Pan Zhenxing, Yamaguchi Rei, Doi Shinji
Graduate School of Engineering, Osaka University, Suita, Japan.
Biosystems. 2011 Oct;106(1):9-18. doi: 10.1016/j.biosystems.2011.06.001. Epub 2011 Jun 13.
The electrical excitation (action potential generation) of sinoatrial node (cardiac pacemaker) cells is directly related to various ion channels (pore-forming proteins) in cell membranes. In order to analyze the relation between action potential generation and ion channels, we use the Yanagihara-Noma-Irisawa (YNI) model of sinoatrial node cells, which is described by the Hodgkin-Huxley-type equations with seven variables. In this paper, we analyze the global bifurcation structure of the YNI model by varying various conductances of ion channels, and examine the effects of these conductance changes on pacemaker rhythm (frequency of action potential generation). The coupling effect on pacemaker rhythm is also examined approximately by applying external current to the YNI model.
窦房结(心脏起搏器)细胞的电兴奋(动作电位产生)与细胞膜中的各种离子通道(成孔蛋白)直接相关。为了分析动作电位产生与离子通道之间的关系,我们使用了窦房结细胞的柳原-野间-泽awa(YNI)模型,该模型由具有七个变量的霍奇金-赫胥黎型方程描述。在本文中,我们通过改变离子通道的各种电导来分析YNI模型的全局分岔结构,并研究这些电导变化对起搏器节律(动作电位产生频率)的影响。还通过向YNI模型施加外部电流来近似研究对起搏器节律的耦合效应。