Little is known about interactions between muscle and bone during the removal and application of mechanical signals. Here, we applied 3wk of hindlimb unloading followed by 3wk of reambulation to a genetically heterogeneous population of 352 adult mice and tested the hypothesis that changes in muscle are associated with changes in bone at the level of the tissue and the genome. During unloading and relative to normally ambulating control mice, most mice lost muscle and cortical bone with large variability across the population. During reambulation, individual mice regained bone and muscle at different rates. Across mice, changes in muscle and trabecular/cortical bone were not correlated to each other during unloading or reambulation. For unl...
Mechanical unloading causes rapid loss of bone structure and strength, which gradually recovers afte...
Correlations among bone strength, muscle mass, and physical activity suggest that these traits may b...
Differences in skeletal mechanical adaptation between C3H/HeJ (C3H) and C57BL/6J (B6) mouse strains ...
Little is known about interactions between muscle and bone during the removal and application of mec...
Changes in trabecular morphology during unloading and reloading are marked by large variations betwe...
Changes in trabecular morphology during unloading and reloading are marked by large variations betwe...
Genetics can substantially influence bone morphology and may define the skeleton\u27s response to me...
The genetic influence on bone loss in response to mechanical unloading was investigated within diaph...
Genetic makeup of an individual is a strong determinant of the morphologic and mechanical properties...
Abstract only availablePrevious studies have shown that mechanical loading on the skeleton acts as a...
Genetic makeup of an individual is a strong determinant of the morphologic and mechanical properties...
Genetic variations mediate skeletal responsiveness to mechanical unloading, with individual space tr...
© 2016, Springer Science+Business Media New York.Numerous results indicate on interactions between m...
Genetic make-up strongly influences the skeleton's susceptibility to the loss of weight bearing with...
ABSTRACT: The genetic influence on bone loss in response to mechanical unloading was investigated wi...
Mechanical unloading causes rapid loss of bone structure and strength, which gradually recovers afte...
Correlations among bone strength, muscle mass, and physical activity suggest that these traits may b...
Differences in skeletal mechanical adaptation between C3H/HeJ (C3H) and C57BL/6J (B6) mouse strains ...
Little is known about interactions between muscle and bone during the removal and application of mec...
Changes in trabecular morphology during unloading and reloading are marked by large variations betwe...
Changes in trabecular morphology during unloading and reloading are marked by large variations betwe...
Genetics can substantially influence bone morphology and may define the skeleton\u27s response to me...
The genetic influence on bone loss in response to mechanical unloading was investigated within diaph...
Genetic makeup of an individual is a strong determinant of the morphologic and mechanical properties...
Abstract only availablePrevious studies have shown that mechanical loading on the skeleton acts as a...
Genetic makeup of an individual is a strong determinant of the morphologic and mechanical properties...
Genetic variations mediate skeletal responsiveness to mechanical unloading, with individual space tr...
© 2016, Springer Science+Business Media New York.Numerous results indicate on interactions between m...
Genetic make-up strongly influences the skeleton's susceptibility to the loss of weight bearing with...
ABSTRACT: The genetic influence on bone loss in response to mechanical unloading was investigated wi...
Mechanical unloading causes rapid loss of bone structure and strength, which gradually recovers afte...
Correlations among bone strength, muscle mass, and physical activity suggest that these traits may b...
Differences in skeletal mechanical adaptation between C3H/HeJ (C3H) and C57BL/6J (B6) mouse strains ...