Kidder G W, Rehm W S
Biophys J. 1970 Mar;10(3):215-36. doi: 10.1016/S0006-3495(70)86295-6.
Upon passing a step current through the frog gastric mucosa, a transient response in voltage is observed, which can formally be represented by several types of model systems, although some models require elements which are hard to visualize in terms of the known morphology of the mucosa. A physically reasonable model can be constructed by considering the changes in intracellular ionic composition which arise due to current flow, and the consequent changes in diffusion potentials across the two cell membranes. A simple model has been developed which fits the observed long time-constant portion of the transient at low current densities, and predicts departures from exponential behavior at larger currents. Since reasonable values for membrane resistance and cell volume give a fit, it is proposed that this model may account for the long time-constant portion of the transient response. There is no reason to expect that similar considerations do not hold for epithelial tissues in general.
当通过青蛙胃黏膜施加一个阶跃电流时,会观察到电压的瞬态响应,尽管有些模型需要一些根据黏膜已知形态难以想象的元件,但该瞬态响应可以用几种类型的模型系统来形式化表示。通过考虑由于电流流动引起的细胞内离子组成变化以及随之而来的跨两个细胞膜的扩散电位变化,可以构建一个物理上合理的模型。已经开发出一个简单模型,该模型在低电流密度下拟合了观察到的瞬态的长时间常数部分,并预测在较大电流下会偏离指数行为。由于膜电阻和细胞体积的合理值能够给出拟合结果,因此有人提出该模型可能解释了瞬态响应的长时间常数部分。没有理由认为一般上皮组织不适用类似的考虑。