A widely used commercially available system for the investigation of mechanosensitivity applies a biaxial strain field to cells cultured on a compliant silicone substrate membrane stretched over a central post. As well as intended substrate strain, this device also provides a fluid flow environment for the cultured cells. In order to interpret the relevance of experiments using this device to the in vivo and clinical situation, it is essential to characterise both substrate and fluid environments. While previous work has detailed the substrate strain, the fluid shear stresses, to which bone cells are known to be sensitive, are unknown. Therefore, a fluid structure interaction computational fluid dynamics model was constructed, incorporating...
Osteocytes are believed to be the primary sensor of mechanical stimuli in bone, which orchestrate os...
<p>(a) Schematics of the fluidic system we used to exert a constant shear stress on osteoblasts. 1: ...
Biological tissues are recurrently exposed to several dynamic mechanical forces that influence cell ...
Mechanical loading alters cellular responses. While in vitro mechanical stimulation is a powerful to...
Bone continuously adapts its internal structure to accommodate the functional demands of its mechani...
In vitro mechanotransduction studies, uncovering the basic science of the response of cells to mecha...
Abstract Background Mechanostimuli of different cells can affect a wide array of cellular and inter-...
During mechanical stimulation-induced bone remodeling, interstitial fluid around microcracks may pro...
To analyse mechanotransduction resulting from tensile loading under defined conditions, various devi...
To analyse mechanotransduction resulting from tensile loading under defined conditions, various devi...
We report a medium throughput device to study the effects of combinations of two mechanical stimuli ...
In vitro mechanotransduction studies, uncovering the basic science of the response of cells to mecha...
In tissue engineering experiments in vitro, bioreactors have been used for applying wall shear stres...
AbstractMany organs adapt to their mechanical environment as a result of physiological change or dis...
An analytical model of the fluid/cell mechanical interaction was developed. The interfacial shear st...
Osteocytes are believed to be the primary sensor of mechanical stimuli in bone, which orchestrate os...
<p>(a) Schematics of the fluidic system we used to exert a constant shear stress on osteoblasts. 1: ...
Biological tissues are recurrently exposed to several dynamic mechanical forces that influence cell ...
Mechanical loading alters cellular responses. While in vitro mechanical stimulation is a powerful to...
Bone continuously adapts its internal structure to accommodate the functional demands of its mechani...
In vitro mechanotransduction studies, uncovering the basic science of the response of cells to mecha...
Abstract Background Mechanostimuli of different cells can affect a wide array of cellular and inter-...
During mechanical stimulation-induced bone remodeling, interstitial fluid around microcracks may pro...
To analyse mechanotransduction resulting from tensile loading under defined conditions, various devi...
To analyse mechanotransduction resulting from tensile loading under defined conditions, various devi...
We report a medium throughput device to study the effects of combinations of two mechanical stimuli ...
In vitro mechanotransduction studies, uncovering the basic science of the response of cells to mecha...
In tissue engineering experiments in vitro, bioreactors have been used for applying wall shear stres...
AbstractMany organs adapt to their mechanical environment as a result of physiological change or dis...
An analytical model of the fluid/cell mechanical interaction was developed. The interfacial shear st...
Osteocytes are believed to be the primary sensor of mechanical stimuli in bone, which orchestrate os...
<p>(a) Schematics of the fluidic system we used to exert a constant shear stress on osteoblasts. 1: ...
Biological tissues are recurrently exposed to several dynamic mechanical forces that influence cell ...