AbstractAlterations in bone tissue composition during osteoporosis likely disrupt the mechanical environment of bone cells and may thereby initiate a mechanobiological response. It has proved challenging to characterize the mechanical environment of bone cells in vivo, and the mechanical environment of osteoporotic bone cells is not known. The objective of this research is to characterize the local mechanical environment of osteocytes and osteoblasts from healthy and osteoporotic bone in a rat model of osteoporosis. Using a custom-designed micromechanical loading device, we apply strains representative of a range of physical activity (up to 3000 με) to fluorescently stained femur samples from normal and ovariectomized rats. Confocal imaging...
The mechanism responsible for controlling the quantity and distribution of bone material is unknown,...
Osteoporosis, which predominantly occurs in females, affects 200 million women worldwide and is char...
Though osteoporosis is a significant cause of disability worldwide, treatment with pharmacologic age...
Alterations in bone tissue composition during osteoporosis likely disrupt the mechanical environment...
AbstractAlterations in bone tissue composition during osteoporosis likely disrupt the mechanical env...
© 2015 by the Biophysical Society.Alterations in bone tissue composition during osteoporosis likely ...
Alterations in bone tissue composition during osteoporosis likely disrupt the mechanical environment...
Alterations in bone tissue composition during osteoporosis likely disrupt the mechanical environment...
Alterations in bone tissue composition during osteoporosis likely disrupt the mechanical environment...
© 2016 Elsevier Ltd.Experimental studies have shown that primary osteoporosis caused by oestrogen-de...
Experimental studies have shown that primary osteoporosis caused by oestrogen-deficiency results in ...
Experimental studies have shown that primary osteoporosis' caused by oestrogen deficiency results in...
Experimental studies have shown that primary osteoporosis\u27 caused by oestrogen deficiency results...
The mechanism responsible for controlling the quantity and distribution of bone material is unknown,...
Adaptation of bone to mechanical stresses normally produces a bone architecture that combines a prop...
The mechanism responsible for controlling the quantity and distribution of bone material is unknown,...
Osteoporosis, which predominantly occurs in females, affects 200 million women worldwide and is char...
Though osteoporosis is a significant cause of disability worldwide, treatment with pharmacologic age...
Alterations in bone tissue composition during osteoporosis likely disrupt the mechanical environment...
AbstractAlterations in bone tissue composition during osteoporosis likely disrupt the mechanical env...
© 2015 by the Biophysical Society.Alterations in bone tissue composition during osteoporosis likely ...
Alterations in bone tissue composition during osteoporosis likely disrupt the mechanical environment...
Alterations in bone tissue composition during osteoporosis likely disrupt the mechanical environment...
Alterations in bone tissue composition during osteoporosis likely disrupt the mechanical environment...
© 2016 Elsevier Ltd.Experimental studies have shown that primary osteoporosis caused by oestrogen-de...
Experimental studies have shown that primary osteoporosis caused by oestrogen-deficiency results in ...
Experimental studies have shown that primary osteoporosis' caused by oestrogen deficiency results in...
Experimental studies have shown that primary osteoporosis\u27 caused by oestrogen deficiency results...
The mechanism responsible for controlling the quantity and distribution of bone material is unknown,...
Adaptation of bone to mechanical stresses normally produces a bone architecture that combines a prop...
The mechanism responsible for controlling the quantity and distribution of bone material is unknown,...
Osteoporosis, which predominantly occurs in females, affects 200 million women worldwide and is char...
Though osteoporosis is a significant cause of disability worldwide, treatment with pharmacologic age...