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直接电刺激揭示背侧前脑岛在狂喜感中的作用。

The role of the dorsal anterior insula in ecstatic sensation revealed by direct electrical brain stimulation.

机构信息

Aix Marseille Univ, INSERM, INS, Inst Neurosci Syst, Marseille, France; APHM, Timone Hospital, Clinical Neurophysiology and Epileptology Department, Marseille, 13005, France.

Aix Marseille Univ, INSERM, INS, Inst Neurosci Syst, Marseille, France; APHM, Timone Hospital, Clinical Neurophysiology and Epileptology Department, Marseille, 13005, France.

出版信息

Brain Stimul. 2019 Sep-Oct;12(5):1121-1126. doi: 10.1016/j.brs.2019.06.005. Epub 2019 Jun 5.

Abstract

BACKGROUND

An ecstatic phenomenon is an altered state of consciousness with a sense of "hyper-reality", and a complete present-moment awareness with a feeling of union with the Universe. A better understanding of the network mechanisms underlying this fascinating subjective experience may help to unravel some mysteries of human consciousness. Insula has been recently proposed to be a key region to elicit these symptoms.

OBJECTIVE/HYPOTHESIS: We studied functional connectivity changes in several brain areas during the induction of ecstatic auras by direct electrical stimulation of the dorsal anterior insular cortex in patients with refractory focal epilepsy implanted with intracerebral electrodes (stereotactic-EEG, SEEG) in the context of their pre-surgical evaluation.

METHODS

Three patients were selected on the basis of the occurrence of ecstatic symptoms triggered by direct intracerebral electrical stimulation (ES) of the antero-dorsal part of the insula. ES was performed (50 Hz, 1.5-2.1 mA, in a bipolar fashion to each contact in the gray matter during a 3 s period) to map functional cortices and trigger habitual seizures. One stimulation inducing ecstatic changes in each patient was analyzed. Functional connectivity analysis was performed by measuring interdependencies (nonlinear regression analysis based on the h coefficient) between SEEG signals before and after stimulations.

RESULTS

In all patients, only the stimulation of dorsal anterior insula was able to reproduce an ecstatic aura. We observed a significant increase of functional connectivity values between several brain regions in the immediate period following stimulations. The most commonly implicated region was the dorsal anterior insula. Out-degrees (a measure intended to identify leading structures in a network) identified the dorsal anterior insula as the most common leading region in the induced networks.

CONCLUSION(S): Our findings bring additional support in favor of a major role played by the dorsal anterior insula in ecstatic experiences.

摘要

背景

狂喜现象是一种意识改变状态,具有“超现实”感,以及对当下时刻的完全意识感,同时感觉与宇宙融为一体。更好地理解这种迷人的主观体验背后的网络机制,可能有助于揭开人类意识的一些奥秘。最近有人提出,脑岛是引发这些症状的关键区域。

目的/假设:我们研究了 3 名接受颅内电极(立体定向脑电图,SEEG)植入的难治性局灶性癫痫患者在手术前评估过程中,通过直接电刺激背侧前脑岛皮层诱发狂喜光环时,几个大脑区域的功能连接变化。

方法

根据直接颅内电刺激(ES)前脑岛背侧前部引起的狂喜症状的发生,选择了 3 名患者。ES 以双极方式在灰质内每个触点(50Hz,1.5-2.1mA,持续 3s)进行,以定位功能皮质并引发习惯性癫痫发作。分析了每位患者在一次刺激中诱发狂喜变化的情况。通过在刺激前后测量 SEEG 信号之间的相关性(基于 h 系数的非线性回归分析),进行功能连接分析。

结果

在所有患者中,只有背侧前脑岛的刺激才能重现狂喜光环。我们观察到刺激后立即出现几个脑区功能连接值显著增加。最常涉及的区域是背侧前脑岛。出度(一种用于识别网络中主导结构的度量)确定背侧前脑岛是诱导网络中最常见的主导区域。

结论

我们的发现为背侧前脑岛在狂喜体验中扮演的主要角色提供了更多支持。

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