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Computational Fluid Dynamics Analysis to Predict Endothelial Cells Migration During Flow Exposure Experiment With Placement of Two Stent Wires

机译:放置两根支架线的流动暴露实验过程中的计算流体动力学分析,以预测内皮细胞的迁移

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Stent deployment is currently used for many cardiovascular treatments. During its application, the presence of the stent inside the blood vessel will indeed cause some change in both flow environment and also vessel wall's cellular conditions. This research intends to learn about the flow phenomenon of how vessel wall endothelial cells (ECs) react to the presence of stent wires within a microfluidic flow chamber environment. Computational fluid dynamics (CFD) simulation analysis of the microfluidic flow chamber system has been performed for observing the hemodynamics phenomena in the chamber. Moreover, CFD method also can be beneficial as a planning step for a successful experimental study. We found that under the two wires configurations, high wall shear stress (WSS) area is developed on the downstream side of the wires. Based on the analysis of WSS and WSS gradients (WSSG) conditions, ECs morphological change and migration are likely to occur some specific area.
机译:支架部署目前用于许多心血管治疗。在其应用期间,支架在血管内部的存在确实会引起流动环境以及血管壁细胞状态的某些变化。这项研究旨在了解微血管流动腔环境中血管壁内皮细胞(EC)对支架丝的反应的流动现象。微流体流腔系统的计算流体动力学(CFD)模拟分析已经执行,用于观察腔中的血液动力学现象。此外,CFD方法也可以作为成功进行实验研究的计划步骤而有益。我们发现,在两种线材配置下,线材的下游侧会形成高壁切应力(WSS)区域。根据对WSS和WSS梯度(WSSG)条件的分析,EC的形态变化和迁移可能会在某些特定区域发生。

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