In metabolic bone diseases, the alterations in fibrillar level bone-material quality affecting macroscopic mechanical competence are not well-understood quantitatively. Here, we quantify the fibrillar level deformation in cantilever bending in a mouse model for hereditary rickets (Hpr). Microfocus in-situ synchrotron small-angle X-ray scattering (SAXS) combined with cantilever bending was used to resolve nanoscale fibril strain in tensile- and compressive tissue regions separately, with quantitative backscattered scanning electron microscopy used to measure microscale mineralization. Tissue-level flexural moduli for Hpr mice were significantly (p0.05) over ages (4, 7 and 10weeks) between tensile and compressive zones. Our results indicate t...
Summary: Loading increases bone mass and strength in a site-specific manner; however, possible effec...
\u3cp\u3eAn improved understanding of how local mechanical stimuli guide the fracture healing proces...
Introduction: The Brittle IV (Brtl) mouse was developed as a knock-in model for osteogenesis imperfe...
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...
Metabolic bone disorders such as rickets are associated with altered in vivo muscular force distribu...
AbstractMetabolic bone disorders such as rickets are associated with altered in vivo muscular force ...
PhDBone diseases such as osteoporosis and rickets cause significant reduction in bone quantity and q...
As bone is used in a dynamic mechanical environment, understanding the structural origins of its tim...
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...
Bone is able to react to changing mechanical demands by adapting its internal microstructure through...
Bone is able to react to changing mechanical demands by adapting its internal microstructure through...
AbstractA serious adverse clinical effect of glucocorticoid steroid treatment is secondary osteoporo...
Summary: Loading increases bone mass and strength in a site-specific manner; however, possible effec...
\u3cp\u3eAn improved understanding of how local mechanical stimuli guide the fracture healing proces...
Introduction: The Brittle IV (Brtl) mouse was developed as a knock-in model for osteogenesis imperfe...
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...
Metabolic bone disorders such as rickets are associated with altered in vivo muscular force distribu...
AbstractMetabolic bone disorders such as rickets are associated with altered in vivo muscular force ...
PhDBone diseases such as osteoporosis and rickets cause significant reduction in bone quantity and q...
As bone is used in a dynamic mechanical environment, understanding the structural origins of its tim...
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...
Bone is able to react to changing mechanical demands by adapting its internal microstructure through...
Bone is able to react to changing mechanical demands by adapting its internal microstructure through...
AbstractA serious adverse clinical effect of glucocorticoid steroid treatment is secondary osteoporo...
Summary: Loading increases bone mass and strength in a site-specific manner; however, possible effec...
\u3cp\u3eAn improved understanding of how local mechanical stimuli guide the fracture healing proces...
Introduction: The Brittle IV (Brtl) mouse was developed as a knock-in model for osteogenesis imperfe...