Gerber B, Jakobsson E
Biology Honors Program, University of Illinois, Urbana 61801.
Biol Cybern. 1993;70(2):109-14. doi: 10.1007/BF00200824.
This work considers the response to simulated synaptic inputs of an excitable membrane model. The model is essentially of the Hodgkin-Huxley type, but contains an A-current in addition to sodium and delayed-rectifier potassium channels. The results were compared with previous simulations in which the stimulus was an injected current. These two types of stimuli give somewhat different results because synaptic stimuli directly change the membrane resistance, whereas injected current does not. The results of synaptic stimulation were similar to injected current in that very low frequencies of action potentials were elicited only where the stimulus was slightly above threshold. For most of the range of synaptic inputs that produced oscillatory behavior, the A-current had little effect on oscillation frequency. With synaptic stimuli as with injected current, the model membrane's spiking behavior does not begin immediately when an excitatory stimulus is imposed on a quiescent state. The delay before spiking is closely related to the inactivation time of the A-current. The synaptic results were different from the injected current results in that when substantial inhibition was present, the ability to produce very-low-frequency spiking was absent, even just above the excitatory threshold. The higher the degree of inhibition, the narrower the range of spike frequencies that could be elicited by excitation. At very high inhibition, no degree of excitation could elicit spiking.
这项工作研究了可兴奋膜模型对模拟突触输入的响应。该模型本质上是霍奇金 - 赫胥黎类型的,但除了钠通道和延迟整流钾通道外,还包含一个A电流。研究结果与之前以注入电流为刺激的模拟进行了比较。这两种类型的刺激产生的结果略有不同,因为突触刺激直接改变膜电阻,而注入电流则不会。突触刺激的结果与注入电流的结果相似之处在于,只有在刺激略高于阈值时才会引发非常低频率的动作电位。在产生振荡行为的大部分突触输入范围内,A电流对振荡频率影响很小。与注入电流一样,当对静止状态施加兴奋性刺激时,模型膜的尖峰行为不会立即开始。尖峰出现前的延迟与A电流的失活时间密切相关。突触刺激的结果与注入电流的结果不同之处在于,当存在大量抑制时,即使仅略高于兴奋性阈值,也无法产生非常低频率的尖峰。抑制程度越高,兴奋能够引发的尖峰频率范围就越窄。在极高的抑制水平下,任何程度的兴奋都无法引发尖峰。