首页> 外文会议>Computing in Cardiology 2012.;vol. 39. >Modeling of heterogeneity in electrical and mechanical properties of guinea pig ventricular myocytes
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Modeling of heterogeneity in electrical and mechanical properties of guinea pig ventricular myocytes

机译:豚鼠心室肌​​细胞电和机械特性的异质性建模

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Heterogeneity of myocardium proved to be important for understanding heart physiology and pathophysiology. In contrast to a number of papers addressing the electrophysiological heterogeneity of cardiomyocytes, much less is known about heterogeneity of their mechanical function. The aim of this study was to develop mathematical models of the electrical and mechanical function of cardiomyocytes from sub-epi- and sub-endocardial ventricular layers that take into account specific features of intracellular mechanisms underlying pronounced regional differences in the functional properties of the cells in guinea pig. Using the developed models we quantitatively tested several hypotheses on possible contribution of the transmural gradient in Na+/Ca2+ exchange currents to the cellular function. The simulations consist with a hypothesis that transmural gradient in Na+/Ca2+ exchange currents may partially result from the heterogeneity in Na+/K+ pump in cells from different transmural regions.
机译:心肌的异质性被证明对于理解心脏生理和病理生理很重要。与许多针对心肌细胞电生理学异质性的论文相比,关于其机械功能异质性的知识知之甚少。这项研究的目的是开发来自心外膜下和心内膜下心室层的心肌细胞的电和机械功能的数学模型,该模型考虑了细胞功能特性中明显区域差异背后的细胞内机制的特定特征。豚鼠。使用开发的模型,我们定量测试了关于Na + / Ca 2 + 交换电流对细胞功能的透壁梯度可能贡献的几种假设。模拟包含一个假设,即Na + / Ca 2 + 交换电流中的透壁梯度可能部分是由于Na + / K中的异质性引起的 + 泵送来自不同透壁区域的细胞。

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