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首页> 外文期刊>International journal of bifurcation and chaos in applied sciences and engineering >Modeling excitation and propagation of action potentials across inhomogeneous ventricular tissue
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Modeling excitation and propagation of action potentials across inhomogeneous ventricular tissue

机译:模拟跨不均匀心室组织的动作电位的激发和传播

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摘要

Heterogeneity in the electrical activity across the ventricular wall might result from transmural differences in myocardial membrane ionic current densities. Computational models of endo- and epi-cardial action potentials of guinea-pig myocytes were developed, assuming transmural differences in the ionic current densities and kinetics of i_(Kr) and i_(Ks). The cell models were able to reproduce the characteristics of action potentials of endo and epi cells. One- and two-dimensional models of ventricular tissue were also developed to study the effects of transmural heterogeneity on the propagation of excitation waves across the ventricle wall. It was shown that intercellular coupling reduces the transmural heterogeneity across the ventricle wall.
机译:跨室壁电活动的异质性可能是由心肌膜离子电流密度的透壁差异引起的。假定i_(Kr)和i_(Ks)的离子电流密度和动力学的跨壁差异,建立了豚鼠心肌细胞心内和心外膜动作电位的计算模型。细胞模型能够再现内膜和外膜细胞的动作电位特征。还开发了脑室组织的一维和二维模型,以研究透壁异质性对激发波跨过脑室壁传播的影响。结果表明,细胞间的耦合减少了跨室壁的跨壁异质性。

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