Vascular endothelial cells form the inner lining of all blood vessels and play a central role in vessel physiology and disease. Endothelial cells are highly responsive to the mechanical stimulus of fluid shear stress that is exerted by blood flowing over their surface. In this study, the immediate micromechanical response of endothelial cells to physiological shear stress was characterized by tracking of ballistically injected, sub-micron, fluorescent particles. It was found that the mean squared displacement (MSD) of the particles decreases by a factor 1.5 within 10 min after the onset of shear stress. This decrease in particle motion is transient, since the MSD returns to control values within 15–30 min after the onset of shear. The immed...
To determine the effect of laminar fluid shear stress on the morphology, motility, and biochemical e...
Abstract—Hemodynamic shear stress at the endothelial cell surface induces acute and chronic intracel...
It has become increasingly evident that hemodynamic shear stresses have an important role in both th...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
Vascular remodeling under conditions of growth or exercise, or during recovery from arterial restric...
Endothelial cells (ECs) line the lumen of the cardiovascular system and serve as a regulatory barrie...
International audienceReduced blood flow, as occurring in ischemia or resulting from exposure to mic...
AbstractEndothelial cells are constantly exposed to fluid shear stresses that regulate vascular morp...
Vascular remodeling under conditions of growth or exercise, or during recovery from arterial restric...
EC (endothelial cell) responses to shear stress generated by vascular perfusion play an important ro...
International audienceBlood flow produces mechanical frictional forces, parallel to the blood flow e...
SummaryFluid shear stress (FSS) from blood flow acting on the endothelium critically regulates vascu...
Fluid shear stress (FSS) from blood flow acting on the endothelium critically regulates vascular mor...
Objectives:The aim of this study was to determine the changes in the morphology and cytoskeleton org...
EC (endothelial cell) responses to shear stress generated by vascular perfusion play an important ro...
To determine the effect of laminar fluid shear stress on the morphology, motility, and biochemical e...
Abstract—Hemodynamic shear stress at the endothelial cell surface induces acute and chronic intracel...
It has become increasingly evident that hemodynamic shear stresses have an important role in both th...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
Vascular remodeling under conditions of growth or exercise, or during recovery from arterial restric...
Endothelial cells (ECs) line the lumen of the cardiovascular system and serve as a regulatory barrie...
International audienceReduced blood flow, as occurring in ischemia or resulting from exposure to mic...
AbstractEndothelial cells are constantly exposed to fluid shear stresses that regulate vascular morp...
Vascular remodeling under conditions of growth or exercise, or during recovery from arterial restric...
EC (endothelial cell) responses to shear stress generated by vascular perfusion play an important ro...
International audienceBlood flow produces mechanical frictional forces, parallel to the blood flow e...
SummaryFluid shear stress (FSS) from blood flow acting on the endothelium critically regulates vascu...
Fluid shear stress (FSS) from blood flow acting on the endothelium critically regulates vascular mor...
Objectives:The aim of this study was to determine the changes in the morphology and cytoskeleton org...
EC (endothelial cell) responses to shear stress generated by vascular perfusion play an important ro...
To determine the effect of laminar fluid shear stress on the morphology, motility, and biochemical e...
Abstract—Hemodynamic shear stress at the endothelial cell surface induces acute and chronic intracel...
It has become increasingly evident that hemodynamic shear stresses have an important role in both th...