首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Three-dimensional numerical simulation of a failed coronary stent implant at different degrees of residual stenosis. Part I: Fluid dynamics and shear stress on the vascular wall
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Three-dimensional numerical simulation of a failed coronary stent implant at different degrees of residual stenosis. Part I: Fluid dynamics and shear stress on the vascular wall

机译:不同程度的残余狭窄的失败冠状动脉支架的三维数值模拟。 第一部分:血管壁上的流体动力学和剪切应力

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The influence of the degree of residual stenosis on the hemodynamics inside coronary arteries is investigated through three-dimensional (3D) numerical simulations. The present paper, which is the first of a series of two, focuses on the influence that the degree of residual stenosis (DOR) has on the fluid dynamics and the shear stresses acting on the stent and the artery wall. The pulsatile nature of the blood flow and its non-Newtonian features are taken into account. Four models of artery are investigated. The results show that the wall shear stress (WSS) increases monotonically, but not linearly, with the DOR.
机译:通过三维(3D)数值模拟研究了残余狭窄程度对冠状动脉内血流动力学的影响。 本文是一系列第一系列的纸张专注于残留狭窄程度(DOR)对流体动力学的影响和作用在支架和动脉壁上的剪切应力。 考虑了血流的脉动性质及其非牛顿特征。 调查了四种动脉型号。 结果表明,壁剪切应力(WSS)随着DOR单调而不是线性地增加。

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