Annulus Fibrosus’s (AF) multi-directional load-bearing ability manifests from Nature’s design wherein type I collagen (COL-I) dominates outer AF and type II collagen (COL-II) dominates inner AF with increase in proteoglycan and water concentration. This indicates a synergistic chemo-mechanical interplay among constituents, contributing towards AF’s load-bearing nature. Present work investigates the interplay among COL-I, COL-II and water, and their role in AF collagen fibril nanomechanics using molecular dynamics simulations. Consequently, atomistic models of collagen microfibrils are constructed for four lamellar regions from outer to inner AF, by increasing COL-II and water concentration from 0% to 75%, and 65% to 75%. Results show an inc...
Collagen is a ubiquitous protein with remarkable mechanical properties. It is highly elastic, shows ...
Both atomistic and experimental studies reveal the dependence of collagen fibril mechanics on bioche...
Bone is a hierarchical biocomposite material in which a collagen fibril matrix self-assembled in a t...
Multi-faceted deformation capabilities of Annulus Fibrosus (AF) results from an intricate mechanical...
Multi-directional deformation exhibited by annulus fibrosus (AF) is contributed by chemo-mechanical ...
Type I collagen is the predominant collagen in mature tendons and ligaments, where it gives them the...
Type I collagen is the predominant collagen in mature tendons and ligaments, where it gives them the...
The collagen molecule, which is the building block of collagen fibrils, is a triple helix of two ?1(...
Collagen is an abundant structural biopolymer in mammal vertebrates, providing structural support as...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
Collagen constitutes one-third of the human proteome, providing mechanical stability, elasticity, an...
Collagen is a ubiquitous protein with remarkable mechanical properties. It is highly elastic, shows ...
Both atomistic and experimental studies reveal the dependence of collagen fibril mechanics on bioche...
Both atomistic and experimental studies reveal the dependence of collagen fibril mechanics on bioche...
Tissue hydration is well known to influence tissue mechanics and can be tuned <i>via</i> osmotic pre...
Collagen is a ubiquitous protein with remarkable mechanical properties. It is highly elastic, shows ...
Both atomistic and experimental studies reveal the dependence of collagen fibril mechanics on bioche...
Bone is a hierarchical biocomposite material in which a collagen fibril matrix self-assembled in a t...
Multi-faceted deformation capabilities of Annulus Fibrosus (AF) results from an intricate mechanical...
Multi-directional deformation exhibited by annulus fibrosus (AF) is contributed by chemo-mechanical ...
Type I collagen is the predominant collagen in mature tendons and ligaments, where it gives them the...
Type I collagen is the predominant collagen in mature tendons and ligaments, where it gives them the...
The collagen molecule, which is the building block of collagen fibrils, is a triple helix of two ?1(...
Collagen is an abundant structural biopolymer in mammal vertebrates, providing structural support as...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
Collagen constitutes one-third of the human proteome, providing mechanical stability, elasticity, an...
Collagen is a ubiquitous protein with remarkable mechanical properties. It is highly elastic, shows ...
Both atomistic and experimental studies reveal the dependence of collagen fibril mechanics on bioche...
Both atomistic and experimental studies reveal the dependence of collagen fibril mechanics on bioche...
Tissue hydration is well known to influence tissue mechanics and can be tuned <i>via</i> osmotic pre...
Collagen is a ubiquitous protein with remarkable mechanical properties. It is highly elastic, shows ...
Both atomistic and experimental studies reveal the dependence of collagen fibril mechanics on bioche...
Bone is a hierarchical biocomposite material in which a collagen fibril matrix self-assembled in a t...