Computational model for simulation of left ventricle behaviour during heart beat

M. Milošević, B. Milićević, V. Simić, Vladimir Geroski, N. Filipovic, M. Kojic
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Abstract

The heart is a complex organ which produces mechanical force needed for the blood flow. Electrical signals are transformed into active stresses which contract the heart muscle and pump the blood out from the left ventricle. Therefore, comprehensive numerical procedure has to be established in order to simulate this process and to investigate the effects of different drugs on heart behavior. We here present application of the finite element (FE) computational model for simulation of heart beat cycle of the parametric left ventricle model. We are using Hunter excitation model for active, and direct experimental constitute relations for passive mechanical stresses. Additionally, computational model includes hysteretic and compressible behavior according to the experimental investigations. Applicability of our computational model is demonstrated using parametric left ventricle model which includes inlet mitral and outlet aortic valve cross-sections. With using different boundary conditions and prescribed values, this model has potential to mimic the effects of different drugs on heart beat cycle.
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心脏跳动时左心室行为模拟的计算模型
心脏是一个复杂的器官,它产生血液流动所需的机械力。电信号被转化为主动压力,收缩心肌并将血液从左心室泵出。因此,为了模拟这一过程,研究不同药物对心脏行为的影响,必须建立全面的数值计算程序。本文将有限元计算模型应用于参数化左心室模型的心跳周期模拟。主动力学应力采用Hunter激励模型,被动力学应力采用直接实验构成关系。此外,根据实验研究,计算模型包含了滞回和可压缩行为。我们的计算模型的适用性通过参数左心室模型得到验证,该模型包括二尖瓣入口和主动脉瓣出口的横截面。通过使用不同的边界条件和规定值,该模型有可能模拟不同药物对心跳周期的影响。
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