cable anchoring loops 1.0 forms 1.0 enables 1.0 leverages 1.0 force routing 1.0 approach for 1.0 forms 1.0 enables 1.0 enables 1.0 failure modes 1.0 enables 1.0 challenges remaining 1.0 for 1.0 was implanted 1.0 was left 1.0 was implanted 1.0 were created 1.0 exposure 1.0 were harvested 1.0 had 1.0 forms hydrophobic surfaces due to coating with denatured zein 1.0 forms stable dispersion at optimized zein concentration 1.0 strongly interacts with due to coating with denatured zein,has opposite charges with,has opposite charges with 3.0 carries positive charges overall due to addition of E-Z15 with positive charges 1.0 expressed at an earlier stage 1.0 mediated the growth of HAp crystals on its surface 1.0 exhibited bactericidal properties 1.0 Cohesive Zone Model (CZM) utilizes Tie constraints 1.0 CZM employs Trapezoidal cohesive law with hardening 1.0 Cohesive Zone Model (CZM) utilizes Zero thickness cohesive elements 1.0 Interfacial adhesive layers are employed by Cohesive Zone Model (CZM) 1.0 Interfacial adhesive layers are applied to Tie constraints 1.0 contains 1.0 results from 1.0 results from 1.0 determines 1.0 lead to 1.0 includes 1.0 Integrated with 1.0 Applied to 1.0 Can be created using 1.0 Is summarized as 1.0 Is a notable resource for designing 1.0 Has direct applications in 1.0 Is a notable resource for designing 1.0 Is incorporated into 1.0 Is a notable resource for designing 1.0 Refers to 1.0 Accelerates 1.0 lower compressive stiffness 1.0 11.76 wt% 1.0 displays 1.0 results from rapid impact 1.0 displays 1.0 displays 1.0 stretch between cracks 1.0 suggested 1.0 potentially form threads between cracks 1.0 form within individual printed filaments 1.0 results from bridging of microscopic NMF bundles 1.0 disintegrate within each NMF 1.0 results in rupture along transverse orientation 1.0 more efficient than 1.0 advantageous due to 1.0 provides 1.0 provides 1.0 filled with 1.0 improves structural efficiency 1.0 amplify and transfer tactile stimuli efficiently to 1.0 Measured during 1.0 Is 1.0 Result 1.0 Feature 1.0 Result 1.0 Feature 1.0 Result 1.0 Feature 1.0 Facilitated by 1.0 Target 1.0 Involves 1.0 Using 1.0 Result 1.0 Studied through 1.0 As 1.0 Due to 1.0 Due to 1.0 Used while maintaining 1.0 To provide 1.0 Through 1.0 Or 1.0 distal end of the exoskeleton 1.0 lower degree of electron density in distalExocuticle 1.0 lower degree of hydrogen bonding in distalExocuticle 1.0 similar to 1.0 confirms 1.0 confirms 1.0 added to 1.0 template 1.0 method for fabrication 1.0 method for fabrication 1.0 particle morphology 1.0 additive 1.0 additive 1.0 method for fabrication 1.0 used as biological source for synthesizing 1.0 have slower rate than native fibrin gels 1.0 regulates based on copolymer concentration 1.0 are composed of 1.0 allow 1.0 are composed of 1.0 are composed of 1.0 have 1.0 are present in 1.0 observed 1.0 observed 1.0