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舌下神经和膈神经对应用于延髓腹侧面的胆碱能药物的反应。

Hypoglossal and phrenic responses to cholinergic agents applied to ventral medullary surface.

作者信息

Haxhiu M A, Mitra J, van Lunteren E, Bruce E N, Cherniack N S

出版信息

Am J Physiol. 1984 Dec;247(6 Pt 2):R939-44. doi: 10.1152/ajpregu.1984.247.6.R939.

Abstract

Application of cholinergic agents on the ventrolateral surface of the medulla in areas in which the "central chemoreceptors" are believed to be located stimulates breathing. It is also known that cranial nerves, such as the hypoglossal, have respiratory modulated activity (greater in inspiration than expiration) that responds to many of the same stimuli which affect breathing. In the present study we compared effects of cholinergic agents (acetylcholine, carbachol, methacholine, eserine) directly applied to chemoreceptive areas on the ventral medullary surface on phrenic and hypoglossal nerve activity. Studies were performed in paralyzed, anesthetized, and artificially ventilated cats after vagotomy. All cholinergic agents increased hypoglossal activity significantly more than phrenic activity in animals ventilated with O2 or 7% CO2 in O2 whether or not the carotid sinus nerves were intact. Atropine applied topically to the same medullary area blocked the respiratory effects of locally administered acetylcholine. The results suggest that cholinergic agents applied centrally can increase both phrenic and hypoglossal activity. Moreover the effects of the drugs are relatively greater on XII nerve activity than on phrenic discharge, suggesting that the drive from medullary cholinergic structures is distributed with unequal weight to different respiratory motoneurons.

摘要

在延髓腹外侧表面被认为是“中枢化学感受器”所在区域应用胆碱能药物可刺激呼吸。还已知,诸如舌下神经等颅神经具有呼吸调制活动(吸气时比呼气时更强),该活动对许多影响呼吸的相同刺激均有反应。在本研究中,我们比较了直接应用于延髓腹侧表面化学感受区的胆碱能药物(乙酰胆碱、卡巴胆碱、醋甲胆碱、毒扁豆碱)对膈神经和舌下神经活动的影响。研究在切断迷走神经后处于麻痹、麻醉且人工通气状态的猫身上进行。无论颈动脉窦神经是否完整,在以氧气或含7%二氧化碳的氧气进行通气的动物中,所有胆碱能药物使舌下神经活动的增加显著多于膈神经活动。将阿托品局部应用于同一延髓区域可阻断局部给予乙酰胆碱的呼吸效应。结果表明,中枢应用胆碱能药物可增加膈神经和舌下神经的活动。此外,药物对舌下神经活动的影响相对大于对膈神经放电的影响,这表明来自延髓胆碱能结构的驱动以不等的权重分布于不同的呼吸运动神经元。

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