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首页> 外文期刊>Biomechanics and Modeling in Mechanobiology >Models of cardiac electromechanics based on individual hearts imaging data Image-based electromechanical models of the heart
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Models of cardiac electromechanics based on individual hearts imaging data Image-based electromechanical models of the heart

机译:基于个体心脏成像数据的心脏机电模型基于图像的心脏机电模型

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摘要

Current multi-scale computational models of ventricular electromechanics describe the full process of cardiac contraction on both the micro- and macro- scales including: the depolarization of cardiac cells, the release of calcium from intracellular stores, tension generation by cardiac myofilaments, and mechanical contraction of the whole heart. Such models are used to reveal basic mechanisms of cardiac contraction as well as the mechanisms of cardiac dysfunction in disease conditions. In this paper, we present a methodology to construct finite element electromechanical models of ventricular contraction with anatomically accurate ventricular geometry based on magnetic resonance and diffusion tensor magnetic resonance imaging of the heart. The electromechanical model couples detailed representations of the cardiac cell membrane, cardiac myofilament dynamics, electrical impulse propagation, ventricular contraction, and circulation to simulate the electrical and mechanical activity of the ventricles. The utility of the model is demonstrated in an example simulation of contraction during sinus rhythm using a model of the normal canine ventricles.
机译:当前的心室机电多尺度计算模型在微观和宏观尺度上都描述了心脏收缩的完整过程,包括:心脏细胞去极化,细胞内存储中钙的释放,心肌细丝产生的张力以及机械收缩全心全意。这种模型用于揭示疾病状态下心脏收缩的基本机制以及心脏功能障碍的机制。在本文中,我们提出了一种基于心脏的磁共振和弥散张量磁共振成像技术,以解剖学上精确的心室几何构造心室收缩的有限元机电模型的方法。机电模型耦合了心脏细胞膜,心脏肌丝动力学,电脉冲传播,心室收缩和循环的详细表示,以模拟心室的电气和机械活动。该模型的实用性在使用正常犬心室模型的窦性心律收缩过程的示例模拟中得到了证明。

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