Jakobsson E, Scudiero C
Biophys J. 1975 Jun;15(6):577-90. doi: 10.1016/S0006-3495(75)85840-1.
In this paper we explore the properties of a mathematical model for the passive sodium permeability system of excitable membranes. This model is distinguished by the explicit inclusion of a rate constant which depends not on instantaneous voltage, but on rate of voltage change. Actually, the model is a rather modest modification of the Hodgkin-Huxley model, but displays some behaviors which the H-H model does not. Among these behaviors are a pronounced inactivation shift (for certain parameter values), a difference between inactivation time constant as measured by turning off a sodium current under sustained depolarization and as measured by double pulse experiments, skip runs under sustained current stimulation, and accommodation to slowing rising currents.
在本文中,我们探讨了可兴奋膜被动钠通透性系统数学模型的性质。该模型的独特之处在于明确包含了一个速率常数,该常数不依赖于瞬时电压,而是依赖于电压变化率。实际上,该模型是对霍奇金 - 赫胥黎模型的适度修改,但展现出了一些霍奇金 - 赫胥黎模型所没有的行为。这些行为包括明显的失活偏移(对于某些参数值)、在持续去极化下关闭钠电流所测得的失活时间常数与双脉冲实验所测得的失活时间常数之间的差异、持续电流刺激下的跳变运行以及对缓慢上升电流的适应性。