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计算机模拟表明,电场效应有助于癫痫样场电位的形成。

Computer simulations indicate that electrical field effects contribute to the shape of the epileptiform field potential.

作者信息

Traub R D, Dudek F E, Snow R W, Knowles W D

出版信息

Neuroscience. 1985 Aug;15(4):947-58. doi: 10.1016/0306-4522(85)90245-3.

Abstract

In the presence of convulsant drugs such as picrotoxin, neurons in the hippocampal-slice preparation generate synchronized depolarizing bursts. This synchrony occurs on a time scale of tens of milliseconds and is produced by excitatory synaptic interactions between neurons. The synaptic interactions themselves occur on a time scale of tens of milliseconds. The "epileptiform" local-field potential during such synchronized bursts is comb-shaped ("ringing"), whereas the field potential expected if action potentials in neighboring neurons were uncorrelated is noisy and not comb-shaped. This suggests that individual action potentials are locally synchronized on a time scale of 1 ms. We have previously shown, using computer simulations, that electrical interactions--mediated by currents flowing in the extracellular medium--can plausibly explain action-potential synchronization in experiments where chemical synapses are blocked. The present simulations demonstrate that electrical interactions can also account for action-potential synchronization--and thus the "ringing" shape of the field potential--during epileptiform bursts, where excitatory synapses are functional. The field potential is thus a modulating influence on, as well as a reflection of, underlying neuronal transmembrane events.

摘要

在存在如苦味毒等惊厥药物的情况下,海马切片标本中的神经元会产生同步去极化爆发。这种同步性出现在几十毫秒的时间尺度上,是由神经元之间的兴奋性突触相互作用产生的。突触相互作用本身也发生在几十毫秒的时间尺度上。在这种同步爆发期间的“癫痫样”局部场电位呈梳状(“振铃”),而如果相邻神经元的动作电位不相关,预期的场电位则是有噪声的且不是梳状的。这表明单个动作电位在1毫秒的时间尺度上局部同步。我们之前使用计算机模拟表明,在化学突触被阻断的实验中,由细胞外介质中流动的电流介导的电相互作用可以合理地解释动作电位同步。目前的模拟表明,在兴奋性突触发挥作用的癫痫样爆发期间,电相互作用也可以解释动作电位同步——以及场电位的“振铃”形状。因此,场电位既是潜在神经元跨膜事件的一种调节影响,也是其反映。

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