Bone continuously adapts to its mechanical environment by structural reorganization to maintain mechanical strength. As the adaptive capabilities of bone are portrayed in its nano- and microstructure, the existence of dark and bright osteons with contrasting preferential collagen fiber orientation (longitudinal and oblique-angled, respectively) points at a required tissue heterogeneity that contributes to the excellent fracture resistance mechanisms in bone. Dark and bright osteons provide an exceptional opportunity to deepen our understanding of how nanoscale tissue properties influence and guide fracture mechanisms at larger length scales. To this end, a comprehensive structural, compositional, and mechanical assessment is performed using...
Synergy can be achieved using multiple imaging modalities to reveal cortical bone adaptation at orga...
AbstractEven though mechanical properties depend strongly on the arrangement of collagen fibers in m...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
International audience12 Hide Figures Abstract Introduction Methods Results Discussion Acknowledgmen...
The percentage of dark, light, and intermediate osteons and their fragments, as seen in polarized li...
The contribution of the nanostructure to whole bone strength has long been debated. However the impa...
Anisotropy is one of the most peculiar aspects of cortical bone mechanics; however, its anisotropic ...
The extraordinary toughness and stiffness of bone are associated with its three main constituents - ...
International audienceWe investigate the three-dimensional (3-D) organization of mineralized collage...
The denaturation of collagen at the molecular level in bone and dentin can impact their structure an...
Bone is a highly hierarchical complex structure that consists of organic and mineral components repr...
Attachment of dissimilar materials is a major challenge because high levels of localized stress may ...
Here we focus on recent advances in understanding the deformation and fracture behavior of collagen,...
Bone is an intriguingly complex material. It combines high strength, toughness and lightweight via a...
AbstractAttachment of dissimilar materials is a major challenge because high levels of localized str...
Synergy can be achieved using multiple imaging modalities to reveal cortical bone adaptation at orga...
AbstractEven though mechanical properties depend strongly on the arrangement of collagen fibers in m...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
International audience12 Hide Figures Abstract Introduction Methods Results Discussion Acknowledgmen...
The percentage of dark, light, and intermediate osteons and their fragments, as seen in polarized li...
The contribution of the nanostructure to whole bone strength has long been debated. However the impa...
Anisotropy is one of the most peculiar aspects of cortical bone mechanics; however, its anisotropic ...
The extraordinary toughness and stiffness of bone are associated with its three main constituents - ...
International audienceWe investigate the three-dimensional (3-D) organization of mineralized collage...
The denaturation of collagen at the molecular level in bone and dentin can impact their structure an...
Bone is a highly hierarchical complex structure that consists of organic and mineral components repr...
Attachment of dissimilar materials is a major challenge because high levels of localized stress may ...
Here we focus on recent advances in understanding the deformation and fracture behavior of collagen,...
Bone is an intriguingly complex material. It combines high strength, toughness and lightweight via a...
AbstractAttachment of dissimilar materials is a major challenge because high levels of localized str...
Synergy can be achieved using multiple imaging modalities to reveal cortical bone adaptation at orga...
AbstractEven though mechanical properties depend strongly on the arrangement of collagen fibers in m...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...