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采用三维电影相位对比磁共振成像(cine PC-MRI)数据的有限元方法对胸主动脉壁面切应力和脉动剪切指数进行三维定量分析。

3D Quantification of Wall Shear Stress and Oscillatory Shear Index Using a Finite-Element Method in 3D CINE PC-MRI Data of the Thoracic Aorta.

出版信息

IEEE Trans Med Imaging. 2016 Jun;35(6):1475-87. doi: 10.1109/TMI.2016.2517406. Epub 2016 Jan 14.

Abstract

Several 2D methods have been proposed to estimate WSS and OSI from PC-MRI, neglecting the longitudinal velocity gradients that typically arise in cardiovascular flow, particularly on vessel geometries whose cross section and centerline orientation strongly vary in the axial direction. Thus, the contribution of longitudinal velocity gradients remains understudied. In this work, we propose a 3D finite-element method for the quantification of WSS and OSI from 3D-CINE PC-MRI that accounts for both in-plane and longitudinal velocity gradients. We demonstrate the convergence and robustness of the method on cylindrical geometries using a synthetic phantom based on the Poiseuille flow equation. We also show that, in the presence of noise, the method is both stable and accurate. Using computational fluid dynamics simulations, we show that the proposed 3D method results in more accurate WSS estimates than those obtained from a 2D analysis not considering out-of-plane velocity gradients. Further, we conclude that for irregular geometries the accurate prediction of WSS requires the consideration of longitudinal gradients in the velocity field. Additionally, we compute 3D maps of WSS and OSI for 3D-CINE PC-MRI data sets from an aortic phantom and sixteen healthy volunteers and two patients. The OSI values show a greater dispersion than WSS, which is strongly dependent on the PC-MRI resolution. We envision that the proposed 3D method will improve the estimation of WSS and OSI from 3D-CINE PC-MRI images, allowing for more accurate estimates in vessels with pathologies that induce high longitudinal velocity gradients, such as coarctations and aneurisms.

摘要

已经提出了几种 2D 方法来从 PC-MRI 估计 WSS 和 OSI,这些方法忽略了心血管流动中通常出现的纵向速度梯度,尤其是在血管几何形状中,其横截面和中心线方向在轴向方向上强烈变化。因此,纵向速度梯度的贡献仍未得到充分研究。在这项工作中,我们提出了一种从 3D-CINE PC-MRI 量化 WSS 和 OSI 的 3D 有限元方法,该方法同时考虑了平面内和纵向速度梯度。我们使用基于泊肃叶流方程的合成体模在圆柱几何形状上证明了该方法的收敛性和鲁棒性。我们还表明,在存在噪声的情况下,该方法既稳定又准确。使用计算流体动力学模拟,我们表明,与不考虑平面外速度梯度的 2D 分析相比,所提出的 3D 方法可以更准确地估计 WSS。此外,我们得出结论,对于不规则几何形状,准确预测 WSS 需要考虑速度场中的纵向梯度。此外,我们还针对主动脉体模和 16 名健康志愿者以及两名患者的 3D-CINE PC-MRI 数据集计算了 WSS 和 OSI 的 3D 图谱。OSI 值的分散度大于 WSS 值,并且强烈依赖于 PC-MRI 分辨率。我们设想所提出的 3D 方法将提高从 3D-CINE PC-MRI 图像估计 WSS 和 OSI 的能力,从而在引起高纵向速度梯度的病理情况下,例如缩窄和动脉瘤,能够更准确地估计 WSS 和 OSI。

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