首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Minimizing the blood velocity differences between phase-contrast magnetic resonance imaging and computational fluid dynamics simulation in cerebral arteries and aneurysms
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Minimizing the blood velocity differences between phase-contrast magnetic resonance imaging and computational fluid dynamics simulation in cerebral arteries and aneurysms

机译:在脑动脉和动脉瘤中的相位对比磁共振成像和计算流体动力学模拟中最小化血液速度差异

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摘要

The integration of phase-contrast magnetic resonance images (PC-MRI) and computational fluid dynamics (CFD) is a way to obtain detailed information of patient-specific hemodynamics. This study proposes a novel strategy for imposing a pressure condition on the outlet boundary (called the outlet pressure) in CFD to minimize velocity differences between the PC-MRI measurement and the CFD simulation, and to investigate the effects of outlet pressure on the numerical solution. The investigation involved ten patient-specific aneurysms reconstructed from a digital subtraction angiography image, specifically on aneurysms located at the bifurcation region. To evaluate the effects of imposing the outlet pressure, three different approaches were used, namely: a pressure-fixed (P-fixed) approach; a flow rate control (Q-control) approach; and a velocity-field-optimized (V-optimized) approach. Numerical investigations show that the highest reduction in velocity difference always occurs in the V-optimized approach, where the mean of velocity difference (normalized by inlet velocity) is 19.3%. Additionally, the highest velocity differences appear near to the wall and vessel bifurcation for 60% of the patients, resulting in differences in wall shear stress. These findings provide a new methodology for PC-MRI integrated CFD simulation and are useful for understanding the evaluation of velocity difference between the PC-MRI and CFD.
机译:相位对比磁共振图像(PC-MRI)和计算流体动力学(CFD)的集成是获得患者特异性血液动力学的详细信息的方法。本研究提出了一种新的策略,用于在CFD中对出口边界(称为出口压力)的压力条件施加压力条件,以最小化PC-MRI测量和CFD仿真之间的速度差异,并研究出口压力对数值溶液的影响。调查涉及从数字减法血管造影图像重建的十个患者特异性动脉瘤,特别是位于位于分叉区域的动脉瘤。为了评估施加出口压力的效果,使用了三种不同的方法,即:压力固定(P固定)方法;流量控制(Q-Control)方法;和速度 - 现场优化(V优化)方法。数值研究表明,速度差的最高降低总是发生在V优化的方法中,其中速度差(通过入口速度归一化)的平均值为19.3%。此外,最高速度差异靠近墙壁和血管分叉60%的患者,导致墙面剪切应力的差异。这些发现为PC-MRI集成CFD模拟提供了一种新的方法,可用于理解PC-MRI和CFD之间的速度差异的评估。

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