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对精神分裂症患者左侧前额叶皮层进行高频经颅随机噪声刺激可增加静息态脑电图额叶α波不对称性。

High-Frequency Transcranial Random Noise Stimulation over the Left Prefrontal Cortex Increases Resting-State EEG Frontal Alpha Asymmetry in Patients with Schizophrenia.

作者信息

Yeh Ta-Chuan, Huang Cathy Chia-Yu, Chung Yong-An, Im Jooyeon Jamie, Lin Yen-Yue, Ma Chin-Chao, Tzeng Nian-Sheng, Chang Chuan-Chia, Chang Hsin-An

机构信息

Department of Psychiatry, Tri-Service General Hospital, National Defense Medical Center, Taipei 114201, Taiwan.

Department of Life Sciences, National Central University, Taoyuan 320317, Taiwan.

出版信息

J Pers Med. 2022 Oct 7;12(10):1667. doi: 10.3390/jpm12101667.

Abstract

Reduced left-lateralized electroencephalographic (EEG) frontal alpha asymmetry (FAA), a biomarker for the imbalance of interhemispheric frontal activity and motivational disturbances, represents a neuropathological attribute of negative symptoms of schizophrenia. Unidirectional high-frequency transcranial random noise stimulation (hf-tRNS) can increase the excitability of the cortex beneath the stimulating electrode. Yet, it is unclear if hf-tRNS can modulate electroencephalographic FAA in patients with schizophrenia. We performed a randomized, double-blind, sham-controlled clinical trial to contrast hf-tRNS and sham stimulation for treating negative symptoms in 35 schizophrenia patients. We used electroencephalography to investigate if 10 sessions of hf-tRNS delivered twice-a-day for five consecutive weekdays would modulate electroencephalographic FAA in schizophrenia. EEG data were collected and FAA was expressed as the differences between common-log-transformed absolute power values of frontal right and left hemisphere electrodes in the alpha frequency range (8-12.5 Hz). We found that hf-tRNS significantly increased FAA during the first session of stimulation ( = 0.009) and at the 1-week follow-up ( = 0.004) relative to sham stimulation. However, FAA failed to predict and surrogate the improvement in the severity of negative symptoms with hf-tRNS intervention. Together, our findings suggest that modulating electroencephalographic frontal alpha asymmetry by using unidirectional hf-tRNS may play a key role in reducing negative symptoms in patients with schizophrenia.

摘要

左侧脑电图(EEG)额叶α波不对称性降低,这是一种反映半球间额叶活动失衡和动机障碍的生物标志物,代表了精神分裂症阴性症状的神经病理学特征。单向高频经颅随机噪声刺激(hf-tRNS)可以增加刺激电极下方皮质的兴奋性。然而,尚不清楚hf-tRNS是否能调节精神分裂症患者的脑电图额叶α波不对称性。我们进行了一项随机、双盲、假刺激对照的临床试验,以对比hf-tRNS和假刺激对35例精神分裂症患者阴性症状的治疗效果。我们使用脑电图来研究连续五个工作日每天两次进行10次hf-tRNS刺激是否会调节精神分裂症患者的脑电图额叶α波不对称性。收集脑电图数据,额叶α波不对称性表示为α频率范围(8-12.5Hz)内额叶右半球和左半球电极经常用对数转换后的绝对功率值之差。我们发现,相对于假刺激,hf-tRNS在刺激的第一阶段(P=0.009)和1周随访时(P=0.004)显著增加了额叶α波不对称性。然而,额叶α波不对称性未能预测和替代hf-tRNS干预后阴性症状严重程度的改善。总之,我们的研究结果表明,使用单向hf-tRNS调节脑电图额叶α波不对称性可能在减轻精神分裂症患者的阴性症状方面发挥关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b046/9604798/91fe54a21f1d/jpm-12-01667-g001.jpg

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