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The Spatiotemporal Pattern of the Human Electroencephalogram at Sleep Onset After a Period of Prolonged Wakefulness

机译:长时间的清醒后睡眠开始时人类脑电图的时空模式

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摘要

During the sleep onset (SO) process, the human electroencephalogram (EEG) is characterized by an orchestrated pattern of spatiotemporal changes. Sleep deprivation (SD) strongly affects both wake and sleep EEG, but a description of the topographical EEG power spectra and oscillatory activity during the wake-sleep transition after a period of prolonged wakefulness is still missing. The increased homeostatic sleep pressure should induce an earlier onset of sleep-related EEG oscillations. The aim of the present study was to assess the spatiotemporal EEG pattern at SO following SD. A dataset of a previous study was analyzed. We assessed the spatiotemporal EEG changes (19 cortical derivations) during the SO (5 min before vs. 5 min after the first epoch of Stage 2) of a recovery night after 40 h of SD in 39 healthy subjects, analyzing the EEG power spectra (fast Fourier transform) and the oscillatory activity [better oscillation (BOSC) detection method]. The spatiotemporal pattern of the EEG power spectra mostly confirmed the changes previously observed during the wake-sleep transition at baseline. The comparison between baseline and recovery showed a wide increase of the post- vs. pre-SO ratio during the recovery night in the frequency bins ≤10 Hz. We found a predominant alpha oscillatory rhythm in the pre-SO period, while after SO the theta oscillatory activity was prevalent. The oscillatory peaks showed a generalized increase in all frequency bands from delta to sigma with different predominance, while beta activity increased only in the fronto-central midline derivations. Overall, the analysis of the EEG power replicated the topographical pattern observed during a baseline night of sleep but with a stronger intensity of the SO-induced changes in the frequencies ≤10 Hz, and the detection of the rhythmic activity showed the rise of several oscillations at SO after SD that was not observed during the wake-sleep transition at baseline (e.g., alpha and frontal theta in correspondence of their frequency peaks). Beyond confirming the local nature of the EEG pattern at SO, our results show that SD has an impact on the spatiotemporal modulation of cortical activity during the falling-asleep process, inducing the earlier emergence of sleep-related EEG oscillations.
机译:在睡眠发作(SO)过程中,人脑电图(EEG)的特征是时空变化的协调模式。睡眠剥夺(SD)强烈影响苏醒和睡眠EEG,但是仍然缺少长时间持续苏醒后苏醒过渡期间的地形EEG功率谱和振荡活动的描述。稳态睡眠压力的升高应引起与睡眠有关的脑电图振荡的较早发作。本研究的目的是评估SD后SO的时空EEG模式。分析了先前研究的数据集。我们评估了39名健康受试者在SD发作40小时后的恢复夜中,SO期间(第2阶段第一个时期之前5分钟与5分钟之前5分钟之间)的时空EEG变化(19个皮质衍生),分析了EEG功率谱(快速傅里叶变换)和振荡活动[更好的振荡(BOSC)检测方法]。脑电功率谱的时空模式主要证实了基线时从觉醒过渡期间先前观察到的变化。基线与恢复之间的比较表明,在≤10 Hz的频率仓中,恢复夜晚期间SO后与前SO的比率大大增加。我们在SO前期发现了一个主要的α振荡节律,而在SO后theta振荡活跃。振荡峰表明,从三角洲到西格玛的所有频段都有普遍的增加,而优势却不同,而β活性仅在额中中线导数中增加。总体而言,对脑电图功率的分析复制了在基准睡眠期间观察到的地形图,但SO诱导的≤10Hz频率变化的强度更大,对节奏活动的检测显示出几次振荡的上升在SD之后的SO处,在基线的睡眠-睡眠过渡期间未观察到(例如,α和额叶theta与它们的频率峰值相对应)。我们的结果不仅证实了脑电图模式的局部性质,而且还表明SD对入睡过程中皮质活动的时空调制有影响,并导致与睡眠有关的脑电图振荡的较早出现。

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