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Construction of the CFD model of the aortic arch based on MR images and simulation of the blood flow

机译:基于MR图像和血流模拟的主动脉拱的CFD模型的构建

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The human aortic arch has significant torsion in addition to its large curvature. It has previously pointed out from some clinical observations that the torsion may be related to the development of the thoracic aneurysms. It is also known that the torsion affects the blood flow, which is suspected to be associated with various vascular diseases. In this study, a realistic three-dimensional computational fluid dynamics (CFD) model of a human aortic arch was constructed based on a set of MR images and the blood flow in the arch was simulated. The results showed that the torsion of the aortic arch centerline led to a complex localized distribution of the wall shear stress at the top of the arch. MRI based modeling was shown to be a powerful means to investigate computational fluid mechanical analysis of the blood flow.
机译:除了大曲率之外,人主动脉弓具有显着的扭转。先前已经指出了一些临床观察,扭转可能与胸动脉瘤的发育有关。还众所周知,扭转影响血液流动,怀疑是与各种血管疾病相关的。在该研究中,基于一组MR图像构建了人主动脉弓的现实三维计算流体动力学(CFD)模型,并且模拟了拱的血流。结果表明,主动脉弓中心线的扭转导致拱形顶部的墙面剪切应力的复杂局部分布。基于MRI的建模被证明是调查血流计算流体力学分析的强大方法。

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