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静息态脑电图的频谱分解显示精神分裂症中独特的θ/α活动。

Spectral decomposition of resting state electroencephalogram reveals unique theta/alpha activity in schizophrenia.

机构信息

Neural Dynamics Laboratory, Research Service, VA Boston Healthcare System, Boston, Massachusetts, USA.

Department of Psychiatry, Harvard Medical School, Boston, Massachusetts, USA.

出版信息

Eur J Neurosci. 2024 Apr;59(8):1946-1960. doi: 10.1111/ejn.16244. Epub 2024 Jan 13.

Abstract

Resting state electroencephalographic (EEG) activity in schizophrenia (SZ) is frequently characterised by increased power at slow frequencies and/or a reduction of peak alpha frequency. Here we investigated the nature of these effects. As most studies to date have been limited by reliance on a priori frequency bands which impose an assumed structure on the data, we performed a data-driven analysis of resting EEG recorded in SZ patients and healthy controls (HC). The sample consisted of 39 chronic SZ and 36 matched HC. The EEG was recorded with a dense electrode array. Power spectral densities were decomposed via Varimax-rotated principal component analysis (PCA) over all participants and for each group separately. Spectral PCA was repeated at the cortical level on cortical current source density computed from standardised low resolution brain electromagnetic tomography. There was a trend for power in the theta/alpha range to be increased in SZ compared to HC, and peak alpha frequency was significantly reduced in SZ. PCA revealed that this frequency shift was because of the presence of a spectral component in the theta/alpha range (6-9 Hz) that was unique to SZ. The source distribution of the SZ > HC theta/alpha effect involved mainly prefrontal and parahippocampal areas. Abnormal low frequency resting EEG activity in SZ was accounted for by a unique theta/alpha oscillation. Other reports have described a similar phenomenon suggesting that the neural circuits oscillating in this range are relevant to SZ pathophysiology.

摘要

精神分裂症(SZ)患者的静息态脑电图(EEG)活动通常表现为慢频带功率增加和/或阿尔法峰值频率降低。在这里,我们研究了这些效应的本质。由于迄今为止的大多数研究都受到依赖于先验频带的限制,这些频带对数据施加了假设的结构,因此我们对 SZ 患者和健康对照(HC)的静息 EEG 进行了数据驱动的分析。该样本包括 39 名慢性 SZ 和 36 名匹配的 HC。EEG 是用密集电极阵列记录的。对所有参与者和每组分别进行最大方差旋转主成分分析(PCA)分解功率谱密度。在皮层水平上,对从标准低分辨率脑电磁层析成像计算得出的皮质电流源密度进行了光谱 PCA 的重复。与 HC 相比,SZ 中的θ/α 频带功率呈增加趋势,并且 SZ 中的阿尔法峰值频率显著降低。PCA 显示,这种频率偏移是由于 SZ 特有的θ/α 范围内(6-9 Hz)存在一个光谱成分。SZ>HC θ/α 效应的源分布主要涉及前额叶和海马旁回区域。SZ 中异常的低频静息 EEG 活动由独特的θ/α 振荡来解释。其他报告描述了类似的现象,表明在这个范围内振荡的神经回路与 SZ 的病理生理学有关。

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