Endothelial cell (EC) function is mediated by variable hemodynamic shear stress patterns at the vascular wall, where complex shear stress profiles directly correlate with blood flow conditions that vary temporally based on metabolic demand. The interactions of these more complex and variable shear fields with EC have not been represented in hemodynamic flow models. We hypothesized that EC exposed to pulsatile shear stress that changes in magnitude and duration, modeled directly from real-time physiological variations in heart rate, would elicit phenotypic changes as relevant to their critical roles in thrombosis, hemostasis, and inflammation. Here we designed a physiological flow (PF) model based on short-term temporal changes in blood flow...
In vivo, endothelial cells (ECs) are subjected to a complex mechanical environment composed of shear...
<div><p>Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear...
Different blood flow patterns in the arteries can alter the adaptive phenotype of vascular endotheli...
Endothelial cell (EC) function is mediated by variable hemodynamic shear stress patterns at the vasc...
<div><p>Endothelial cell (EC) function is mediated by variable hemodynamic shear stress patterns at ...
Blood flow and vascular shear stress patterns play a significant role in inducing and modulating phy...
Blood flow and vascular shear stress patterns play a significant role in inducing and modulating phy...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
Endothelial cells in vivo exist in a dynamic environment, subject to the physical forces of blood f...
AbstractArterial hemodynamic shear stress and blood vessel stiffening both significantly influence t...
Haemodynamic forces influence the functional properties of vascular endothelium. Endothelial cells (...
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...
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...
<div><p>Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear...
Different blood flow patterns in the arteries can alter the adaptive phenotype of vascular endotheli...
Endothelial cell (EC) function is mediated by variable hemodynamic shear stress patterns at the vasc...
<div><p>Endothelial cell (EC) function is mediated by variable hemodynamic shear stress patterns at ...
Blood flow and vascular shear stress patterns play a significant role in inducing and modulating phy...
Blood flow and vascular shear stress patterns play a significant role in inducing and modulating phy...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
Shear stress and the endothelium. Vascular endothelial cells (ECs) in vivo are influenced by two dis...
Endothelial cells in vivo exist in a dynamic environment, subject to the physical forces of blood f...
AbstractArterial hemodynamic shear stress and blood vessel stiffening both significantly influence t...
Haemodynamic forces influence the functional properties of vascular endothelium. Endothelial cells (...
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...
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...
<div><p>Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear...
Different blood flow patterns in the arteries can alter the adaptive phenotype of vascular endotheli...