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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Flow in cerebral aneurysms: 4D Flow MRI measurements and CFD models.
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - Flow in cerebral aneurysms: 4D Flow MRI measurements and CFD models.

机译:APS-流体动力学APS部门第70届年会-事件-脑动脉瘤中的流量:4D流量MRI测量和CFD模型。

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摘要

4D Flow MRI is capable of measuring blood flow in vivo, providing time-resolved velocity fields in 3D. The dynamic range of the 4D Flow MRI is determined by a velocity sensitivity parameter (venc), set above the expected maximum velocity, which can result in noisy data for slow flow regions. A dual-venc 4D flow MRI technique, where both low- and high-venc data are acquired, can improve velocity-to-noise ratio and, therefore, quantification of clinically-relevant hemodynamic metrics. In this study, patient-specific CFD simulations were used to evaluate the advantages of the dual-venc approach for assessment of the flow in cerebral aneurysms. The flow in 2 cerebral aneurysms was measured in vivo with dual-venc 4D Flow MRI and simulated with CFD, using the MRI data to prescribe flow boundary conditions. The flow fields obtained with computations were compared to those measured with a single- and dual-venc 4D Flow MRI. The numerical models resolved small flow structures near the aneurysmal wall, that were not detected with a single-venc acquisition. Comparison of the numerical and imaging results shows that the dual-venc approach can improve the accuracy of the 4D Flow MRI measurements in regions characterized by high-velocity jets and slow recirculating flows.
机译:4D Flow MRI能够测量体内的血流,提供3D中时间分辨的速度场。 4D Flow MRI的动态范围由速度灵敏度参数(venc)决定,该参数设置在预期的最大速度之上,这可能会导致慢速流动区域的数据嘈杂。可以同时获取低和高venc数据的双venc 4D流MRI技术可以提高速度噪声比,因此可以量化临床相关的血液动力学指标。在这项研究中,使用特定于患者的CFD模拟来评估双静脉法评估脑动脉瘤流量的优势。使用双静脉4D流MRI在体内测量2个脑动脉瘤的流量,并使用CFD模拟CFD,使用MRI数据规定流边界条件。将通过计算获得的流场与使用单孔和双孔4D Flow MRI测量的流场进行比较。数值模型解析了动脉瘤壁附近的小流量结构,单静脉采集无法检测到这些结构。数值结果和成像结果的比较表明,在以高速射流和缓慢循环流为特征的区域中,双静脉方法可以提高4D流MRI测量的准确性。

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