Numerical investigation of hemodynamic performance of a stent in the main branch of a coronary artery bifurcation

S. Razavi, V. Farhangmehr, Z. Babaie
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引用次数: 10

Abstract

Introduction: The effect of a bare-metal stent on the hemodynamics in the main branch of a coronary artery bifurcation with a particular type of stenosis was numerically investigated by the computational fluid dynamics (CFD). Methods: Three-dimensional idealized geometry of bifurcation was constructed in Catia modelling commercial software package. The Newtonian blood flow was assumed to be incompressible and laminar. CFD was utilized to calculate the shear stress and blood pressure distributions on the wall of main branch. In order to do the numerical simulations, a commercial software package named as COMSOL Multiphysics 5.3 was employed. Two types of stent , namely, one-part stent and two-part stent were applied to prevent the build-up and progression of the atherosclerotic plaques in the main branch. Results: A particular type of stenosis in the main branch was considered in this research. It occurred before and after the side branch. Moreover, it was found that the main branch with an inserted one-part stent had the smallest region with the wall shear stress (WSS) below 0.5 Pa which was the minimum WSS in the main branch without the stenosis. Conclusion: The use of a one-part stent in the main branch of a coronary artery bifurcation for the aforementioned type of stenosis is recommended.
冠状动脉主干支架血流动力学性能的数值研究
本文采用计算流体力学(CFD)方法,研究了裸金属支架对冠状动脉主支血流动力学的影响。方法:在Catia建模商业软件包中构建分支的三维理想几何。牛顿理论认为血流是不可压缩的层流。利用CFD计算了主分支壁面的剪应力和血压分布。为了进行数值模拟,使用了商用软件包COMSOL Multiphysics 5.3。为了防止主干动脉粥样硬化斑块的形成和发展,我们采用了一段式支架和两段式支架。结果:在本研究中考虑了主要分支的一种特殊类型的狭窄。它发生在侧枝前后。此外,我们还发现,置入一体式支架的主支在0.5 Pa以下的壁面剪应力(WSS)区域最小,是没有狭窄的主支的最小WSS区域。结论:对于上述类型的狭窄,建议在冠状动脉主干分支中使用一段式支架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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