Electrical bistability in a neuron model with monostable dendritic and axosomatic membranes

被引:0
|
作者
S. M. Korogod
I. B. Kulagina
机构
[1] National Academy of Sciences of Ukraine,Dnepropetrovsk Division of International Center for Molecular Physiology
[2] Dnepropetrovsk State University,undefined
来源
Neurophysiology | 2000年 / 32卷
关键词
neuron models; electrical bistability; NMDA conductance; electrical properties of dendrites;
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中图分类号
学科分类号
摘要
In a two-compartment mathematical model, we studied the reason for and conditions of manifestation of electrical bistability in a neuron composed of monostable parts. One compartment of the model simulated the dendrites; their membrane was monostable at high depolarization and characterized by an N-shaped steady current-voltage (I–V) characteristic endowed by inward synaptic current through voltage-dependent channels sensitive to N-methyl-D-aspartate (NMDA). Another compartment simulated the axosomatic region with a positively sloped linearizedI–V characteristic of the membrane monostable at the resting membrane potential. For the whole cell, bistability was obvious at a subcritical intensity of NMDA activation; the reason was the current directed from the more depolarized dendritic region into the somatic region, and the necessary condition was that the above somatopetal core current must exceed the net inward transmembrane current (the latter was the sum of the inward synaptic and outward passive extrasynaptic currents) of the dendritic compartment. This relation essentially depended on the size of the dendrites.
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页码:73 / 76
页数:3
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