Bone is a living material with a complex hierarchical structure which entails exceptional mechanical properties, including high fracture toughness, specific stiffness and strength. Bone tissue is essentially composed by two phases distributed in approximately 30 70%: an organic phase (mainly type I collagen and cells) and an inorganic phase (hydroxyapatite-HA-and water). The nanostructure of bone can be represented throughout three scale levels where different repetitive structural units or building blocks are found: at the first level, col-lagen molecules are arranged in a pentameric structure where mineral crystals grow in specific sites. This primary bone structure constitutes the mineralized collagen microfibril....
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...
Trabecular bone is a flexible, lightweight bone tissue that exhibits hierarchical mechanisms of frac...
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...
Bone is a living material with a complex hierarchical structure which entails exceptional mechanical...
20International audienceThe complexity and heterogeneity of bone tissue require a multiscale modelli...
International audienceThe complexity and heterogeneity of bone tissue require a multiscale modeling ...
Bone possesses a complex hierarchical architecture with characteristic arrangement of material struc...
This dissertation aims to explore the structure-property relations of bone as a nano-composite mater...
Bone is a dynamic and hierarchical porous material whose spatial and temporal mechanical properties ...
Bone is a dynamic and hierarchical porous material whose spatial and temporal mechanical properties ...
Bone is a dynamic and hierarchical porous material whose spatial and temporal mechanical properties ...
Bone is an exceptional material that is lightweight for efficient movement but also exhibits excelle...
Bone is a dynamic and hierarchical porous material whose spatial and temporal mechanical properties ...
Bone is a dynamic and hierarchical porous material whose spatial and temporal mechanical properties ...
Bone is a living material with a complex hierarchical structure which entails exceptional mechanical...
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...
Trabecular bone is a flexible, lightweight bone tissue that exhibits hierarchical mechanisms of frac...
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...
Bone is a living material with a complex hierarchical structure which entails exceptional mechanical...
20International audienceThe complexity and heterogeneity of bone tissue require a multiscale modelli...
International audienceThe complexity and heterogeneity of bone tissue require a multiscale modeling ...
Bone possesses a complex hierarchical architecture with characteristic arrangement of material struc...
This dissertation aims to explore the structure-property relations of bone as a nano-composite mater...
Bone is a dynamic and hierarchical porous material whose spatial and temporal mechanical properties ...
Bone is a dynamic and hierarchical porous material whose spatial and temporal mechanical properties ...
Bone is a dynamic and hierarchical porous material whose spatial and temporal mechanical properties ...
Bone is an exceptional material that is lightweight for efficient movement but also exhibits excelle...
Bone is a dynamic and hierarchical porous material whose spatial and temporal mechanical properties ...
Bone is a dynamic and hierarchical porous material whose spatial and temporal mechanical properties ...
Bone is a living material with a complex hierarchical structure which entails exceptional mechanical...
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...
Trabecular bone is a flexible, lightweight bone tissue that exhibits hierarchical mechanisms of frac...
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...