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离子通过孔隙传输产生的非平衡电压噪声。

Non-equilibrium voltage noise generated by ion transport through pores.

作者信息

Frehland E, Solleder P

出版信息

Eur Biophys J. 1985;11(3):167-78. doi: 10.1007/BF00257395.

Abstract

In this paper, we describe a systematic approach to the theoretical analysis of non-equilibrium voltage noise that arises from ions moving through pores in membranes. We assume that an ion must cross one or two barriers in the pore in order to move from one side of the membrane to the other. In our analysis, we consider the following factors: a) surface charge as a variable in the kinetic equations, b) linearization of the kinetic equations, c) master equation approach to fluctuations. To analyze the voltage noise arising from ion movement through a two barrier (i.e., one binding site) pore, we included the effects of ions in the channel's interior on the voltage noise. The current clamp is considered as a white noise generating additional noise in the system. In contrast to what is found for current noise, at low frequencies the voltage noise intensity is reduced by increasing voltage across the membrane. With this approach, we demonstrate explicitly for the examples treated that, apart from additional noise generated by the current clamp, the non-equilibrium voltage fluctuations can be related to the current fluctuations by the complex admittance.

摘要

在本文中,我们描述了一种对离子穿过膜上孔隙产生的非平衡电压噪声进行理论分析的系统方法。我们假设离子为了从膜的一侧移动到另一侧,必须穿过孔隙中的一个或两个势垒。在我们的分析中,我们考虑以下因素:a)将表面电荷作为动力学方程中的一个变量,b)动力学方程的线性化,c)用于涨落的主方程方法。为了分析离子通过双势垒(即一个结合位点)孔隙移动产生的电压噪声,我们考虑了通道内部离子对电压噪声的影响。电流钳被视为在系统中产生额外噪声的白噪声。与电流噪声的情况相反,在低频时,通过增加膜上的电压,电压噪声强度会降低。通过这种方法,我们针对所处理的示例明确证明,除了电流钳产生的额外噪声外,非平衡电压涨落可以通过复导纳与电流涨落相关联。

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