Balzamo E, Gayan-Ramirez G, Jammes Y
Laboratoire de Biologie des Hautes Pressions (URA1330 CNRS), Marseille, France.
J Auton Nerv Syst. 1990 Jun;30(2):149-57. doi: 10.1016/0165-1838(90)90139-a.
Interactions between vagal afferent fibres and spontaneous electroencephalographic (EEG) activity, recorded on the sensorimotor cortex of the cat, were studied during the mechanical activation of pulmonary afferents. The interactions were compared to the cortical effects of the electrical stimulation of all vagal fibers or to the chemical activation of unmyelinated vagal afferents (C-fibers) by phenyldiguanide. The present study was performed on anesthetized cats, artificially ventilated with open chest. Over 60 locations were explored on the posterior sigmoid gyrus. Repetitive electrical stimulation (30 Hz, 0.8 ms shock duration) of the contralateral cervical vagus nerve or of both nerves induced within less than 5 s changes in the pattern and periodicity of EEG spindles, associated with depressed background rhythms or rhythmic EEG activities. Cortical responses were also observed after i.v. injection of phenyldiguanide. Changes in activity of pulmonary stretch receptors by lung hyperinflation or suppression of phasic lung inflations ('stop pump') had no effect on the EEG rhythms. On the other hand, expiratory threshold loading or passive hyperdeflation of the lungs elicited EEG changes similar to those obtained by electrical stimulation of all vagal fibers. After bilateral vagotomy, all these responses disappeared or were delayed. The present observations strongly suggest that sensory information carried by thin vagal fibers greatly influences cortical rhythms in the cat sensorimotor cortex.
在猫的肺传入神经受到机械性激活期间,研究了迷走传入纤维与记录在猫感觉运动皮层上的自发脑电图(EEG)活动之间的相互作用。将这些相互作用与所有迷走神经纤维电刺激的皮层效应或苯二胍对无髓鞘迷走传入神经(C纤维)的化学激活效应进行了比较。本研究在开胸人工通气的麻醉猫身上进行。在乙状结肠后回上探索了60多个位置。对侧颈迷走神经或双侧迷走神经的重复性电刺激(30Hz,0.8ms刺激持续时间)在不到5秒内引起EEG纺锤波模式和周期性的变化,伴有背景节律或节律性EEG活动的抑制。静脉注射苯二胍后也观察到皮层反应。肺过度充气或抑制阶段性肺充气(“停止通气”)引起的肺牵张感受器活动变化对EEG节律没有影响。另一方面,呼气阈负荷或肺被动过度放气引起的EEG变化与所有迷走神经纤维电刺激所获得的变化相似。双侧迷走神经切断术后,所有这些反应消失或延迟。目前的观察结果强烈表明,细迷走神经纤维携带的感觉信息对猫感觉运动皮层的皮层节律有很大影响。