首页> 外文期刊>Journal of Biomechanics >CFD analysis of pulsatile blood flow in an atherosclerotic human artery with eccentric plaques.
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CFD analysis of pulsatile blood flow in an atherosclerotic human artery with eccentric plaques.

机译:带有偏心斑块的动脉粥样硬化人动脉中脉动血流的CFD分析。

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摘要

Atherosclerosis is a slow vascular degeneration. It thickens the internal walls of a blood vessel locally depositing an atherosclerotic plaque. Such reduced lumen increases the resistance to blood flow. Plaques can be punctual (eccentric, here considered) or circumferential (symmetrical). Stenoses do not have a typical shape: we hypothesised here a reference geometry (trapezium) with its possible evolutions (semi-ellipse, triangle). Two criteria (Equivalent Area and Equivalent Dimensions) were then defined to compare the results among the 35 case studies numerically analysed with a Computational Fluid Dynamics code (Comsol Multiphysics 3.3). Blood was considered a Cassonian fluid with modified viscosity equation. The artery was cylindrical, rigid and straight, interested by a pulsatile blood flow. Among the variables: shape and dimensions of the stenoses; number of stenoses (single or coupled pathologies); mutual locations (3 possibilities). The main results were that the length of the consequent flow disturbance is due to the stenotic shape and height; blood flow recirculation, downstream of the pathology, is due to the slope of the stenotic walls; and the peak velocities depend on the shape and height of stenosis. The differences from case to case diminish in diastole.
机译:动脉粥样硬化是一种缓慢的血管变性。它会使血管内壁增厚,从而局部沉积动脉粥样硬化斑块。这种减少的内腔增加了对血流的抵抗力。斑块可以是点状的(这里是偏心的)或圆周的(对称的)。狭窄齿没有典型的形状:我们在这里假设参考几何体(梯形)及其可能的演变(半椭圆形,三角形)。然后定义了两个标准(等效面积和等效尺寸),以比较使用计算流体力学代码(Comsol Multiphysics 3.3)对35个案例研究进行数值分析的结果。血液被认为具有修正的粘度方程式的卡森流体。动脉呈圆柱状,刚性且笔直,受到脉动性血流的吸引。在变量中:狭窄的形状和尺寸;狭窄的数量(单个或耦合的病变);相互的位置(3种可能性)。主要结果是随之而来的流动扰动的长度是由于狭窄的形状和高度引起的。病理下游的血流再循环是由于狭窄壁的倾斜所致。峰值速度取决于狭窄的形状和高度。逐例的差异在舒张期中减小。

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