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自主干预对大鼠胃电活动与睡眠-觉醒相关变化的影响。

The influence of autonomic interventions on the sleep-wake-related changes in gastric myoelectrical activity in rats.

机构信息

Department of Surgery, Buddhist Tzu Chi General Hospital, Hualien, Taiwan.

出版信息

Neurogastroenterol Motil. 2011 Jun;23(6):560-e208. doi: 10.1111/j.1365-2982.2011.01687.x. Epub 2011 Feb 22.

Abstract

BACKGROUND

Significant changes in autonomic activity occur at sleep-wake transitions and constitute an ideal setting for investigating the modulatory role of the autonomic nervous system on gastric myoelectrical activity (GMA).

METHODS

Using continuous power spectral analysis of electroencephalogram, electromyogram, and electrogastromyogram (EGMG) data from freely moving rats that had undergone chemical sympathetomy and/or truncal vagotomy, sleep-wake-related fluctuations in GMA were compared among the intervention groups.

KEY RESULTS

The pattern and extent of fluctuations in EGMG power across the sleep-wake states was blunted most significantly in rats undergoing both chemical sympathectomy and truncal vagotomy. The effect of these interventions also varied with respect to the transition between different sleep-wake states. The most prominent influences were observed between active waking and quiet sleep and between paradoxical sleep and quiet sleep.

CONCLUSIONS & INFERENCES: The sleep-wake-related fluctuations in EGMG power are a result of joint contributions from both sympathetic and vagal innervation. Vagotomy mainly resulted in a reduction in EGMG power, while the role of sympathetic innervation was unveiled by vagotomy and this was reflected most obviously in the extent of the fluctuations in EGMG power.

摘要

背景

自主活动在睡眠-觉醒转换时会发生显著变化,这构成了研究自主神经系统对胃肌电活动(GMA)调制作用的理想环境。

方法

使用化学交感神经切断术和/或胸段迷走神经切断术的自由活动大鼠的脑电图、肌电图和胃电图(EGMG)数据的连续功率谱分析,比较了干预组之间与睡眠-觉醒相关的 GMA 波动。

主要结果

在接受化学交感神经切断术和胸段迷走神经切断术的大鼠中,EGMG 功率在睡眠-觉醒状态之间的波动模式和幅度受到的抑制最为显著。这些干预的影响还因不同的睡眠-觉醒状态之间的转换而有所不同。最明显的影响发生在主动觉醒和安静睡眠之间,以及异相睡眠和安静睡眠之间。

结论和推断

EGMG 功率的睡眠-觉醒相关波动是交感和迷走神经支配共同作用的结果。迷走神经切断术主要导致 EGMG 功率降低,而交感神经支配的作用则通过迷走神经切断术揭示出来,这在 EGMG 功率波动幅度上表现得最为明显。

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