A mechanistic understanding of bone fracture is indispensable for developing improved fracture risk assessment in clinics. Since bone is a hierarchically structured material, gaining such knowledge requires analysis at multiple length scales. Here, the tensile response of cortical bone is characterized at the lamellar length scale under dry and hydrated conditions with the aim of investigating the influence of bone's microstructure and hydration on its microscale strength and toughness. For individual lamellae, bone strength strongly correlates with the underlying mineralized collagen fibrils orientation and shows a 2.3-fold increase compared to the macroscale. When specimen size is increased to a few lamellae, the influence of fibril orien...
The relationship between microdamage accumulation and bone fragility is not well understood. Previou...
Lamellar bone is known to be the most typical structure of cortical bone in large mammals including ...
International audienceHuman cortical bone fracture toughness depends on the anatomical locations und...
Bone features a hierarchical architecture combining antagonistic properties like toughness and stren...
Bone's hierarchical arrangement of collagen and mineral generates a confluence of toughening mechani...
Bone features a remarkable combination of toughness and strength which originates from its complex h...
Cortical bone has a complex hierarchical structure which is made of mineral crystals and collagen ma...
Bone is a tough biological material. It is generally accepted that bone’s toughness arises from its ...
Human bone is a complex biological material with up to seven levels of hierarchical structure. Due t...
Ageing societies suffer from an increasing incidence of bone fractures. Bone strength depends on the...
Microdamage would be accumulated in bone due to high-intensity training or even normal daily activit...
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...
Bone encompasses a complex arrangement of materials at different length scales, which endows it with...
The increased risk for fracture with age is associated not only with reduced bone mass but also with...
Limitations associated with current clinical fracture risk assessment tools highlight the need for i...
The relationship between microdamage accumulation and bone fragility is not well understood. Previou...
Lamellar bone is known to be the most typical structure of cortical bone in large mammals including ...
International audienceHuman cortical bone fracture toughness depends on the anatomical locations und...
Bone features a hierarchical architecture combining antagonistic properties like toughness and stren...
Bone's hierarchical arrangement of collagen and mineral generates a confluence of toughening mechani...
Bone features a remarkable combination of toughness and strength which originates from its complex h...
Cortical bone has a complex hierarchical structure which is made of mineral crystals and collagen ma...
Bone is a tough biological material. It is generally accepted that bone’s toughness arises from its ...
Human bone is a complex biological material with up to seven levels of hierarchical structure. Due t...
Ageing societies suffer from an increasing incidence of bone fractures. Bone strength depends on the...
Microdamage would be accumulated in bone due to high-intensity training or even normal daily activit...
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...
Bone encompasses a complex arrangement of materials at different length scales, which endows it with...
The increased risk for fracture with age is associated not only with reduced bone mass but also with...
Limitations associated with current clinical fracture risk assessment tools highlight the need for i...
The relationship between microdamage accumulation and bone fragility is not well understood. Previou...
Lamellar bone is known to be the most typical structure of cortical bone in large mammals including ...
International audienceHuman cortical bone fracture toughness depends on the anatomical locations und...