Bone is a highly hierarchical complex structure that consists of organic and mineral components represented by collagen molecules (CM) and hydroxyapatite crystals (HAC), respectively. The nanostructure of bone can significantly affect its mechanical properties. There is a lack of understanding how collagen fibrils (CF) in different orientations may affect the mechanical properties of the bone. The objective of this study is to investigate the effect of interaction, orientation, and hydration on atomic models of the bone composed of collagen helix (CH) and HAC, using molecular dynamics simulations and therefrom bone-related disease origins. The results demonstrate that the mechanical properties of the bone are affected significantly by the o...
Bone has a hierarchical structure based on the mineralized fibril, an organic matrix envisaging col...
Multi-faceted deformation capabilities of Annulus Fibrosus (AF) results from an intricate mechanical...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
Bone is a highly hierarchical complex structure that consists of organic and mineral components repr...
Bone at the nanoscale consists of type I collagen and hydroxyapatite (HAP). Type I collagen and HAP ...
When looking at bone at the nanoscale, it consists of a matrix of type I collagen and hydroxyapatite...
A fundamental study of the mechanics at the molecular scale and bridging it to the continuum level t...
Bone is a hierarchical biological composite made of a mineral component (hydroxyapatite crystals) an...
Here we focus on recent advances in understanding the deformation and fracture behavior of collagen,...
Bones are responsible for body support, structure, motion, and several other functions that enable a...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
Bone, a hard biological material, possesses a combination of high stiffness and toughness, even thou...
Bone tissue is characterized by a remarkable hierarchical structure, from nano – to macro – scale. T...
Bone is a hierarchical biocomposite material in which a collagen fibril matrix self-assembled in a t...
Hard biomaterials such as bone, dentin, and nacre show remarkable mechanical performance and serve a...
Bone has a hierarchical structure based on the mineralized fibril, an organic matrix envisaging col...
Multi-faceted deformation capabilities of Annulus Fibrosus (AF) results from an intricate mechanical...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...
Bone is a highly hierarchical complex structure that consists of organic and mineral components repr...
Bone at the nanoscale consists of type I collagen and hydroxyapatite (HAP). Type I collagen and HAP ...
When looking at bone at the nanoscale, it consists of a matrix of type I collagen and hydroxyapatite...
A fundamental study of the mechanics at the molecular scale and bridging it to the continuum level t...
Bone is a hierarchical biological composite made of a mineral component (hydroxyapatite crystals) an...
Here we focus on recent advances in understanding the deformation and fracture behavior of collagen,...
Bones are responsible for body support, structure, motion, and several other functions that enable a...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
Bone, a hard biological material, possesses a combination of high stiffness and toughness, even thou...
Bone tissue is characterized by a remarkable hierarchical structure, from nano – to macro – scale. T...
Bone is a hierarchical biocomposite material in which a collagen fibril matrix self-assembled in a t...
Hard biomaterials such as bone, dentin, and nacre show remarkable mechanical performance and serve a...
Bone has a hierarchical structure based on the mineralized fibril, an organic matrix envisaging col...
Multi-faceted deformation capabilities of Annulus Fibrosus (AF) results from an intricate mechanical...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Civil and Environmental Enginee...