Hemodynamic forces play an important role in the non-uniform distribution of atherosclerotic lesions. Endothelial cells are exposed simultaneously to fluid wall shear stress (WSS) and solid circumferential stress (CS). Due to variations in impedance (global factors) and geometric complexities (local factors) in the arterial circulation a time lag arises between these two forces that can be characterized by the temporal phase angle between CS and WSS (stress phase angle±SPA). Asynchronous flows (SPA close to -180Ê) that are most prominent in coronary arteries have been associated with localization of atherosclerosis. Reversing oscillatory flows characterized by an oscillatory shear index (OSI) that is great than zero are also associated with...
In the developing embryo, the vasculature first takes the form of a web-like network called the vasc...
[[abstract]]Atherosclerosis preferentially develops at branches and curvatures of the arterial tree,...
Different blood flow patterns in the arteries can alter the adaptive phenotype of vascular endotheli...
Hemodynamic forces play an important role in the non-uniform distribution of atherosclerotic lesions...
Hemodynamic forces play an important role in the non-uniform distribution of atherosclerotic lesions...
Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear stress ...
Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear stress ...
Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear stress ...
<div><p>Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear...
The non-uniform distribution of atherosclerosis within the arterial system has been attributed to pr...
Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear stress ...
Atherosclerosis is a chronic inflammatory disease of arterial blood vessels, characterized by deposi...
Atherosclerosis is a chronic inflammatory disease of arterial blood vessels, characterized by deposi...
Hemodynamic forces play a critical role in the pathogenesis of atherosclerosis as evidenced by the f...
Hemodynamic forces play a critical role in the pathogenesis of atherosclerosis as evidenced by the f...
In the developing embryo, the vasculature first takes the form of a web-like network called the vasc...
[[abstract]]Atherosclerosis preferentially develops at branches and curvatures of the arterial tree,...
Different blood flow patterns in the arteries can alter the adaptive phenotype of vascular endotheli...
Hemodynamic forces play an important role in the non-uniform distribution of atherosclerotic lesions...
Hemodynamic forces play an important role in the non-uniform distribution of atherosclerotic lesions...
Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear stress ...
Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear stress ...
Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear stress ...
<div><p>Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear...
The non-uniform distribution of atherosclerosis within the arterial system has been attributed to pr...
Endothelial cells lining the walls of blood vessels are exposed simultaneously to wall shear stress ...
Atherosclerosis is a chronic inflammatory disease of arterial blood vessels, characterized by deposi...
Atherosclerosis is a chronic inflammatory disease of arterial blood vessels, characterized by deposi...
Hemodynamic forces play a critical role in the pathogenesis of atherosclerosis as evidenced by the f...
Hemodynamic forces play a critical role in the pathogenesis of atherosclerosis as evidenced by the f...
In the developing embryo, the vasculature first takes the form of a web-like network called the vasc...
[[abstract]]Atherosclerosis preferentially develops at branches and curvatures of the arterial tree,...
Different blood flow patterns in the arteries can alter the adaptive phenotype of vascular endotheli...