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A New MRI-Based Model of Heart Function with Coupled Hemodynamics and Application to Normal and Diseased Canine Left Ventricles

机译:耦合血流动力学的基于MRI的心功能新模型及其在正常和患病犬左心室中的应用

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摘要

A methodology for the simulation of heart function that combines an MRI-based model of cardiac electromechanics (CE) with a Navier–Stokes-based hemodynamics model is presented. The CE model consists of two coupled components that simulate the electrical and the mechanical functions of the heart. Accurate representations of ventricular geometry and fiber orientations are constructed from the structural magnetic resonance and the diffusion tensor MR images, respectively. The deformation of the ventricle obtained from the electromechanical model serves as input to the hemodynamics model in this one-way coupled approach via imposed kinematic wall velocity boundary conditions and at the same time, governs the blood flow into and out of the ventricular volume. The time-dependent endocardial surfaces are registered using a diffeomorphic mapping algorithm, while the intraventricular blood flow patterns are simulated using a sharp-interface immersed boundary method-based flow solver. The utility of the combined heart-function model is demonstrated by comparing the hemodynamic characteristics of a normal canine heart beating in sinus rhythm against that of the dyssynchronously beating failing heart. We also discuss the potential of coupled CE and hemodynamics models for various clinical applications.
机译:提出了一种模拟心脏功能的方法,该方法将基于MRI的心脏机电(CE)模型与基于Navier–Stokes的血液动力学模型相结合。 CE模型由两个耦合的组件组成,可模拟心脏的电气和机械功能。分别根据结构磁共振和弥散张量MR图像构造心室几何形状和纤维方向的准确表示。在这种单向耦合方法中,通过施加的运动壁速度边界条件,从机电模型获得的心室变形可作为血液动力学模型的输入,同时控制血液流入和流出心室容积。时间依赖的心内膜表面使用微分形映射算法进行配准,而脑室内血流模式则使用基于锐化界面浸入边界方法的血流求解器进行模拟。通过将正常窦性心律的犬心脏的血流动力学特征与不同步跳动的心脏衰竭的血流动力学特征进行比较,证明了组合心功能模型的实用性。我们还将讨论耦合CE和血液动力学模型在各种临床应用中的潜力。

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