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An Integrative Model of the Cardiovascular System Coupling Heart Cellular Mechanics with Arterial Network Hemodynamics

机译:心脏细胞力学与动脉血流动力学耦合的心血管系统集成模型

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摘要

The current study proposes a model of the cardiovascular system that couples heart cell mechanics with arterial hemodynamics to examine the physiological role of arterial blood pressure (BP) in left ventricular hypertrophy (LVH). We developed a comprehensive multiphysics and multiscale cardiovascular model of the cardiovascular system that simulates physiological events, from membrane excitation and the contraction of a cardiac cell to heart mechanics and arterial blood hemodynamics. Using this model, we delineated the relationship between arterial BP or pulse wave velocity and LVH. Computed results were compared with existing clinical and experimental observations. To investigate the relationship between arterial hemodynamics and LVH, we performed a parametric study based on arterial wall stiffness, which was obtained in the model. Peak cellular stress of the left ventricle and systolic blood pressure (SBP) in the brachial and central arteries also increased; however, further increases were limited for higher arterial stiffness values. Interestingly, when we doubled the value of arterial stiffness from the baseline value, the percentage increase of SBP in the central artery was about 6.7% whereas that of the brachial artery was about 3.4%. It is suggested that SBP in the central artery is more critical for predicting LVH as compared with other blood pressure measurements.
机译:当前的研究提出了一种心血管系统模型,该模型将心脏细胞力学与动脉血流动力学相结合,以检查动脉血压(BP)在左心室肥大(LVH)中的生理作用。我们开发了心血管系统的全面多物理场和多尺度心血管系统模型,该模型可以模拟生理事件,从膜激发和心脏细胞的收缩到心脏力学和动脉血流动力学。使用该模型,我们描绘了动脉BP或脉搏波速度与LVH之间的关系。将计算结果与现有的临床和实验观察结果进行比较。为了研究动脉血流动力学与LVH之间的关系,我们基于模型中获得的动脉壁刚度进行了参数研究。臂和中央动脉的左心室峰值细胞压力和收缩压(SBP)也增加。但是,对于更高的动脉僵硬度值,进一步的增加受到了限制。有趣的是,当我们将动脉僵硬度的值从基线值增加一倍时,中央动脉中SBP的增加百分比约为6.7%,而肱动脉中SBP的百分比约为3.4%。提示与其他血压测量相比,中央动脉的SBP对预测LVH更为重要。

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