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Atrioventricular Blood Flow Simulation Based on Patient-Specific Data

机译:基于患者特定数据的房室血流模拟

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We propose a new framework for simulating blood flow inside the heart, usable with geometric models of the heart from patient-specific data. The method is geared toward realistic simulation of blood flow, taking into account not only heart wall motion but also valve motion. The simulator uses finite differences to discretize a domain that includes a functional model of the left ventricle and the left atrium of the heart. Navier-Stokes equations are robustly solved throughout the simulation domain, such that one-way momentum transfer between the heart model and the blood is enforced. The valve motion was timed to correspond to valve motions obtained from MRI. The final simulation results are qualitatively consistent to those from MR phase contrast velocity mapping, including high-velocity flow to the aorta during systole and toroidal vortex formation past the mitral valve during diastole.
机译:我们提出了一种用于模拟心脏内部血液流动的新框架,该框架可用于来自患者特定数据的心脏几何模型。该方法适用于现实的血流模拟,不仅要考虑心脏壁运动,还要考虑瓣膜运动。该模拟器使用有限的差异来离散化包含左心室和心脏左心房功能模型的区域。 Navier-Stokes方程在整个仿真域中都得到了稳健的求解,从而可以在心脏模型和血液之间进行单向动量传递。气门运动被定时以对应于从MRI获得的气门运动。最终的模拟结果在质量上与MR相衬速度映射得到的结果相一致,包括在心脏收缩期间高速流向主动脉,在心脏舒张期间通过二尖瓣形成环形涡流。

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