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Relaxation phenomena in the (in)activation gates of the voltage-gated ion channels

机译:电压门通道的(IN)激活栅极中的放松现象

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We previously proposed a method tor the study of the relaxation phenomena in the activation and inactivation gates of ion channels present in the excitable membranes of neurons. In order to study the relaxation phenomena, the assumption is made that the activation and inactivation gate order parameters can be treated as fluxes and forces. In the present paper, we extend the previous model as including an ensemble of gating particles, and apply it for T-type calcium channel in thalamic relay neurons. It is found that kinetic equations are characterized by two relaxation times. The kinetic coefficients are determined for its empirical model. We also determine the kinetic coefficients of linear and nonlinear thermodynamic models for the same T-type calcium channel, and compare them with the empirical ones.
机译:我们之前提出了一种方法,该方法在神经元激发膜中存在的激活和灭活栅极中的弛豫现象研究。为了研究松弛现象,假设激活和失活栅极订单参数可以被视为助熔剂和力。在本文中,我们将以前的模型扩展为包括门控颗粒的集合,并在丘脑中继神经元中施加T型钙通道。发现动力学方程的特征在于两个弛豫时间。为其经验模型确定动力学系数。我们还确定相同T型钙通道的线性和非线性热力学模型的动力学系数,并将它们与经验组进行比较。

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