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皮质扩散性抑制与癫痫发作之间的相互作用。

Interplay between Cortical Spreading Depolarization and Seizures.

作者信息

Kramer Daniel R, Fujii Tatsuhiro, Ohiorhenuan Ifije, Liu Charles Y

机构信息

Department of Neurosurgery, University of Southern California, Los Angeles, CA, USA.

出版信息

Stereotact Funct Neurosurg. 2017;95(1):1-5. doi: 10.1159/000452841. Epub 2017 Jan 14.

Abstract

Cortical spreading depolarization (CSD) is an electrophysiologic phenomenon found mostly in the setting of neurologic injury resulting in the disturbance of ion homeostasis and leading to changes in the local vascular response. The bioelectric etiology of CSD shares similarities to those in epileptic disorders, yet the relationship between seizures and CSD is unclear, with several studies observing cortical depression before, during, and after seizure activity, thus obscuring our understanding of whether CSD activity potentiates or limits seizures and vice versa. Cortical sampling has exhibited how the redistribution of ion concentrations in the intra- and extracellular environments interplay between the excitation of seizures and the electrical depression of CSD. Modeling of both environments has suggested that CSD synchronizes the affected tissue, creating a favorable environment for seizure activity; however, other studies have demonstrated the opposite: epileptiform activity initiating waves of CSD. Further studies have underscored the role of the vascular response and subsequent ischemia in CSD that contributes to epileptogenesis. Investigations in migraine, traumatic brain injury, and other neurologic injuries suggest that several drugs may target CSD. Manipulations in the occurrence and nature of CSD can potentially alter the threshold for seizure activity, and perhaps minimize immediate and long-term sequelae associated with epilepsy.

摘要

皮层扩散性去极化(CSD)是一种电生理现象,主要见于神经损伤的情况下,导致离子稳态紊乱,并引起局部血管反应的改变。CSD的生物电病因与癫痫疾病有相似之处,但癫痫发作与CSD之间的关系尚不清楚,多项研究观察到癫痫活动之前、期间和之后的皮层抑制,因此我们难以理解CSD活动是增强还是限制癫痫发作,反之亦然。皮层采样显示了细胞内和细胞外环境中离子浓度的重新分布如何在癫痫发作的兴奋和CSD的电抑制之间相互作用。对这两种环境的建模表明,CSD使受影响的组织同步,为癫痫活动创造了有利环境;然而,其他研究则得出了相反的结果:癫痫样活动引发CSD波。进一步的研究强调了血管反应和随后的缺血在CSD中的作用,这有助于癫痫的发生。对偏头痛、创伤性脑损伤和其他神经损伤的研究表明,几种药物可能作用于CSD。对CSD的发生和性质进行调控可能会改变癫痫活动的阈值,并有可能将与癫痫相关的近期和长期后遗症降至最低。

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