Kuo Terry B J, Shaw Fu-Zen, Lai Ching J, Yang Cheryl C H
Institute of Brain Science, National Yang-Ming University, Taipei, Taiwan.
Sleep. 2008 Mar;31(3):311-20. doi: 10.1093/sleep/31.3.311.
To explore the role of autonomic nervous system in initiation of sleep-wake transitions.
Changes in cardiovascular variability during sleep-wake transitions of adult male Wistar-Kyoto rats on their normal daytime sleep were analyzed.
A 6-h daytime sleep-wakefulness recording session was performed.
Electroencephalogram and electromyogram (EMG) signals were subjected to continuous power spectral analysis, from which mean power frequency of the electroencephalogram (MPF) and power of the EMG were quantified. Active waking (AW), quiet sleep (QS), and paradoxical sleep (PS) were defined every 8 s according to corresponding MPF and EMG power. Continuous power spectral analysis of R-R intervals was performed to quantify its high-frequency power (HF, 0.6-2.4 Hz), low-frequency power (0.06-0.6 Hz) to HF ratio (LF/HF). MPF exhibited two phases of change during AW-QS and QS-AW transitions: a slowly changing first phase followed by a rapidly changing second phase. HF increased linearly with the decrease of MPF during the first phase of AW-QS transition whereas LF/HF increased linearly with the increase of MPF during the first phase of QS-AW transition. However, the LF/HF was not correlated with the HF. The MPF and HF exhibited only a rapidly changing phase during QS-PS transition. The LF/HF declined transiently during the QS-PS transition, followed by a sustained increase in PS.
The parasympathetic activity before falling asleep and the sympathetic activity before waking up change coincidentally with EEG frequency, and may respectively contain the messages of sleeping and waking drives.
探讨自主神经系统在睡眠 - 觉醒转换起始过程中的作用。
分析成年雄性Wistar - Kyoto大鼠正常白天睡眠期间睡眠 - 觉醒转换过程中心血管变异性的变化。
进行6小时的白天睡眠 - 清醒记录时段。
对脑电图和肌电图(EMG)信号进行连续功率谱分析,从中量化脑电图的平均功率频率(MPF)和EMG的功率。根据相应的MPF和EMG功率每8秒定义一次主动觉醒(AW)、安静睡眠(QS)和异相睡眠(PS)。对R - R间期进行连续功率谱分析以量化其高频功率(HF,0.6 - 2.4 Hz)、低频功率(0.06 - 0.6 Hz)以及低频与高频功率之比(LF/HF)。在AW - QS和QS - AW转换过程中,MPF呈现两个变化阶段:一个缓慢变化的第一阶段,随后是快速变化的第二阶段。在AW - QS转换的第一阶段,HF随着MPF的降低呈线性增加,而在QS - AW转换的第一阶段,LF/HF随着MPF的增加呈线性增加。然而,LF/HF与HF不相关。在QS - PS转换过程中,MPF和HF仅呈现一个快速变化阶段。在QS - PS转换过程中,LF/HF短暂下降,随后在PS中持续增加。
入睡之前的副交感神经活动和醒来之前的交感神经活动与脑电图频率同步变化,可能分别包含睡眠和觉醒驱动力的信息。