AbstractTo evaluate shear stress-induced effects on cultured cells we have extended the mechanical setup of a multichannel in vitro rheological system and developed software allowing entire processing control and image data analysis. The values of cell motility, degree of orientation (alignment), and cell elongation were correlated as a function of time (morphodynamics). Collective and individual endothelial cells within confluent cultures displayed a shear stress-dependent characteristic phase behavior of the following time course: resting conditions (phase I), change of motility (phase II), onset of alignment (phase III), and finally cell elongation (phase IV). Especially cell motility was characterized by a randomized zigzag movement aro...
The response of cells to a flow has been studied in vitro. The response of cells was examined in two...
To measure the elongation and compliance of endothelial cells subjected to different patterns of she...
Dysfunction of the vascular endothelium can initiate atherosclerosis. Mechanical forces, particularl...
AbstractTo evaluate shear stress-induced effects on cultured cells we have extended the mechanical s...
To determine the effect of laminar fluid shear stress on the morphology, motility, and biochemical e...
Focal adhesion sites were observed in cultured endothelial cells by tandem scanning confocal microsc...
The endothelium is a thin layer of endothelial cells that line the interior surface of an artery. Du...
AbstractVascular endothelial cell migration is critical in many physiological processes including wo...
The induction of angiogenesis has been documented in many diseases such as cancer, arthritis, and di...
Endothelial cells are known to respond directly to their physical environment, with morphological ch...
Wall shear stress has been implicated in the genesis of atherosclerosis because a strong correlation...
A parallel plate chamber in a flow system has been designed to study the effects of fluid shear stre...
Several devices which can apply biomechanical stresses, such as shear stress, to living cells are av...
Endothelial cells (ECs) are continuously exposed in vivo to cyclic strain and shear stress from puls...
To measure the elongation and compliance of endothelial cells subjected to different patterns of she...
The response of cells to a flow has been studied in vitro. The response of cells was examined in two...
To measure the elongation and compliance of endothelial cells subjected to different patterns of she...
Dysfunction of the vascular endothelium can initiate atherosclerosis. Mechanical forces, particularl...
AbstractTo evaluate shear stress-induced effects on cultured cells we have extended the mechanical s...
To determine the effect of laminar fluid shear stress on the morphology, motility, and biochemical e...
Focal adhesion sites were observed in cultured endothelial cells by tandem scanning confocal microsc...
The endothelium is a thin layer of endothelial cells that line the interior surface of an artery. Du...
AbstractVascular endothelial cell migration is critical in many physiological processes including wo...
The induction of angiogenesis has been documented in many diseases such as cancer, arthritis, and di...
Endothelial cells are known to respond directly to their physical environment, with morphological ch...
Wall shear stress has been implicated in the genesis of atherosclerosis because a strong correlation...
A parallel plate chamber in a flow system has been designed to study the effects of fluid shear stre...
Several devices which can apply biomechanical stresses, such as shear stress, to living cells are av...
Endothelial cells (ECs) are continuously exposed in vivo to cyclic strain and shear stress from puls...
To measure the elongation and compliance of endothelial cells subjected to different patterns of she...
The response of cells to a flow has been studied in vitro. The response of cells was examined in two...
To measure the elongation and compliance of endothelial cells subjected to different patterns of she...
Dysfunction of the vascular endothelium can initiate atherosclerosis. Mechanical forces, particularl...