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Long-range alpha and beta and short-range gamma EEG synchronization distinguishes phasic and tonic REM periods

机译:远程alpha和beta和短程伽玛eeg同步区分凌性和滋补症时期

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摘要

Rapid eye movement (REM) sleep is characterized by the alternation of two markedly different microstates, phasic and tonic REM. These periods differ in awakening and arousal thresholds, sensory processing, and spontaneous cortical oscillations. Previous studies indicate that although in phasic REM, cortical activity is independent of the external environment, attentional functions and sensory processing are partially maintained during tonic periods. Large-scale synchronization of oscillatory activity, especially in the α- and β-frequency ranges, can accurately distinguish different states of vigilance and cognitive processes of enhanced alertness and attention. Therefore, we examined long-range inter- and intrahemispheric as well as short-range electroencephalographic synchronization during phasic and tonic REM periods quantified by the weighted phase lag index. Based on the nocturnal polysomnographic data of 19 healthy adult participants, we showed that long-range inter- and intrahemispheric α and β synchrony was enhanced in tonic REM states in contrast to phasic ones, and resembled α and β synchronization of resting wakefulness. On the other hand, short-range synchronization within the γ-frequency range was higher in phasic compared with tonic periods. Increased short-range synchrony might reflect local and inwardly driven sensorimotor activity during phasic REM periods, whereas enhanced long-range synchrony might index frontoparietal activity that reinstates environmental alertness after phasic REM periods.
机译:快速的眼睛运动(REM)睡眠的特征在于两个明显不同的微生物,相位和补品REM的交替。这些时期在唤醒和唤醒阈值,感觉加工和自发皮质振荡方面不同。以前的研究表明,尽管在相位次数中,皮质活动与外部环境无关,但在补品期间部分保持注意力功能和感官处理。振荡活动的大规模同步,特别是在α-和β频率范围内,可以准确地区分各种警惕和认知过程的增强的警觉性和关注。因此,我们在由加权相滞指数上量化的相位和补品REM周期期间检查了长距离和内肌肉以及短距离的脑电图同步。基于19个健康成年参与者的夜间多差距数据,我们表明,与相位相比之下,在Tonic REM状态下,在Tonic REM状态下增强了远程和内胃部的α和β同步,并且类似于α和β同步休息觉醒。另一方面,与补品时段相比,γ频率范围内的短距离同步较高。增加的短距离同步可能会在相位序列期间反映局部和内侧驱动的感觉运动活动,而增强的远程同步可能会指向临时活动的前期活动,以便在相位的REM期后恢复环境警报。

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