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Simulation of the contraction of the ventricles in a human heart model including atria and pericardium Finite element analysis of a frictionless contact problem

机译:包括心房和心包在内的人类心脏模型中心室收缩的模拟无摩擦接触问题的有限元分析

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During the contraction of the ventricles, the ventricles interact with the atria as well as with the pericardium and the surrounding tissue in which the heart is embedded. The atria are stretched, and the atrioventricular plane moves toward the apex. The atrioventricular plane displacement (AVPD) is considered to be a major contributor to the ventricular function, and a reduced AVPD is strongly related to heart failure. At the same time, the epicardium slides almost frictionlessly on the pericardium with permanent contact. Although the interaction between the ventricles, the atria and the pericardium plays an important role for the deformation of the heart, this aspect is usually not considered in computational models. In this work, we present an electromechanical model of the heart, which takes into account the interaction between ventricles, pericardium and atria and allows to reproduce the AVPD. To solve the contact problem of epicardium and pericardium, a contact handling algorithm based on penalty formulationwas developed, which ensures frictionless and permanent contact. Two simulations of the ventricular contraction were conducted, one with contact handling of pericardium and heart and one without. In the simulation with contact handling, the atria were stretched during the contraction of the ventricles, while, due to the permanent contact with the pericardium, their volume increased. In contrast to that, in the simulations without pericardium, the atria were also stretched, but the change in the atrial volume was much smaller. Furthermore, the pericardium reduced the radial contraction of the ventricles and at the same time increased the AVPD.
机译:在心室收缩期间,心室与心房以及与心包和心脏埋入其中的周围组织相互作用。心房被拉伸,并且房室平面向顶点移动。房室平面位移(AVPD)被认为是心室功能的主要贡献者,而AVPD的降低与心力衰竭密切相关。同时,心外膜在永久性接触下几乎无摩擦地在心包上滑动。尽管心室,心房和心包之间的相互作用在心脏变形中起着重要作用,但在计算模型中通常不考虑这一方面。在这项工作中,我们提出了一个心脏的机电模型,该模型考虑了心室,心包和心房之间的相互作用,并允许复制AVPD。为了解决心包膜和心包膜的接触问题,提出了一种基于惩罚公式的接触处理算法,以确保无摩擦和永久的接触。进行了两种模拟的心室收缩,一种模拟了心包和心脏的接触处理,另一种则没有。在有接触处理的模拟中,心室在心室收缩期间被拉伸,而由于与心包的永久接触,心室的体积增加了。与此相反,在没有心包的模拟中,心房也被拉伸,但是心房容积的变化要小得多。此外,心包减少了心室的径向收缩,同时增加了AVPD。

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