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Inflow boundary conditions for image-based computational hemodynamics: Impact of idealized versus measured velocity profiles in the human aorta

机译:基于图像的计算血流动力学的入流边界条件:人主动脉中理想速度与测量速度曲线的影响

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摘要

Here we analyse the influence of assumptions made on boundary conditions (BCs) extracted from phase-contrast magnetic resonance imaging (PC-MRI) in vivo measured flow data, applied on hemodynamic models of human aorta. This study aims at investigating if the imposition of BCs based on defective information, even when measured and specific-to-the-subject, might lead to misleading numerical representations of the aortic hemodynamics. In detail, we focus on the influence of assumptions regarding velocity profiles at the inlet section of the ascending aorta, incorporating phase flow data within the computational model. The obtained results are compared in terms of disturbed shear and helical bulk flow structures, when the same measured flow rate is prescribed as inlet BC in terms of 3D or 1D (axial) measured or idealized velocity profiles. Our findings clearly indicate that: (1) the imposition of PC-MRI measured axial velocity profiles as inflow BC may capture disturbed shear with sufficient accuracy, without the need to prescribe (and measure) realistic fully 3D velocity profiles; (2) attention should be put in setting idealized or PC-MRI measured axial velocity profiles at the inlet boundaries of aortic computational models when bulk flow features are investigated, because helical flow structures are markedly affected by the BC prescribed at the inflow. We conclude that the plausibility of the assumption of idealized velocity profiles as inlet BCs in personalized computational models can lead to misleading representations of the aortic hemodynamics both in terms of disturbed shear and bulk flow structures.
机译:在这里,我们分析了假设对从相衬磁共振成像(PC-MRI)体内测量的流量数据提取的边界条件(BCs)的影响,该数据适用于人主动脉的血流动力学模型。这项研究的目的是调查基于缺陷信息的BC的施加,即使在测量和针对对象的情况下,是否可能导致误导主动脉血流动力学的数值表示。详细地讲,我们集中在关于升主动脉入口部分速度分布的假设的影响上,将相流数据纳入计算模型中。当以3D或1D(轴向)测得的或理想的速度曲线将相同的测得流量指定为进口BC时,将以扰动的剪切力和螺旋形整体流结构比较获得的结果。我们的发现清楚地表明:(1)由于流入BC可以强加PC-MRI测量的轴向速度分布图,因此可以以足够的精度捕获受干扰的剪切,而无需规定(和测量)现实的完整3D速度分布图; (2)在研究大流量特征时,应注意在主动脉计算模型的入口边界处设置理想化或PC-MRI测量的轴向速度分布,因为螺旋流动结构受流入处规定的BC显着影响。我们得出结论,在个性化计算模型中假设理想速度曲线作为入口BC的合理性可能会导致扰动剪切和整体流动结构方面的主动脉血流动力学的误导性表示。

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