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Assessment of turbulent blood flow and wall shear stress in aortic coarctation using image-based simulations

机译:基于图像的模拟评估主动脉造环中的湍流血流和壁剪应力

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摘要

In this study, we analyzed turbulent flows through a phantom (a 180 $$^{circ }$$ bend with narrowing) at peak systole and a patient-specific coarctation of the aorta (CoA), with a pulsating flow, using magnetic resonance imaging (MRI) and computational fluid dynamics (CFD). For MRI, a 4D-flow MRI is performed using a 3T scanner. For CFD, the standard $$k-epsilon $$ , shear stress transport $$k-omega $$ , and Reynolds stress (RSM) models are applied. A good agreement between measured and simulated velocity is obtained for the phantom, especially for CFD with RSM. The wall shear stress (WSS) shows significant differences between CFD and MRI in absolute values, due to the limited near-wall resolution of MRI. However, normalized WSS shows qualitatively very similar distributions of the local values between MRI and CFD. Finally, a direct comparison between in vivo 4D-flow MRI and CFD with the RSM turbulence model is performed in the CoA. MRI can properly identify regions with locally elevated or suppressed WSS. If the exact values of the WSS are necessary, CFD is the preferred method. For future applications, we recommend the use of the combined MRI/CFD method for analysis and evaluation of the local flow patterns and WSS in the aorta.
机译:在这项研究中,我们在峰值收缩座和峰值(COA)的峰值收缩座和患者特异性凸起,分析了湍流(A 180 $$ ^ QUR} $$弯曲),使用磁性共振成像(MRI)和计算流体动力学(CFD)。对于MRI,使用3T扫描仪进行4D流动MRI。对于CFD,标准$$ k- epsilon $$,剪切应力运输$$ k- omega $$,以及reynolds应力(RSM)型号适用。为幻影获得测量和模拟速度之间的良好一致性,特别是对于具有RSM的CFD。由于MRI的近壁分辨率有限,壁剪切应力(WSS)显示了绝对值的CFD和MRI之间的显着差异。但是,标准化的WSS显示了MRI和CFD之间的本地值的定性非常相似的分布。最后,在COA中进行Vivo 4D流动MRI和CFD之间的直接比较。 MRI可以正确地识别具有局部升高或抑制WSS的地区。如果需要WSS的确切值,则CFD是首选方法。对于未来的应用,我们建议使用组合的MRI / CFD方法来分析和评估主动脉中的局部流动模式和WSS。

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