Bones adjust their mass and architecture to be sufficiently robust to withstand functional loading by adapting to their strain environment. This mechanism appears less effective with age resulting in low bone mass. In male and female young adult (17 week) and old (19 month) mice we investigated the effect of age in vivo on bones' adaptive response to loading and in vitro in primary cultures of osteoblast-like cells derived from bone cortices. Right tibiae were axially loaded on alternate days for 2 weeks. Left tibiae were non-loaded controls. In a separate group, the number of sclerostin positive osteocytes and the number of periosteal osteoblasts were analyzed 24 hours after a single loading episode. The responses to strain of the primary ...
AbstractBones adapt their structure to their loading environment and so ensure that they become, and...
Mechanoadaptation maintains bone mass and architecture; its failure underlies age-related decline in...
AbstractExperiments to investigate bone's physiological adaptation to mechanical loading frequently ...
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...
Bone ensures it is sufficiently robust to withstand habitual levels of mechanical loading without un...
The primary aim of osteoanabolic therapies is to strategically increase bone mass in skeletal region...
The primary aim of osteoanabolic therapies is to strategically increase bone mass in skeletal region...
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...
ABSTRACT Bone adapts its architecture to the applied load; however, it is still unclear how bone mec...
There are conflicting data on whether age reduces the response of the skeleton to mechanical stimuli...
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...
Mechanical unloading causes rapid loss of bone structure and strength, which gradually recovers afte...
AbstractBones adapt their structure to their loading environment and so ensure that they become, and...
Mechanoadaptation maintains bone mass and architecture; its failure underlies age-related decline in...
AbstractExperiments to investigate bone's physiological adaptation to mechanical loading frequently ...
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...
Bone ensures it is sufficiently robust to withstand habitual levels of mechanical loading without un...
The primary aim of osteoanabolic therapies is to strategically increase bone mass in skeletal region...
The primary aim of osteoanabolic therapies is to strategically increase bone mass in skeletal region...
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...
ABSTRACT Bone adapts its architecture to the applied load; however, it is still unclear how bone mec...
There are conflicting data on whether age reduces the response of the skeleton to mechanical stimuli...
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...
Mechanical unloading causes rapid loss of bone structure and strength, which gradually recovers afte...
AbstractBones adapt their structure to their loading environment and so ensure that they become, and...
Mechanoadaptation maintains bone mass and architecture; its failure underlies age-related decline in...
AbstractExperiments to investigate bone's physiological adaptation to mechanical loading frequently ...