首页> 美国卫生研究院文献>The Journal of Physiology >Variation of electroencephalographic activity during non-rapid eye movement and rapid eye movement sleep with phase of circadian melatonin rhythm in humans.
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Variation of electroencephalographic activity during non-rapid eye movement and rapid eye movement sleep with phase of circadian melatonin rhythm in humans.

机译:人类快速眼动和快速眼动睡眠期间脑电图活动的变化与昼夜节律性褪黑素节律有关。

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摘要

1. The circadian pacemaker regulates the timing, structure and consolidation of human sleep. The extent to which this pacemaker affects electroencephalographic (EEG) activity during sleep remains unclear. 2. To investigate this, a total of 1.22 million power spectra were computed from EEGs recorded in seven men (total, 146 sleep episodes; 9 h 20 min each) who participated in a one-month-long protocol in which the sleep-wake cycle was desynchronized from the rhythm of plasma melatonin, which is driven by the circadian pacemaker. 3. In rapid eye movement (REM) sleep a small circadian variation in EEG activity was observed. The nadir of the circadian rhythm of alpha activity (8.25-10.5 Hz) coincided with the end of the interval during which plasma melatonin values were high, i.e. close to the crest of the REM sleep rhythm. 4. In non-REM sleep, variation in EEG activity between 0.25 and 11.5 Hz was primarily dependent on prior sleep time and only slightly affected by circadian phase, such that the lowest values coincided with the phase of melatonin secretion. 5. In the frequency range of sleep spindles, high-amplitude circadian rhythms with opposite phase positions relative to the melatonin rhythm were observed. Low-frequency sleep spindle activity (12.25-13.0 Hz) reached its crest and high-frequency sleep spindle activity (14.25-15.5 Hz) reached its nadir when sleep coincided with the phase of melatonin secretion. 6. These data indicate that the circadian pacemaker induces changes in EEG activity during REM and non-REM sleep. The changes in non-REM sleep EEG spectra are dissimilar from the spectral changes induced by sleep deprivation and exhibit a close temporal association with the melatonin rhythm and the endogenous circadian phase of sleep consolidation.
机译:1.生物钟起搏器调节人类睡眠的时间,结构和巩固。这种起搏器在睡眠期间影响脑电图(EEG)活动的程度尚不清楚。 2.为了对此进行研究,根据参加一个月时间方案(睡眠-唤醒)的七名男子(总共146次睡眠发作;每人9 h 20分钟)中记录的脑电图,计算出总共122万个功率谱周期与昼夜节律起搏器驱动的血浆褪黑激素节律不同步。 3.在快速眼动(REM)睡眠中,观察到脑电活动的昼夜节律变化。 α活动的昼夜节律的最低点(8.25-10.5 Hz)与血浆褪黑激素值高的间隔的结束相吻合,即接近REM睡眠节律的波峰。 4.在非快速眼动睡眠中,EEG活动在0.25和11.5 Hz之间的变化主要取决于先前的睡眠时间,并且仅受昼夜节律期的影响很小,因此最低值与褪黑激素分泌期一致。 5.在睡眠纺锤体的频率范围内,观察到相对于褪黑激素节律具有相反相位的高振幅昼夜节律。当睡眠与褪黑激素分泌阶段重合时,低频睡眠纺锤体活动(12.25-13.0 Hz)达到峰值,而高频睡眠纺锤体活动(14.25-15.5 Hz)达到最低点。 6.这些数据表明,在快速眼动和非快速眼动睡眠期间,昼夜节律起搏器可诱发脑电活动的改变。非快速眼动睡眠脑电图谱的变化与睡眠剥夺引起的谱变化不同,并且与褪黑激素节律和睡眠巩固的内生昼夜节律时间密切相关。

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