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An Approximation Model of Myocardial Crossbridge for Weak Coupling Calculation of Left Ventricle Model and Circulation Model

机译:左心室模型与循环模型弱耦合计算的心肌横梁近似模型

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It is necessary to use complicated myocardial cell model and heart model to evaluate the regional energy production and consumption which leads to the unrealistic computational time. In this research, a left ventricle (LV) simulation model was constructed which includes accurate myocardial cell model. In order to simulate the model in realistic time, we introduced an approximation model of the crossbridge model which can be calculated with weak coupling calculation. The LV model was combined with a circulation model to validate the proposed model by calculating the hemodynamics parameters and ventricular energetics indices. The ESPVR (End Systolic Pressure Volume Relation) showed linear relation, and also the PVA - ATP consumption relation showed linear relation which are widely known as the physiological characteristics of mammalian hearts. From these results, we can say that the model can be used as a model for physiological simulation experiments which are related to the ventricular energetics.
机译:有必要使用复杂的心肌细胞模型和心脏模型来评估区域能源生产和消费,从而导致不切实际的计算时间。在该研究中,构建了左心室(LV)模拟模型,其包括准确的心肌细胞模型。为了在现实时间模拟模型,我们介绍了跨奇模型的近似模型,其可以通过弱耦合计算来计算。 LV模型与循环模型组合以通过计算血流动力学参数和心室能量指数来验证所提出的模型。 ESPVR(最终收缩压体积关系)显示线性关系,并且PVA - ATP消耗关系显示了线性关系,其被广泛称为哺乳动物心脏的生理特性。从这些结果来看,我们可以说该模型可以用作与心室能量有关的生理模拟实验的模型。

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