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Flow Patterns and Wall Shear Stress Distributions at Atherosclerotic-Prone Sites in a Human Left Coronary Artery - An Exploration Using Combined Methods of CT and Computational Fluid Dynamics

机译:人左冠状动脉中动脉粥样硬化部位的血流模式和壁剪切应力分布-CT和计算流体力学相结合方法的探索

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摘要

Computed tomography (CT) slices are combined with computational fluid dynamics (CFD) to simulate the flow patterns in a human left coronary artery. The vascular model was reconstructed from CT slices scanned from a healthy volunteer in vivo. The spatial resolution of the slices is 0.6×0.6×0.625 mm so that geometrical details of the local wall surface of the vessel could be considered in the CFD modeling. This level of resolution is needed to investigate the wall shear stress (WSS) distribution, a factor generally recognized as a related to the atherogenesis. The WSS distributions on the main trunk and bifurcation of the left coronary artery of the model in one cardiac cycle are presented, and the results demonstrate that low and oscillating WSS is correlative with clinical observations of the atherosclerotic-prone sites in the left coronary artery.
机译:将计算机断层扫描(CT)切片与计算流体力学(CFD)结合起来,以模拟人的左冠状动脉中的血流模式。从健康志愿者体内扫描的CT切片重建血管模型。切片的空间分辨率为0.6×0.6×0.625 mm,因此可以在CFD模型中考虑血管局部壁表面的几何细节。需要这样的分辨率才能研究壁切应力(WSS)的分布,该因素通常被认为与动脉粥样硬化有关。给出了在一个心动周期中该模型的主干和左冠状动脉分叉处的WSS分布,结果表明,低和振荡的WSS与左冠状动脉易发部位的临床观察相关。

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