The primary aim of osteoanabolic therapies is to strategically increase bone mass in skeletal regions likely to experience high strains. In the young healthy skeleton, this is primarily achieved by bone's adaptation to loading. This adaptation appears to fail with age, resulting in osteoporosis and fractures. We previously demonstrated that prior and concurrent disuse enhances bone gain following loading in old female mice. Here, we applied site specificity micro-computed tomography analysis to map regional differences in bone anabolic responses to axial loading of the tibia between young (19-week-old) and aged (19-month-old), male and female mice. Loading increased bone mass specifically in the proximal tibia in both sexes and ages. Young ...
Quantification of cortical bone mass and architecture using μCT is commonplace in osteoporosis and o...
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...
The primary aim of osteoanabolic therapies is to strategically increase bone mass in skeletal region...
Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading b...
Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading b...
Objective: Short-term neurectomy-induced disuse (SN) has been shown to restore load responses in age...
Bone ensures it is sufficiently robust to withstand habitual levels of mechanical loading without un...
Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading b...
Skeletal loading enhances cortical and trabecular bone properties. How long these benefits last afte...
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...
306 pagesOsteoporosis is a disease resulting in decreased bone mass and mineralization. Anabolic, bo...
There are conflicting data on whether age reduces the response of the skeleton to mechanical stimuli...
ABSTRACT Bone adapts its architecture to the applied load; however, it is still unclear how bone mec...
Quantification of cortical bone mass and architecture using μCT is commonplace in osteoporosis and o...
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...
The primary aim of osteoanabolic therapies is to strategically increase bone mass in skeletal region...
Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading b...
Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading b...
Objective: Short-term neurectomy-induced disuse (SN) has been shown to restore load responses in age...
Bone ensures it is sufficiently robust to withstand habitual levels of mechanical loading without un...
Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading b...
Skeletal loading enhances cortical and trabecular bone properties. How long these benefits last afte...
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...
306 pagesOsteoporosis is a disease resulting in decreased bone mass and mineralization. Anabolic, bo...
There are conflicting data on whether age reduces the response of the skeleton to mechanical stimuli...
ABSTRACT Bone adapts its architecture to the applied load; however, it is still unclear how bone mec...
Quantification of cortical bone mass and architecture using μCT is commonplace in osteoporosis and o...
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...