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健康男性志愿者静息状态下与γ-羟基丁酸相关的神经元振荡和同步性

Neuronal oscillations and synchronicity associated with gamma-hydroxybutyrate during resting-state in healthy male volunteers.

作者信息

von Rotz Robin, Kometer Michael, Dornbierer Dario, Gertsch Jürg, Salomé Gachet M, Vollenweider Franz X, Seifritz Erich, Bosch Oliver G, Quednow Boris B

机构信息

Department of Psychiatry, Psychotherapy and Psychosomatics, Psychiatric Hospital, University of Zurich, Lenggstrasse 31, CH-8032, Zurich, Switzerland.

Neuropsychopharmacology and Brain Imaging Research Unit, Department of Psychiatry, Psychotherapy and Psychosomatics, University Hospital of Psychiatry Zurich, Lenggstrasse 31, 8032, Zurich, Switzerland.

出版信息

Psychopharmacology (Berl). 2017 Jul;234(13):1957-1968. doi: 10.1007/s00213-017-4603-z. Epub 2017 Apr 20.

Abstract

RATIONALE

Gamma-hydroxybutyrate (GHB) is a putative neurotransmitter, a drug of abuse, an anesthetic agent, and a treatment for neuropsychiatric disorders. In previous electroencephalography (EEG) studies, GHB was shown to induce an electrophysiological pattern of "paradoxical EEG-behavioral dissociation" characterized by increased delta and theta oscillations usually associated with sleep during awake states. However, no detailed source localization of these alterations and no connectivity analyses have been performed yet.

OBJECTIVES AND METHODS

We tested the effects of GHB (20 and 35 mg/kg, p.o.) on current source density (CSD), lagged phase synchronization (LPS), and global omega complexity (GOC) of neuronal oscillations in a randomized, double-blind, placebo-controlled, balanced cross-over study in 19 healthy, male participants using exact low-resolution electromagnetic tomography (eLORETA) of resting-state high-density EEG recordings.

RESULTS

Compared to placebo, GHB increased CSD of theta oscillations (5-7 Hz) in the posterior cingulate cortex (PCC) and alpha1 (8-10 Hz) oscillations in the anterior cingulate cortex. Higher blood plasma values were associated with higher LPS values of delta (2-4 Hz) oscillations between the PCC and the right inferior parietal lobulus. Additionally, GHB decreased GOC of alpha1 oscillations.

CONCLUSION

These findings indicate that alterations in neuronal oscillations in the PCC mediate the psychotropic effects of GHB. Theta oscillations emerging from the PCC in combination with stability of functional connectivity within the default mode network might explain the GHB-related "paradoxical EEG-behavioral dissociation." Our findings related to GOC suggest a reduced number of relatively independent neuronal processes, an effect that has also been demonstrated for other anesthetic agents.

摘要

理论依据

γ-羟基丁酸(GHB)是一种假定的神经递质、滥用药物、麻醉剂以及神经精神疾病的治疗药物。在之前的脑电图(EEG)研究中,GHB被证明能诱发一种“矛盾性EEG-行为解离”的电生理模式,其特征是在清醒状态下,δ波和θ波振荡增加,而这些振荡通常与睡眠相关。然而,尚未对这些改变进行详细的源定位,也未进行连接性分析。

目的和方法

在一项随机、双盲、安慰剂对照、平衡交叉研究中,我们对19名健康男性参与者口服20和35mg/kg的GHB,使用静息态高密度EEG记录的精确低分辨率电磁断层扫描(eLORETA),测试其对神经元振荡的电流源密度(CSD)、滞后相位同步(LPS)和全局ω复杂性(GOC)的影响。

结果

与安慰剂相比,GHB增加了后扣带回皮质(PCC)中θ振荡(5 - 7Hz)的CSD以及前扣带回皮质中α1振荡(8 - 10Hz)的CSD。较高的血浆值与PCC和右侧顶下小叶之间δ振荡(2 - 4Hz)的较高LPS值相关。此外,GHB降低了α1振荡的GOC。

结论

这些发现表明,PCC中神经元振荡的改变介导了GHB的精神otropic作用。PCC中出现的θ振荡与默认模式网络内功能连接的稳定性相结合,可能解释了与GHB相关的“矛盾性EEG-行为解离”。我们与GOC相关的发现表明相对独立的神经元过程数量减少,这种效应在其他麻醉剂中也有体现。

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