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Global field synchronization reveals rapid eye movement sleep as most synchronized brain state in the human EEG

机译:全球场同步揭示了快速眼动睡眠,这是人类脑电图中最同步的大脑状态

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Sleep is characterized by a loss of consciousness, which has been attributed to a breakdown of functional connectivity between brain regions. Global field synchronization (GFS) can estimate functional connectivity of brain processes. GFS is a frequency-dependent measure of global synchronicity of multi-channel EEG data. Our aim was to explore and extend the hypothesis of disconnection during sleep by comparing GFS spectra of different vigilance states. The analysis was performed on eight healthy adult male subjects. EEG was recorded during a baseline night, a recovery night after 40?h of sustained wakefulness and at 3?h intervals during the 40?h of wakefulness. Compared to non-rapid eye movement (NREM) sleep, REM sleep showed larger GFS values in all frequencies except in the spindle and theta bands, where NREM sleep showed a peak in GFS. Sleep deprivation did not affect GFS spectra in REM and NREM sleep. Waking GFS values were lower compared with REM and NREM sleep except for the alpha band. Waking alpha GFS decreased following sleep deprivation in the eyes closed condition only. Our surprising finding of higher synchrony during REM sleep challenges the view of REM sleep as a desynchronized brain state and may provide insight into the function of REM sleep.
机译:睡眠的特征是意识丧失,这是由于大脑区域之间的功能连通性下降所致。全局场同步(GFS)可以估计大脑过程的功能连接性。 GFS是多通道EEG数据的全局同步性的频率依赖性度量。我们的目的是通过比较不同警惕状态的GFS谱图来探索和扩展睡眠中断开连接的假设。对八名健康成年男性受试者进行了分析。脑电图记录在基线夜间,持续清醒40小时后的恢复夜以及40清醒期间的3小时间隔内。与非快速眼动(NREM)睡眠相比,REM睡眠在所有频率上均显示出较大的GFS值,除了纺锤体和theta波段外,其中NREM睡眠在GFS中出现峰值。睡眠剥夺不影响REM和NREM睡眠中的GFS光谱。除阿尔法谱带外,与REM和NREM睡眠相比,苏醒的GFS值较低。仅在闭眼的情况下,睡眠不足后醒来的αGFS下降。我们在快速眼动睡眠期间获得更高同步性的令人惊讶的发现挑战了快速眼动睡眠作为失步的大脑状态的观点,并可能提供对快速眼动睡眠功能的洞察力。

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