Stephanova D I
Central Laboratory of Biophysics, Bulgarian Academy of Sciences, Sofia.
Biol Cybern. 1990;64(2):129-34. doi: 10.1007/BF02331341.
The changes in the excitability of the reorganized axonal membrane in myelinated and demyelinated nerve fibres as well as the causes conditioning such changes have been investigated by paired stimulation during the first 30 ms of the recovery cycle. The variations of the action potential parameters (amplitude and velocity) are traced also. The simulation of the conduction along the normal fiber is based on the Frankenhaeuser and Huxley (1964) and Goldman and Albus (1968) equations, while the demyelination is considered to be an elongation of the nodes of Ranvier. The axonal membrane reorganization is achieved by means of potassium channel blocking and increase of the sodium-channel permeability. It is shown that potassium channels block decreases membrane excitability for the myelinated and demyelinated fibres in the cases of initial and paired stimulation. With increasing sodium-channel permeability on the background of the blocked potassium channels, the membrane excitability is increased. For the fibres with a reorganized membrane, a supernormality of the membrane excitability is obtained, the latter remaining unrecovered during the 30 ms cycle under investigation. The supernormality of the excitability grows from the demyelinated fibre without reorganized membrane to the demyelinated fibre with reorganized one. For short interstimulus intervals, the second action potential propagates along the fibres with a reduced velocity and a decreased amplitude. No supernormality of the potential parameters (amplitude, velocity) is observed during the cycle up to 30 ms.(ABSTRACT TRUNCATED AT 250 WORDS)
在恢复周期的前30毫秒内,通过配对刺激研究了有髓和脱髓鞘神经纤维中重组轴突膜兴奋性的变化以及导致这种变化的原因。还追踪了动作电位参数(幅度和速度)的变化。沿正常纤维传导的模拟基于弗兰肯豪泽和赫胥黎(1964年)以及戈德曼和阿尔布斯(1968年)的方程,而脱髓鞘被认为是郎飞结的延长。轴突膜重组是通过钾通道阻断和钠通道通透性增加来实现的。结果表明,在初始刺激和配对刺激的情况下,钾通道阻断会降低有髓和脱髓鞘纤维的膜兴奋性。在钾通道被阻断的背景下,随着钠通道通透性的增加,膜兴奋性增加。对于膜重组的纤维,可获得膜兴奋性的超常期,在研究的30毫秒周期内,后者仍未恢复。兴奋性的超常期从无膜重组的脱髓鞘纤维到有膜重组的脱髓鞘纤维逐渐增加。对于短的刺激间隔,第二个动作电位沿纤维传播的速度降低且幅度减小。在长达30毫秒的周期内未观察到电位参数(幅度、速度)的超常期。(摘要截断于250字)