As bone is used in a dynamic mechanical environment, understanding the structural origins of its time-dependent mechanical behaviour – and the alterations in metabolic bone disease – is of interest. However, at the scale of the mineralized fibrillar matrix (nanometre-level), the nature of the strain-rate dependent mechanics is incompletely understood. Here, we investigate the fibrillar- and mineral-deformation behaviour in a murine model of Cushing’s syndrome, used to understand steroid induced osteoporosis, using synchrotron small- and wide-angle scattering/diffraction combined with in situ tensile testing at three strain rates ranging from 10-4 to 10-1 s-1. We find that the effective fibril- and mineral-modulus and fibrillar-reorientation...
Bone is an intriguingly complex material. It combines high strength, toughness and lightweight via a...
Cortical bone has a complex hierarchical structure which is made of mineral crystals and collagen ma...
Nanoscale mineralized collagen fibrils may be important determinants of whole-bone mechanical proper...
As bone is used in a dynamic mechanical environment, understanding the structural origins of its tim...
AbstractA serious adverse clinical effect of glucocorticoid steroid treatment is secondary osteoporo...
Bone diseases such as rickets and osteoporosis cause significant reduction in bone quantity and qual...
Bone diseases such as rickets and osteoporosis cause significant reduction in bone quantity and qual...
Bone diseases such as rickets and osteoporosis cause significant reduction in bone quantity and qual...
PhDBone diseases such as osteoporosis and rickets cause significant reduction in bone quantity and q...
In metabolic bone diseases, the alterations in fibrillar level bone-material quality affecting macro...
The mechanism responsible for controlling the quantity and distribution of bone material is unknown,...
AbstractBone is a complex material with a hierarchical multi-scale organization from the molecule to...
Bone is a complex material with a hierarchical multi-scale organization from the molecule to the org...
Understanding the properties of bone is of both fundamental and clinical relevance. The basis of bon...
Osteoporosis is a disease known to promote bone fragility but the effect on the mechanical propertie...
Bone is an intriguingly complex material. It combines high strength, toughness and lightweight via a...
Cortical bone has a complex hierarchical structure which is made of mineral crystals and collagen ma...
Nanoscale mineralized collagen fibrils may be important determinants of whole-bone mechanical proper...
As bone is used in a dynamic mechanical environment, understanding the structural origins of its tim...
AbstractA serious adverse clinical effect of glucocorticoid steroid treatment is secondary osteoporo...
Bone diseases such as rickets and osteoporosis cause significant reduction in bone quantity and qual...
Bone diseases such as rickets and osteoporosis cause significant reduction in bone quantity and qual...
Bone diseases such as rickets and osteoporosis cause significant reduction in bone quantity and qual...
PhDBone diseases such as osteoporosis and rickets cause significant reduction in bone quantity and q...
In metabolic bone diseases, the alterations in fibrillar level bone-material quality affecting macro...
The mechanism responsible for controlling the quantity and distribution of bone material is unknown,...
AbstractBone is a complex material with a hierarchical multi-scale organization from the molecule to...
Bone is a complex material with a hierarchical multi-scale organization from the molecule to the org...
Understanding the properties of bone is of both fundamental and clinical relevance. The basis of bon...
Osteoporosis is a disease known to promote bone fragility but the effect on the mechanical propertie...
Bone is an intriguingly complex material. It combines high strength, toughness and lightweight via a...
Cortical bone has a complex hierarchical structure which is made of mineral crystals and collagen ma...
Nanoscale mineralized collagen fibrils may be important determinants of whole-bone mechanical proper...