TAYLOR R E, MOORE J W, COLE K S
Biophys J. 1960 Nov;1(2):161-202. doi: 10.1016/s0006-3495(60)86882-8.
Localized membrane current and potential measurements were made on the squid giant axon in voltage clamp experiments. Spatial control of potential was impaired by the use of axial current supplying electrodes with surface resistance greater than 20 ohms for a centimeter length of axon. No region of membrane which was indeed subjected to a potential step showed more than one inward current peak. Other patterns were results of space clamp failure. Membrane current and potential patterns during space clamp failure were approximately reproduced in computations on a model containing two membrane patches obeying the equations of Hodgkin and Huxley. Non-uniformities in the axon or electrodes are not necessary for non-uniform electrical behavior. An extension of the core conductor model which includes the axial wire and external solution has been analyzed. The space constant of electrotonic spread is less than 0.5 mm with a usable electrode. Errors of about 5 per cent are introduced by ignoring the external solution. Resistance between the membrane and the control electrodes reduces the control and a few ohm cm(2) could lead to serious errors in interpretation.
在电压钳实验中,对鱿鱼巨轴突进行了局部膜电流和电位测量。对于轴突长度为1厘米且表面电阻大于20欧姆的轴向电流供应电极,电位的空间控制受到了损害。实际经历电位阶跃的膜区域没有显示出超过一个内向电流峰值。其他模式是空间钳制失败的结果。在包含两个遵循霍奇金和赫胥黎方程的膜片的模型计算中,大致再现了空间钳制失败期间的膜电流和电位模式。非均匀的电行为并不一定需要轴突或电极存在不均匀性。对包括轴向导线和外部溶液的核心导体模型的扩展进行了分析。使用可用电极时,电紧张性扩布的空间常数小于0.5毫米。忽略外部溶液会引入约5%的误差。膜与控制电极之间的电阻会降低控制效果,几欧姆·厘米²可能会导致解释出现严重误差。