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Flow imaging of 3-dimensional coronary artery models using computational fluid dynamics-effect of coronary artery curvature

机译:使用计算流体动力学效应的冠状动脉曲率对三维冠状动脉模型进行流成像

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Although all portions of the coronary arteries are exposed to the same systemic risk factors, such as hypertension, lipid imbalance, etc., the distribution of atherosclerotic plaque within the coronary arteries is focal and eccentric. For many years it has been recognized that disturbed local hemodynamics, including low and reversed flow, primarily at branch points and at the inner surfaces of curved arterial segments, plays an important role in determining the distribution of atherosclerotic plaque. As part of an effort to create a new instrument for intracoronary flow imaging, the authors have used computational fluid dynamics to solve the Navier-Stokes equations for blood flow in realistically curved models of coronary arteries with various degrees of stenosis. The results demonstrate important effects of coronary artery curvature on intracoronary flow characteristics and demonstrate the feasibility of using these techniques for in vivo intracoronary flow imaging.
机译:尽管冠状动脉的所有部分都暴露于相同的系统性危险因素,例如高血压,脂质不平衡等,但冠状动脉内的动脉粥样硬化斑块分布是局灶性的和偏心的。多年来,人们已经认识到,主要在分支点和弯曲动脉节段内表面处的局部血流动力学紊乱,包括低流量和反向流量,在确定动脉粥样硬化斑块的分布中起着重要作用。作为创建一种用于冠状动脉内血流成像的新仪器的努力的一部分,作者使用了计算流体动力学来求解具有不同程度狭窄的冠状动脉的实际弯曲模型中血流的Navier-Stokes方程。结果证明了冠状动脉曲率对冠状动脉内血流特征的重要影响,并证明了使用这些技术进行体内冠状动脉内血流成像的可行性。

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