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与癫痫发作及电刺激相关的屏状核

The Claustrum in Relation to Seizures and Electrical Stimulation.

作者信息

Kurada Lalitha, Bayat Arezou, Joshi Sweta, Koubeissi Mohamad Z

机构信息

Department of Neurology, The George Washington University, Washington, DC, United States.

出版信息

Front Neuroanat. 2019 Feb 12;13:8. doi: 10.3389/fnana.2019.00008. eCollection 2019.

Abstract

The neural mechanisms of altered consciousness that accompanies most epileptic seizures are not known. We have reported alteration of consciousness resulting from electrical stimulation of the claustrum a depth electrode in a woman with refractory focal epilepsy. Additionally, there are reports that suggest possible claustral involvement in focal epilepsy, including MRI findings of bilaterally increased T2 signal intensity in patients with status epilepticus (SE). Although its cytoarchitecture and connectivity have been studied extensively, the precise role of the claustrum in consciousness processing, and, thus, its contribution to the semiology of dyscognitive seizures are still elusive. To investigate the role of the claustrum in rats, we studied the effect of high-frequency stimulation (HFS) of the claustrum on performance in the operant chamber. We also studied the inter-claustral and the claustro-hippocampal connectivity through cerebro-cerebral evoked potentials (CCEPs), and investigated the involvement of the claustrum in kainate (KA)-induced seizures. We found that HFS of the claustrum decreased the performance in the operant task in a manner that was proportional to the current intensity used. In this article, we present previously unpublished data about the effect of stimulating extra-claustral regions in the operant chamber task as a control experiment. In these animals, stimulation of the corpus callosum, the largest interhemispheric commissure, as well as the orbitofrontal cortex in the vicinity of the claustrum did not produce that same effect as with claustral stimulation. Additionally, CCEPs established the presence of effective connectivity between both claustra, as well as between the claustrum and bilateral hippocampi indicating that these connections may be part of the circuitry involved in alteration of consciousness in limbic seizures. Lastly, some seizures induced by KA injections showed an early involvement of the claustrum with later propagation to the hippocampi. Further work is needed to clarify the exact role of the claustrum in mediating alteration of consciousness during epileptic seizures.

摘要

大多数癫痫发作时伴随的意识改变的神经机制尚不清楚。我们曾报道过,在一名患有难治性局灶性癫痫的女性患者中,通过对屏状核(使用深度电极)进行电刺激导致了意识改变。此外,有报告表明屏状核可能参与局灶性癫痫,包括癫痫持续状态(SE)患者双侧T2信号强度增加的MRI表现。尽管其细胞结构和连接性已被广泛研究,但屏状核在意识处理中的精确作用,以及因此其对认知障碍性癫痫发作症状学的贡献仍不明确。为了研究大鼠中屏状核的作用,我们研究了屏状核高频刺激(HFS)对操作箱中行为表现的影响。我们还通过脑-脑诱发电位(CCEP)研究了屏状核之间以及屏状核与海马体之间的连接,并研究了屏状核在海藻酸(KA)诱导的癫痫发作中的参与情况。我们发现屏状核的高频刺激以与所用电流强度成比例的方式降低了操作任务中的表现。在本文中,我们展示了之前未发表的关于在操作箱任务中刺激屏状核以外区域作为对照实验的效果的数据。在这些动物中,刺激胼胝体(最大的半球间连合)以及屏状核附近的眶额皮质并未产生与屏状核刺激相同的效果。此外,脑-脑诱发电位证实了双侧屏状核之间以及屏状核与双侧海马体之间存在有效连接,表明这些连接可能是边缘系统癫痫发作时意识改变所涉及的神经回路的一部分。最后,一些由KA注射诱导的癫痫发作显示屏状核早期受累,随后扩散至海马体。需要进一步的研究来阐明屏状核在癫痫发作期间介导意识改变的确切作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d1f/6379271/fa54ec0a5727/fnana-13-00008-g0001.jpg

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