The phenomenon of vasomotion, consisting in periodic oscillations of blood vessels walls is particularly important at the scale of small vessels and exhibits different features in arterioles (in which flow is mainly driven by the hydraulic pressure gradient) and in venules provided with valves preventing back flow and helping centripetal hematic propulsion. Here we formulate a model for both situations, based on approximations of the flow equations implied by the smallness of the radius-to-length ratio. For venules we postulate the presence of an inlet and an outlet valve and we show that the model reproduces the periodic pressure pulses that have been detected in the experimental literature devoted to venules of the batwing. We have developed ...
• During the last fifty years a number of physical theories have been proposed in an attempt to desc...
International audienceVessel occlusion is a perturbation of blood flow inside a blood vessel because...
Smooth muscle and endothelial cells in the arterial wall are exposed to mechanical stress. Indeed bl...
We study the flow of a Newtonian fluid through a vessel provided with valves ensuring a unidirection...
Vasomotion has been studied on segments of rat mesenteric and femoral arteries perfused in vitro. We...
Arterial pressure (AP) and heart rate (HR) waves have long been recognized as an important sign of c...
Simulations are performed in order to analyze the tendency of oscillating peripheral vascular distri...
Objective: In order to elucidate the physiological consequences of irregular vasomotion on microvasc...
Abstract: The hemodynamic pulse passage through the 'difficult' areas of the circulatory s...
Internal haemorrhage, often leading to cardio-vascular arrest happens to be one of the prime sources...
Pulsatile flow of a two-fluid model for blood flow through stenosed narrow arteries is studied throu...
A mathematical model for pulsatile flow in a partially occluded tube is presented. The problem has a...
AbstractSmooth muscle and endothelial cells in the arterial wall are exposed to mechanical stress. I...
One of the most interesting phenomena in the venous circulatory system is the vein pump mechanism in...
Hashimoto. Model of structural and functional adaptation of small conductance vessels to arterial hy...
• During the last fifty years a number of physical theories have been proposed in an attempt to desc...
International audienceVessel occlusion is a perturbation of blood flow inside a blood vessel because...
Smooth muscle and endothelial cells in the arterial wall are exposed to mechanical stress. Indeed bl...
We study the flow of a Newtonian fluid through a vessel provided with valves ensuring a unidirection...
Vasomotion has been studied on segments of rat mesenteric and femoral arteries perfused in vitro. We...
Arterial pressure (AP) and heart rate (HR) waves have long been recognized as an important sign of c...
Simulations are performed in order to analyze the tendency of oscillating peripheral vascular distri...
Objective: In order to elucidate the physiological consequences of irregular vasomotion on microvasc...
Abstract: The hemodynamic pulse passage through the 'difficult' areas of the circulatory s...
Internal haemorrhage, often leading to cardio-vascular arrest happens to be one of the prime sources...
Pulsatile flow of a two-fluid model for blood flow through stenosed narrow arteries is studied throu...
A mathematical model for pulsatile flow in a partially occluded tube is presented. The problem has a...
AbstractSmooth muscle and endothelial cells in the arterial wall are exposed to mechanical stress. I...
One of the most interesting phenomena in the venous circulatory system is the vein pump mechanism in...
Hashimoto. Model of structural and functional adaptation of small conductance vessels to arterial hy...
• During the last fifty years a number of physical theories have been proposed in an attempt to desc...
International audienceVessel occlusion is a perturbation of blood flow inside a blood vessel because...
Smooth muscle and endothelial cells in the arterial wall are exposed to mechanical stress. Indeed bl...