Dynamic processes modify bone micro-structure to adapt to external loading and avoid mechanical failure. Age-related cortical bone loss is thought to occur because of increased endocortical resorption and reduced periosteal formation. Differences in the (re)modeling response to loading on both surfaces, however, are poorly understood. Combining in-vivo tibial loading, in-vivo micro- tomography and finite element analysis, remodeling in C57Bl/6J mice of three ages (10, 26, 78 week old) was analyzed to identify differences in mechano- responsiveness and its age-related change on the two cortical surfaces. Mechanical stimulation enhanced endocortical and periosteal formation and reduced endocortical resorption; a reduction in periosteal resorp...
Bone adapts its architecture to the applied load; however, it is still unclear how bone mechano-adap...
Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading b...
The two major aims of the present study were: (i) quantify localised cortical bone adaptation at the...
Mechanoadaptation maintains bone mass and architecture; its failure underlies age-related decline in...
Mechanoadaptation maintains bone mass and architecture; its failure underlies age-related decline in...
Mechanoadaptation maintains bone mass and architecture; its failure underlies age-related decline in...
Bone has an adaptive capacity to maintain structural integrity. However, there seems to be a heterog...
Bone ensures it is sufficiently robust to withstand habitual levels of mechanical loading without un...
Objective: Short-term neurectomy-induced disuse (SN) has been shown to restore load responses in age...
The aim of the current study was to quantify the local effect of mechanical loading on cortical bone...
Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading b...
The aim of the current study was to quantify the local effect of mechanical loading on cortical bone...
The aim of the current study was to quantify the local effect of mechanical loading on cortical bone...
The premise that bones grow and remodel throughout life to adapt to their mechanical environment is ...
Bone adapts its architecture to the applied load; however, it is still unclear how bone mechano-adap...
Bone adapts its architecture to the applied load; however, it is still unclear how bone mechano-adap...
Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading b...
The two major aims of the present study were: (i) quantify localised cortical bone adaptation at the...
Mechanoadaptation maintains bone mass and architecture; its failure underlies age-related decline in...
Mechanoadaptation maintains bone mass and architecture; its failure underlies age-related decline in...
Mechanoadaptation maintains bone mass and architecture; its failure underlies age-related decline in...
Bone has an adaptive capacity to maintain structural integrity. However, there seems to be a heterog...
Bone ensures it is sufficiently robust to withstand habitual levels of mechanical loading without un...
Objective: Short-term neurectomy-induced disuse (SN) has been shown to restore load responses in age...
The aim of the current study was to quantify the local effect of mechanical loading on cortical bone...
Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading b...
The aim of the current study was to quantify the local effect of mechanical loading on cortical bone...
The aim of the current study was to quantify the local effect of mechanical loading on cortical bone...
The premise that bones grow and remodel throughout life to adapt to their mechanical environment is ...
Bone adapts its architecture to the applied load; however, it is still unclear how bone mechano-adap...
Bone adapts its architecture to the applied load; however, it is still unclear how bone mechano-adap...
Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading b...
The two major aims of the present study were: (i) quantify localised cortical bone adaptation at the...