AbstractPurpose: Endothelial cells (ECs) are subjected to the physical forces induced by blood flow. The aim of this study was to directly compare the EC signaling pathway in response to cyclic strain and shear stress in cultured bovine aortic ECs. Materials and Methods: The ECs were seeded on flexible collagen I–coated silicone membranes to examine the effect of cyclic strain. The membranes were deformed with a 150–mm Hg vacuum at a rate of 60 cycle/min for up to 120 minutes. For a comparison of the effect of shear stress, ECs from the same batch as used in the strain experiments were seeded on collagen I–coated silicone sheets. The ECs were then subjected to 10 dyne/cm2 shear with the use of a parallel flow chamber for up to 120 minutes. ...
AbstractEndothelial cells are simultaneously exposed to the mechanical forces of fluid wall shear st...
Significance: Forces are important in the cardiovascular system, acting as regulators of vascular ph...
Significance: Forces are important in the cardiovascular system, acting as regulators of vascular ph...
AbstractPurpose: Endothelial cells (ECs) are subjected to the physical forces induced by blood flow....
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
AbstractArterial endothelial cell (EC) responsiveness to flow is essential for normal vascular funct...
Vein grafting is complicated by high rates of stenosis due to the development of vascular inflammati...
In vivo, endothelial cells (ECs) are subjected to a complex mechanical environment composed of shear...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
Endothelial cell (ECs) lining blood vessels express many mechanosensors, including platelet endothel...
Endothelial cell (ECs) lining blood vessels express many mechanosensors, including platelet endothel...
In vivo, endothelial cells (ECs) are subjected to a complex mechanical environment composed of shear...
AbstractArterial hemodynamic shear stress and blood vessel stiffening both significantly influence t...
In vivo, endothelial cells (ECs) are subjected to a complex mechanical environment composed of shear...
In vivo, endothelial cells (ECs) are subjected to a complex mechanical environment composed of shear...
AbstractEndothelial cells are simultaneously exposed to the mechanical forces of fluid wall shear st...
Significance: Forces are important in the cardiovascular system, acting as regulators of vascular ph...
Significance: Forces are important in the cardiovascular system, acting as regulators of vascular ph...
AbstractPurpose: Endothelial cells (ECs) are subjected to the physical forces induced by blood flow....
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
AbstractArterial endothelial cell (EC) responsiveness to flow is essential for normal vascular funct...
Vein grafting is complicated by high rates of stenosis due to the development of vascular inflammati...
In vivo, endothelial cells (ECs) are subjected to a complex mechanical environment composed of shear...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
Endothelial cell (ECs) lining blood vessels express many mechanosensors, including platelet endothel...
Endothelial cell (ECs) lining blood vessels express many mechanosensors, including platelet endothel...
In vivo, endothelial cells (ECs) are subjected to a complex mechanical environment composed of shear...
AbstractArterial hemodynamic shear stress and blood vessel stiffening both significantly influence t...
In vivo, endothelial cells (ECs) are subjected to a complex mechanical environment composed of shear...
In vivo, endothelial cells (ECs) are subjected to a complex mechanical environment composed of shear...
AbstractEndothelial cells are simultaneously exposed to the mechanical forces of fluid wall shear st...
Significance: Forces are important in the cardiovascular system, acting as regulators of vascular ph...
Significance: Forces are important in the cardiovascular system, acting as regulators of vascular ph...