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Hemodynamic Simulation of Intra-stent Blood Flow

机译:支架内血流的血流动力学模拟

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The stent has been a major breakthrough for the treatment of atherosclerotic vascular disease. The permanent vascular implant of a stent, however, changes the blood flow hemodynamics and may consequently affect the restenosis process. Computational Fluid Dynamics (CFD) has been widely used to analyze the hemodynamic behavior and wall shear stress (WSS) distribution in stented arteries. The objective of this study is to present a thorough comparison among various CFD models to investigate the effects of rheological properties and pulsatile flow on hemodynamic simulation of the intra-stent blood flow. Several CFD models were developed with various modeling setups - axisymmetric parallel ring vs. 3-D stented artery model, Newtonian vs. non-Newtonian flow, and steady-state vs. pulsatile flow. Simulated results show that the minimum WSS occurs at the recirculation zones located at the downstream or backside of each stent struts. The rheological effect on WWS is minor in the axisymmetric parallel ring model; however, it becomes slightly significant in the 3-D stented artery model, with Newtonian flow being a more conservative assumption. For given pulsatile waveforms, the steady-state and pulsatile flow resulted in fairly similar trends in the WSS distribution. Therefore, it is reasonable to simulate the intra-stent blood flow as a steady-state Newtonian flow, which could be beneficial in more complex simulations and drastically reduce the computational time. These findings will provide great insights for future stent design optimization to reduce restenosis.
机译:该支架是治疗动脉粥样硬化血管疾病的重大突破。然而,支架的永久血管植入物改变血流量血流动力学,因此可能影响再狭窄过程。计算流体动力学(CFD)已被广泛用于分析支架动脉中的血流动力行为和壁剪切应力(WSS)分布。本研究的目的是在各种CFD模型中呈现彻底的比较,以研究流变性能和脉动流动对支架内血流的血流动力学模拟的影响。几种CFD模型是用各种建模设置 - 轴对称并联环与3-D叉动脉模型,牛顿与非牛顿流量和稳态与脉动流动。模拟结果表明,最小的WSS发生在位于每个支架支柱的下游或背面的再循环区域。轴对称平行环模型的WWS对WW的流变效应;然而,在3-D叉虫动脉模型中变得略微显着,牛顿流量是一种更保守的假设。对于给定的脉动波形,稳态和脉动流动在WSS分布中产生了相同的趋势。因此,模拟支架内血流作为稳态牛顿流量是合理的,这可能在更复杂的模拟中是有益的,并且大大降低计算时间。这些调查结果将为未来支架设计优化提供良好的见解,以减少再狭窄。

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