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首页> 外文期刊>Journal of Biomechanics >Simulating ventricular systolic motion in a four-chamber heart model with spatially varying robin boundary conditions to model the effect of the pericardium
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Simulating ventricular systolic motion in a four-chamber heart model with spatially varying robin boundary conditions to model the effect of the pericardium

机译:模拟四室心脏模型中的心室收缩运动,具有空间不同的Robin边界条件来模拟心包效果的模拟

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摘要

The pericardium affects cardiac motion by limiting epicardial displacement normal to the surface. In computational studies, it is important for the model to replicate realistic motion, as this affects the physiological fidelity of the model. Previous computational studies showed that accounting for the effect of the pericardium allows for a more realistic motion simulation. In this study, we describe the mechanism through which the pericardium causes improved cardiac motion. We simulated electrical activation and contraction of the ventricles on a four-chamber heart in the presence and absence of the effect of the pericardium. We simulated the mechanical constraints imposed by the pericardium by applying normal Robin boundary conditions on the ventricular epicardium. We defined a regional scaling of normal springs stiffness based on image-derived motion from CT images. The presence of the pericardium reduced the error between simulated and image-derived end-systolic configurations from 12.8 +/- 4.1 mm to 5.7 +/- 2.5 mm. First, the pericardium prevents the ventricles from spherising during iso-volumic contraction, reducing the outward motion of the free walls normal to the surface and the upwards motion of the apex. Second, by restricting the inward motion of the free and apical walls of the ventricles the pericardium increases atrioventricular plane displacement by four folds during ejection. Our results provide a mechanistic explanation of the importance of the pericardium in physiological simulations of electromechanical cardiac function. (C) 2020 The Authors. Published by Elsevier Ltd.
机译:通过限制正常表面的外膜位移,心包会影响心动。在计算研究中,模型重复现实运动是重要的,因为这会影响模型的生理保真度。以前的计算研究表明,困扰的效果算是允许更现实的运动模拟。在这项研究中,我们描述了肉食内的机制导致改善的心动。我们在存在和缺乏心包的影响和缺乏效果的情况下模拟了心室的电激活和心室收缩。我们通过在心室表皮上施加正常的Robin边界条件来模拟心包施加的机械约束。我们根据来自CT图像的图像衍生的运动来定义普通簧氏刚度的区域缩放。心包的存在降低了模拟和图像衍生的最终收缩配置之间的误差,从12.8 +/- 4.1mm到5.7 +/- 2.5mm之间。首先,心包防止心室在ISO - 体积收缩期间迎战,从而减少了垂直于表面的自由壁的向外运动和顶点的向上运动。其次,通过限制心室的自由和顶壁的向内运动,在喷射期间,心包会增加四个折叠的房室平面位移。我们的结果提供了一种机械解释,对心包的重要性,在机电心功能的生理模拟中。 (c)2020作者。 elsevier有限公司出版

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