Barry P H
School of Physiology and Pharmacology, University of New South Wales, Kensington, Australia.
Ann Biomed Eng. 1994 Mar-Apr;22(2):218-25. doi: 10.1007/BF02390380.
This paper describes ARTMEM, an interactive graphical simulation program, and its use for teaching students the concept of membrane potentials and the measurement of electrical potentials across an ion-selective membrane. The program, written in Borland C++, and specifically designed for IBM-PC-compatible equipment, can also run on fast Macintosh computers using SoftPC emulation software. It demonstrates how an ion-selective membrane separating two different salt solutions automatically generates a potential across the membrane, as well as how such electrical potentials can be measured simply and the underlying permeability ratio determined. The program was developed to replace a previous experiment with actual artificial resin membranes; virtually every feature of the experiment has been simulated (e.g., unstirred-layer effects, solution-mixing mixing contamination, liquid junction potential effects). In addition, a number of these features and the procedure for data fitting are more clearly demonstrated using the computer simulation. The efficacy of such a simulation is discussed in comparison with the real experiment and other types of simulations.
本文介绍了ARTMEM,一个交互式图形模拟程序,以及它在教学中如何用于向学生传授膜电位的概念和测量跨离子选择性膜的电势。该程序用Borland C++编写,专门为IBM-PC兼容设备设计,使用SoftPC仿真软件也能在快速的Macintosh计算机上运行。它展示了分隔两种不同盐溶液的离子选择性膜如何自动在膜上产生电位,以及如何简单地测量这种电势并确定潜在的渗透率比。该程序的开发是为了取代之前使用实际人工树脂膜的实验;实验的几乎每个特征都已被模拟(例如,未搅拌层效应、溶液混合污染、液接电位效应)。此外,使用计算机模拟能更清楚地展示其中一些特征和数据拟合过程。将这种模拟的效果与实际实验和其他类型的模拟进行了比较讨论。