Guttman R
J Gen Physiol. 1966 May;49(5):1007-18. doi: 10.1085/jgp.49.5.1007.
Temperature characteristics of excitability in the squid giant axon were measured for the space-clamped axon with the double sucrose gap technique. Threshold strength-duration curves were obtained for square wave current pulses from 10 microsec to 10 msec and at temperatures from 5 degrees C to 35 degrees C. The threshold change of potential, at which an action potential separated from a subthreshold response, averaged 17 mv at 20 degrees C with a Q(10) of 1.15. The average threshold current density at rheobase was 12 microa/cm(2) at 20 degrees C with a Q(10) of 2.35 compared to 2.3 obtained previously. At short times the threshold charge was 1.5.10(-8) coul/cm(2). This was relatively independent of temperature and occasionally showed a minimum in the temperature range. At intermediate times and all temperatures the threshold currents were less than for both the single time constant model and the two factor excitation process as developed by Hill. FitzHugh has made computer investigations of the effect of temperature on the excitation of the squid axon membrane as represented by the Hodgkin-Huxley equations. These are in general in good agreement with our experimental results.
采用双蔗糖间隙技术,对空间钳制的枪乌贼巨大轴突的兴奋性温度特性进行了测量。获得了10微秒至10毫秒的方波电流脉冲在5摄氏度至35摄氏度温度下的阈值强度-持续时间曲线。在20摄氏度时,将动作电位与阈下反应区分开的电位阈值变化平均为17毫伏,Q(10)为1.15。与之前得到的2.3相比,在20摄氏度时,基强度下的平均阈值电流密度为12微安/平方厘米,Q(10)为2.35。在短时间内,阈值电荷为1.5×10⁻⁸库仑/平方厘米。这相对独立于温度,偶尔在温度范围内出现最小值。在中间时间和所有温度下,阈值电流均小于单时间常数模型和希尔提出的双因素兴奋过程的阈值电流。菲茨休对温度对由霍奇金-赫胥黎方程表示的枪乌贼轴突膜兴奋的影响进行了计算机研究。这些结果总体上与我们的实验结果吻合良好。