麻醉猫迷走神经传入和Sl区脑电图节律:电刺激和化学(苯二胍)刺激反应的相似性。

E Balzamo, Y Jammes
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引用次数: 13

摘要

在麻醉、人工通气、开胸的猫中,双侧刺激所有传入迷走神经纤维(脉冲持续时间:800微秒,30 Hz,训练持续时间30 ~ 40 s)在初级体感觉皮层(Sl区)的自发脑电图活动中产生显著变化。他们的特点是背景节奏下降,有去同步的趋势,纺锤波振幅和数量减少,模式改变,和/或诱发持续的快速节奏活动。这些效应在迷走神经刺激的1 ~ 5秒内发生。相反,当仅刺激有髓鞘迷走神经传入事件(100微秒)时,脑电图反应较弱或不存在。静脉注射苯二胍(PDG),用于刺激无髓鞘迷走神经感觉纤维,主要是肺传入神经,在前30秒内引起脑电图变化,与迷走神经电刺激期间观察到的变化相似。这些脑电图反应与诱发性低血压无关。颈椎双迷走神经切断术后脑电活动持续变化,纺锤波强度、持续时间和数量增强,与PDG诱导的延迟效应相似。目前通过三种测试剂(电或化学迷走神经刺激和双迷走神经切开术)获得的结果表明,在猫中,迷走神经传入信息与Sl区域的自发脑电图节律相互作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vagal afferents and EEG rhythms in the Sl area in anesthetized cats: similarities between responses to electrical and chemical (phenyldiguanide) stimulations.

In anesthetized, artificially ventilated cats with open chest, bilateral stimulation of all afferent vagal fibres (pulse duration: 800 microseconds, 30 Hz, train duration 30 to 40 s) produced marked changes in the spontaneous EEG activities in the primary somatosensory cortex (Sl area). They were characterized by depressed background rhythms, with a tendency to desynchronization, decreased amplitude and number of spindles, with altered pattern, and/or evoked sustained fast rhythmic activities. These effects occurred within 1 to 5 sec during vagal stimulation. On the contrary, the EEG response was weaker or absent when only myelinated vagal afferents were stimulated (100 microseconds). I.v. injection of phenyldiguanide (PDG), used for stimulation of unmyelinated vagal sensory fibres and mainly of pulmonary afferents, induced EEG changes within the first 30 s, similar to those observed during electrical vagal stimulation. These EEG responses were unrelated to the induced hypotension. Cervical bivagotomy produced persistent changes in EEG activity, with enhancement of the magnitude, duration and number of spindles, which resembled the delayed effects induced by PDG. The present results obtained with three test agents (electrical or chemical vagal stimulation and bivagotomy) demonstrated that, in cats, vagal afferent information interacted with the spontaneous EEG rhythms in the Sl area.

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