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对大脑一个小区域进行电刺激会可逆地扰乱意识。

Electrical stimulation of a small brain area reversibly disrupts consciousness.

作者信息

Koubeissi Mohamad Z, Bartolomei Fabrice, Beltagy Abdelrahman, Picard Fabienne

机构信息

Department of Neurology, George Washington University, 2150 Pennsylvania Avenue, Suite 9-405, Washington, DC 20037, USA.

INSERM, U751, Laboratoire de Neurophysiologie et Neuropsychologie, Marseille F-13005, France; Aix Marseille University, Faculté de Médecine, Marseille F-13005, France; CHU Timone, Service de Neurophysiologie Clinique, Assistance Publique des Hôpitaux de Marseille, Marseille F-13005, France.

出版信息

Epilepsy Behav. 2014 Aug;37:32-5. doi: 10.1016/j.yebeh.2014.05.027. Epub 2014 Jun 24.

Abstract

The neural mechanisms that underlie consciousness are not fully understood. We describe a region in the human brain where electrical stimulation reproducibly disrupted consciousness. A 54-year-old woman with intractable epilepsy underwent depth electrode implantation and electrical stimulation mapping. The electrode whose stimulation disrupted consciousness was between the left claustrum and anterior-dorsal insula. Stimulation of electrodes within 5mm did not affect consciousness. We studied the interdependencies among depth recording signals as a function of time by nonlinear regression analysis (h(2) coefficient) during stimulations that altered consciousness and stimulations of the same electrode at lower current intensities that were asymptomatic. Stimulation of the claustral electrode reproducibly resulted in a complete arrest of volitional behavior, unresponsiveness, and amnesia without negative motor symptoms or mere aphasia. The disruption of consciousness did not outlast the stimulation and occurred without any epileptiform discharges. We found a significant increase in correlation for interactions affecting medial parietal and posterior frontal channels during stimulations that disrupted consciousness compared with those that did not. Our findings suggest that the left claustrum/anterior insula is an important part of a network that subserves consciousness and that disruption of consciousness is related to increased EEG signal synchrony within frontal-parietal networks.

摘要

意识背后的神经机制尚未完全被理解。我们描述了人类大脑中的一个区域,电刺激在此区域可重复性地扰乱意识。一名患有顽固性癫痫的54岁女性接受了深度电极植入和电刺激图谱绘制。其刺激扰乱意识的电极位于左侧屏状核和前背侧岛叶之间。对5毫米范围内的电极进行刺激不会影响意识。我们通过非线性回归分析(h(2)系数)研究了在改变意识的刺激期间以及在较低电流强度下对同一电极进行的无症状刺激期间,深度记录信号之间作为时间函数的相互依赖性。对屏状核电极的刺激可重复性地导致意志行为完全停止、无反应和失忆,且无负面运动症状或单纯失语。意识的扰乱并不比刺激持续时间更长,且在没有任何癫痫样放电的情况下发生。我们发现,与未扰乱意识的刺激相比,在扰乱意识的刺激期间,影响内侧顶叶和额叶后部通道的相互作用的相关性显著增加。我们的研究结果表明,左侧屏状核/前岛叶是维持意识的神经网络的重要组成部分,意识的扰乱与额顶叶网络内脑电图信号同步性增加有关。

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