Alternations of collagen and mineral at the molecular level may have a significant impact on the strength and toughness of bone. In this study, scanning transmission electron microscopy (STEM) and electron energy-loss spectroscopy (EELS) were employed to study structural and compositional changes in bone pathology at nanometer spatial resolution. Tail tendon and femoral bone of osteogenesis imperfecta murine (oim, brittle bone disease) and wild type (WT) mice were compared to reveal defects in the architecture and chemistry of the collagen and collagen-mineral composite in the oim tissue at the molecular level. There were marked differences in the substructure and organization of the collagen fibrils in the oim tail tendon; some regions hav...
Osteogenesis imperfecta is a congenital disease commonly characterized by brittle bones and caused b...
AbstractBone is a complex material with a hierarchical multi-scale organization from the molecule to...
A comparative characterization of the structure of normal and abnormal (osteoporotic) human lumbar a...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
Understanding the properties of bone is of both fundamental and clinical relevance. The basis of bon...
The investigation of the nanostructure of mineralised tissues is challenging due to the intrinsic co...
The cell sources for bone tissue engineering are required to produce bone-like materials. There have...
At its primary level (nm scale) bone is a nanocomposite consisting of a mineral (hydroxyapatite) pha...
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...
International audienceMuch debate still revolves around bone architecture, especially at the nano- a...
Understanding the properties of bone is of both fundamental and clinical relevance. The basis of bon...
Bone is a complex natural material with a complex hierarchical multiscale organization, crucial to p...
Osteogenesis imperfecta is a congenital disease commonly characterized by brittle bones and caused b...
AbstractBone is a complex material with a hierarchical multi-scale organization from the molecule to...
A comparative characterization of the structure of normal and abnormal (osteoporotic) human lumbar a...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
Understanding the properties of bone is of both fundamental and clinical relevance. The basis of bon...
The investigation of the nanostructure of mineralised tissues is challenging due to the intrinsic co...
The cell sources for bone tissue engineering are required to produce bone-like materials. There have...
At its primary level (nm scale) bone is a nanocomposite consisting of a mineral (hydroxyapatite) pha...
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...
International audienceMuch debate still revolves around bone architecture, especially at the nano- a...
Understanding the properties of bone is of both fundamental and clinical relevance. The basis of bon...
Bone is a complex natural material with a complex hierarchical multiscale organization, crucial to p...
Osteogenesis imperfecta is a congenital disease commonly characterized by brittle bones and caused b...
AbstractBone is a complex material with a hierarchical multi-scale organization from the molecule to...
A comparative characterization of the structure of normal and abnormal (osteoporotic) human lumbar a...