School of Science, China Pharmaceutical University, Nanjing, China.
School of Computer, Chongqing University, Chongqing, China.
Sleep. 2021 Apr 9;44(4). doi: 10.1093/sleep/zsaa226.
Quantifying the complexity of the EEG signal during prolonged wakefulness and during sleep is gaining interest as an additional mean to characterize the mechanisms associated with sleep and wakefulness regulation. Here, we characterized how EEG complexity, as indexed by Multiscale Permutation Entropy (MSPE), changed progressively in the evening prior to light off and during the transition from wakefulness to sleep. We further explored whether MSPE was able to discriminate between wakefulness and sleep around sleep onset and whether MSPE changes were correlated with spectral measures of the EEG related to sleep need during concomitant wakefulness (theta power-Ptheta: 4-8 Hz). To address these questions, we took advantage of large datasets of several hundred of ambulatory EEG recordings of individual of both sexes aged 25-101 years. Results show that MSPE significantly decreases before light off (i.e. before sleep time) and in the transition from wakefulness to sleep onset. Furthermore, MSPE allows for an excellent discrimination between pre-sleep wakefulness and early sleep. Finally, we show that MSPE is correlated with concomitant Ptheta. Yet, the direction of the latter correlation changed from before light-off to the transition to sleep. Given the association between EEG complexity and consciousness, MSPE may track efficiently putative changes in consciousness preceding sleep onset. An MSPE stands as a comprehensive measure that is not limited to a given frequency band and reflects a progressive change brain state associated with sleep and wakefulness regulation. It may be an effective mean to detect when the brain is in a state close to sleep onset.
量化长时间清醒和睡眠期间 EEG 信号的复杂性正成为一种额外的手段,用于描述与睡眠和觉醒调节相关的机制。在这里,我们描述了多尺度排列熵 (MSPE) 作为 EEG 复杂性的指标,是如何在熄灯前的晚上和从清醒到睡眠的过渡过程中逐渐变化的。我们进一步探讨了 MSPE 是否能够在睡眠开始前后区分清醒和睡眠,以及 MSPE 的变化是否与同时清醒期间与睡眠需求相关的 EEG 频谱测量(θ功率-Ptheta:4-8 Hz)相关。为了解决这些问题,我们利用了数百名年龄在 25-101 岁的个体的数百个动态 EEG 记录的大型数据集。结果表明,MSPE 在熄灯前(即睡眠时间前)和从清醒到睡眠开始的过渡期间显著降低。此外,MSPE 可以极好地区分睡前清醒和早期睡眠。最后,我们表明 MSPE 与同时发生的 Ptheta 相关。然而,这种相关性的方向从熄灯前到向睡眠过渡发生了变化。鉴于 EEG 复杂性与意识之间的关联,MSPE 可能会有效地跟踪睡眠开始前意识的潜在变化。MSPE 是一种全面的测量方法,不仅限于特定的频带,反映了与睡眠和觉醒调节相关的大脑状态的渐进变化。它可能是检测大脑何时接近睡眠开始状态的有效手段。