Bone's hierarchical arrangement of collagen and mineral generates a confluence of toughening mechanisms acting at every length scale from the molecular to the macroscopic level. Molecular defects, disease, and age alter bone structure at different levels and diminish its fracture resistance. However, the inability to isolate and quantify the influence of specific features hampers our understanding and the development of new therapies. Here, we combine in situ micromechanical testing, transmission electron microscopy and phase-field modelling to quantify intrinsic deformation and toughening at the fibrillar level and unveil the critical role of fibril orientation on crack deflection. At this level dry bone is highly anisotropic, with fractur...
International audienceHuman cortical bone fracture toughness depends on the anatomical locations und...
The increased risk for fracture with age is associated not only with reduced bone mass but also with...
Bone is a hierarchical material with multiple length scales ranging from mineralized collagen fibril...
A mechanistic understanding of bone fracture is indispensable for developing improved fracture risk ...
Cortical bone has a complex hierarchical structure which is made of mineral crystals and collagen ma...
Natural hard composites like human bone possess a combination of strength and toughness that exceeds...
Bone has a complex hierarchical microstructure that spans from the nanoscale of the collagen molecul...
From a public health perspective, developing a detailed mechanistic understanding of the well-known...
Limitations associated with current clinical fracture risk assessment tools highlight the need for i...
The structure of human cortical bone evolves over multiple length-scales from its basic constituents...
Fracture in bone is common in a wide variety of health situations, and is of particular interest to ...
The complex structure of human cortical bone evolves over multiple length-scales from its basic cons...
Bone’s biomechanical properties derive from the hierarchical arrangement of its constituents with to...
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...
The relationship between microdamage accumulation and bone fragility is not well understood. Previou...
International audienceHuman cortical bone fracture toughness depends on the anatomical locations und...
The increased risk for fracture with age is associated not only with reduced bone mass but also with...
Bone is a hierarchical material with multiple length scales ranging from mineralized collagen fibril...
A mechanistic understanding of bone fracture is indispensable for developing improved fracture risk ...
Cortical bone has a complex hierarchical structure which is made of mineral crystals and collagen ma...
Natural hard composites like human bone possess a combination of strength and toughness that exceeds...
Bone has a complex hierarchical microstructure that spans from the nanoscale of the collagen molecul...
From a public health perspective, developing a detailed mechanistic understanding of the well-known...
Limitations associated with current clinical fracture risk assessment tools highlight the need for i...
The structure of human cortical bone evolves over multiple length-scales from its basic constituents...
Fracture in bone is common in a wide variety of health situations, and is of particular interest to ...
The complex structure of human cortical bone evolves over multiple length-scales from its basic cons...
Bone’s biomechanical properties derive from the hierarchical arrangement of its constituents with to...
In this thesis, we aim to develop robust multi-level micromechanical constitutive models for human b...
The relationship between microdamage accumulation and bone fragility is not well understood. Previou...
International audienceHuman cortical bone fracture toughness depends on the anatomical locations und...
The increased risk for fracture with age is associated not only with reduced bone mass but also with...
Bone is a hierarchical material with multiple length scales ranging from mineralized collagen fibril...