Frehland E
Biophys Struct Mech. 1979 Mar 21;5(1):91-106. doi: 10.1007/BF00535775.
A theoretical approach to transport noise in kinetic systems, which has recently been developed, is applied to electric fluctuations around steady-states in membrane channels with different conductance states. The channel kinetics may be simple two state (open-closed) kinetics or more complicated. The membrane channel is considered as a sequence of binding sites separated by energy barriers over which the ions have to jump according to the usual single-file diffusion model. For simplicity the channels are assumed to act independently. In the special case of ionic movement fast compared with the channel open-closed kinetics the results agree with those derived from the usual Master equation approach to electric fluctuations in nerve membrane channels. For the simple model of channels with one binding site and two energy barries the coupling between the fluctuations coming from the open-closed kinetics and from the jump diffusion is investigated.
最近发展起来的一种关于动力学系统中输运噪声的理论方法,被应用于具有不同电导状态的膜通道稳态附近的电涨落。通道动力学可以是简单的两态(开放 - 关闭)动力学,也可以更复杂。膜通道被视为由能量势垒分隔的一系列结合位点,离子必须根据通常的单文件扩散模型在这些势垒上跳跃。为简单起见,假设通道相互独立作用。在离子运动速度比通道开放 - 关闭动力学快的特殊情况下,结果与从通常的主方程方法推导得出的神经膜通道电涨落结果一致。对于具有一个结合位点和两个能量势垒的通道简单模型,研究了来自开放 - 关闭动力学的涨落与跳跃扩散涨落之间的耦合。