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脑电图癫痫发作维持期间神经元的去极化阻滞

Depolarization block of neurons during maintenance of electrographic seizures.

作者信息

Bikson Marom, Hahn Philip J, Fox John E, Jefferys John G R

机构信息

Department of Neurophysiology, Division of Neuroscience, The Medical School, University of Birmingham, Birmingham B15 2TT, United Kingdom.

出版信息

J Neurophysiol. 2003 Oct;90(4):2402-8. doi: 10.1152/jn.00467.2003. Epub 2003 Jun 11.

Abstract

Epileptic seizures are associated with neuronal hyperactivity. Here, however, we investigated whether continuous neuronal firing is necessary to maintain electrographic seizures. We studied a class of "low-Ca2+" ictal epileptiform bursts, induced in rat hippocampal slices, that are characterized by prolonged (2-15 s) interruptions in population spike generation. We found that, during these interruptions, neuronal firing was suppressed rather than desynchronized. Intracellular current injection, application of extracellular uniform electric fields, and antidromic stimulation showed that the source of action potential disruption was depolarization block. The duration of the extracellular potassium transients associated with each ictal burst was not affected by disruptions in neuronal firing. Application of phenytoin or veratridine indicated a critical role for the persistent sodium current in maintaining depolarization block. Our results show that continuous neuronal firing is not necessary for the maintenance of experimental electrographic seizures.

摘要

癫痫发作与神经元活动过度有关。然而,在此我们研究了持续的神经元放电对于维持脑电图癫痫发作是否必要。我们研究了一类在大鼠海马切片中诱导产生的“低钙”发作性癫痫样爆发,其特征是群体峰电位产生出现长时间(2 - 15秒)中断。我们发现,在这些中断期间,神经元放电受到抑制而非去同步化。细胞内电流注入、施加细胞外均匀电场以及逆向刺激表明动作电位中断的根源是去极化阻滞。与每次发作性爆发相关的细胞外钾离子瞬变持续时间不受神经元放电中断的影响。苯妥英或藜芦碱的应用表明持续性钠电流在维持去极化阻滞中起关键作用。我们的结果表明,持续的神经元放电对于维持实验性脑电图癫痫发作并非必要。

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