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人类睡眠脑电图地形图中的个体“指纹”。

Individual 'fingerprints' in human sleep EEG topography.

作者信息

Finelli L A, Achermann P, Borbély A A

机构信息

Institute of Pharmacology and Toxicology University of Zürich CH-8057, Zürich, Switzerland.

出版信息

Neuropsychopharmacology. 2001 Nov;25(5 Suppl):S57-62. doi: 10.1016/S0893-133X(01)00320-7.

Abstract

The sleep EEG of eight healthy young men was recorded from 27 derivations during a baseline night and a recovery night after 40 h of waking. Individual power maps of the nonREM sleep EEG were calculated for the delta, theta, alpha, sigma and beta range. The comparison of the normalized individual maps for baseline and recovery sleep revealed very similar individual patterns within each frequency band. This high correspondence was quantified and statistically confirmed by calculating the Manhattan distance between all pairs of maps within and between individuals. Although prolonged waking enhanced power in the low-frequency range (0.75-10.5 Hz) and reduced power in the high-frequency range (13.25-25 Hz), only minor effects on the individual topography were observed. Nevertheless, statistical analysis revealed frequency-specific regional effects of sleep deprivation. The results demonstrate that the pattern of the EEG power distribution in nonREM sleep is characteristic for an individual and may reflect individual traits of functional anatomy.

摘要

在基线夜间和清醒40小时后的恢复夜间,从27个导联记录了8名健康年轻男性的睡眠脑电图。计算了非快速眼动睡眠脑电图在δ、θ、α、σ和β频段的个体功率图。对基线睡眠和恢复睡眠的标准化个体图进行比较,发现在每个频段内个体模式非常相似。通过计算个体内部和个体之间所有成对图之间的曼哈顿距离,对这种高度一致性进行了量化并得到了统计学证实。尽管长时间清醒会增强低频范围(0.75 - 10.5赫兹)的功率并降低高频范围(13.25 - 25赫兹)的功率,但对个体地形图的影响很小。然而,统计分析揭示了睡眠剥夺的频率特异性区域效应。结果表明,非快速眼动睡眠中脑电图功率分布模式是个体特有的,可能反映了功能解剖学的个体特征。

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