Guttman R, Feldman L, Lecar H
Biophys J. 1974 Dec;14(12):941-55. doi: 10.1016/S0006-3495(74)85961-8.
The current from a white noise generator was applied as a stimulus to a space-clamped squid axon in double sucrose gap. The membrane current and the voltage response of the membrane were then amplified, recorded on magnetic tape, and the stimulus was cross-correlated with the response. With subthreshold stimuli, a cross-correlation function resembling that obtained from a resonant parallel circuit is obtained. As the intensity of the input noise is increased, the cross-correlation function resembles that obtained from a less damped oscillatory circuit. When the noise intensity is further increased so that an appreciable frequency of action potentials is observed, an additional component appears in the experimental cross-correlogram. The subthreshold cross-correlogram is analyzed theoretically in terms of the linearized Hodgkin-Huxley equations. The subthreshold axon approximates a parallel resonant circuit. The circuit parameters are temperature dependent, with resonant frequency varying from approximately 100 Hz at 10 degrees C to approximately 250 Hz at 20 degrees C. The Q(10) of the resonant frequency is equal to 1.9. These values are in agreement with values found previously for subthreshold oscillations following a single action potential.
来自白噪声发生器的电流作为刺激施加到双蔗糖间隙中空间钳制的枪乌贼轴突上。然后对膜电流和膜的电压响应进行放大,记录在磁带上,并将刺激与响应进行互相关分析。对于阈下刺激,可获得类似于从谐振并联电路得到的互相关函数。随着输入噪声强度的增加,互相关函数类似于从阻尼较小的振荡电路得到的函数。当噪声强度进一步增加以至于观察到明显的动作电位频率时,在实验互相关图中会出现一个额外的成分。根据线性化的霍奇金 - 赫胥黎方程对阈下互相关图进行理论分析。阈下轴突近似于一个并联谐振电路。电路参数与温度有关,谐振频率在10℃时约为100Hz,在20℃时约为250Hz。谐振频率的Q(10)等于1.9。这些值与先前在单个动作电位后的阈下振荡中发现的值一致。