Department of Mathematical and Life Sciences, Hiroshima University, Higashi-Hiroshima, Hiroshima 739-8526, Japan.
J Theor Biol. 2011 Aug 21;283(1):1-9. doi: 10.1016/j.jtbi.2011.05.016. Epub 2011 May 23.
In many cellular processes, spontaneous activities are often the basis for their functioning. Paramecium cells change their swimming direction under a homogeneous environment, which is induced by a spontaneous signal generation in the membrane electric potential. For such a spontaneous activity, a theoretical model has been proposed by Oosawa (2007) [Biosystems 88, 191-201.], in which intracellular noise is hierarchically organized from thermal fluctuations to spike-like large fluctuations, which induces a signal to change spontaneously the swimming direction. Our analysis of the model shows that the system is a kind of excitable media, in which a spike is induced by a stochastic fluctuation. We show conditions of channels properties to have a spike train.
在许多细胞过程中,自发活动通常是其功能的基础。在均匀的环境下,草履虫细胞会改变其游动方向,这是由膜电势中的自发信号产生引起的。对于这种自发活动,Oosawa(2007)[Biosystems 88, 191-201.]提出了一个理论模型,其中细胞内噪声从热波动到尖峰状大波动进行层次组织,这会引发信号自发改变游动方向。我们对该模型的分析表明,该系统是一种兴奋介质,其中尖峰是由随机波动引发的。我们展示了具有尖峰序列的通道特性的条件。