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Computational fluid dynamics analysis of balloon-expandable coronary stents: Influence of stent and vessel deformation

机译:球囊扩张式冠状动脉支架的计算流体动力学分析:支架和血管变形的影响

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摘要

In many computational fluid dynamics (CFD) studies of stented vessel haemodynamics, the geometry of the stented vessel is described using non-deformed (NDF) geometrical models. These NDF models neglect complex physical features, such as stent and vessel deformation, which may have a major impact on the haemodynamic environment in stented coronary arteries. In this study, CFD analyses were carried out to simulate pulsatile flow conditions in both NDF and realistically-deformed (RDF) models of three stented coronary arteries. While the NDF models were completely idealised, the RDF models were obtained from nonlinear structural analyses and accounted for both stent and vessel deformation. Following the completion of the CFD analyses, major differences were observed in the time-averaged wall shear stress (TAWSS), time-averaged wall shear stress gradient (TAWSSG) and oscillatory shear index (OSI) distributions predicted on the luminal surface of the artery for the NDF and RDF models. Specifically, the inclusion of stent and vessel deformation in the CFD analyses resulted in a 32%, 30% and 31% increase in the area-weighted mean TAWSS, a 3%, 7% and 16% increase in the area-weighted mean TAWSSG and a 21%, 13% and 21% decrease in the area-weighted mean OSI for Stents A, B and C, respectively. These results suggest that stent and vessel deformation are likely to have a major impact on the haemodynamic environment in stented coronary arteries. In light of this observation, it is recommended that these features are considered in future CFD studies of stented vessel haemodynamics. (C) 2014 IPEM. Published by Elsevier Ltd. All rights reserved.
机译:在许多对支架血管血流动力学的计算流体动力学(CFD)研究中,使用非变形(NDF)几何模型描述了支架血管的几何形状。这些NDF模型忽略了复杂的物理特征,例如支架和血管变形,这可能会对冠状动脉支架内血液动力学环境产生重大影响。在这项研究中,进行了CFD分析,以模拟NDF和三个支架的冠状动脉的真实变形(RDF)模型中的脉动血流情况。尽管NDF模型已完全理想化,但RDF模型是通过非线性结构分析获得的,并考虑了支架和血管变形。 CFD分析完成后,在动脉腔表面预测的时均壁切应力(TAWSS),时均壁切应力梯度(TAWSSG)和振荡切变指数(OSI)分布中观察到了主要差异用于NDF和RDF模型。具体而言,在CFD分析中包含支架和血管变形的结果是,面积加权平均TAWSS分别增加了32%,30%和31%,面积加权平均TAWSSG分别增加了3%,​​7%和16%支架A,B和C的区域加权平均OSI分别降低了21%,13%和21%。这些结果表明,支架和血管变形可能会对冠状动脉支架内血液动力学环境产生重大影响。根据这一观察结果,建议在将来的CFD研究中对支架血管血流动力学进行考虑。 (C)2014年IPEM。由Elsevier Ltd.出版。保留所有权利。

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