Hladky S B, Harris J D
Biophys J. 1967 Sep;7(5):535-43. doi: 10.1016/s0006-3495(67)86604-9.
The usual assumption in treating the diffusion of ions in an electric field has been that the movement of each ion is independent of the movement of the others. The resulting equation for diffusion by a succession of spontaneous jumps has been well stated by Parlin and Eyring. This paper will consider one simple case in which a different assumption is reasonable. Diffusion of monovalent positive ions is considered as a series of jumps from one fixed negative site to another. The sites are assumed to be full (electrical neutrality). Interaction occurs by the displacement of one ion by another. An ion leaves a site if and only if another ion, not necessarily of the same species, attempts to occupy the same site. Flux ratios and net fluxes are given as functions of the electrical potential, concentration ratios, and number of sites encountered in crossing the membrane. Quantitative comparisons with observations of Hodgkin and Keynes are presented.
在处理电场中离子扩散问题时,通常的假设是每个离子的运动独立于其他离子的运动。帕林(Parlin)和艾林(Eyring)已经很好地阐述了通过一系列自发跳跃进行扩散的最终方程。本文将考虑一种不同假设合理的简单情况。单价正离子的扩散被视为从一个固定的负位点到另一个负位点的一系列跳跃。假设这些位点是满的(电中性)。相互作用通过一个离子被另一个离子取代而发生。当且仅当另一个离子(不一定是同一物种)试图占据同一位置时,一个离子才会离开一个位点。通量比和净通量作为电势、浓度比以及穿过膜时遇到的位点数的函数给出。还给出了与霍奇金(Hodgkin)和凯恩斯(Keynes)的观测结果的定量比较。