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清醒绵羊舌、喉及食管感受器的活性

Activity of lingual, laryngeal and oesophageal receptors in conscious sheep.

作者信息

Falempin M, Rousseau J P

出版信息

J Physiol. 1984 Feb;347:47-58. doi: 10.1113/jphysiol.1984.sp015052.

Abstract

Vagal afferent impulse traffic has been studied in conscious sheep by electromyographic recording from the motor units of the sterno-cleido-mastoid (s.c.m.) muscle reinnervated by sensory vagal axons. Units which responded during movements of the tongue and during the pharyngolaryngeal and oesophageal stages of swallowing were chosen for this study. Lingual units showed a phasic discharge bearing a temporal relation to movements of the tongue during licking of the lips or chewing of a bolus before swallowing. Laryngeal units had no spontaneous activity. A discharge occurred with the ascending movement of the larynx during swallowing. Oesophageal units did not exhibit any tonic activity. They fired only at the time of primary or secondary oesophageal peristalsis. The oesophageal units showed a bimodal distribution. The oesophageal receptors are more concentrated at the beginning and the end of the thoracic oesophagus. During primary peristalsis, the afferent discharge was reinforced in only 57% of the cases when sheep swallowed a bolus (pellets or inflated balloons). When the discharge was reinforced, its increase ceased as volumes of the bolus were increased from 20 to 40 ml. During local oesophageal contractions, the afferent discharge was only present when the inflated balloon was located at the site of the receptor. It was enhanced at the time the primary peristaltic wave passed over the balloon. Inflation of a second balloon cranially in the oesophagus led to abolition of the activity of the unit at the caudal site though the distension there was maintained.

摘要

通过对由感觉迷走神经轴突重新支配的胸锁乳突肌运动单位进行肌电图记录,研究了清醒绵羊的迷走传入冲动传导。本研究选取了在舌运动以及吞咽的咽喉和食管阶段有反应的单位。舌部单位在舔唇或吞咽前咀嚼食团时,表现出与舌运动存在时间关系的阶段性放电。喉部单位无自发活动。吞咽时随着喉部上升运动出现放电。食管单位未表现出任何紧张性活动。它们仅在原发性或继发性食管蠕动时放电。食管单位呈现双峰分布。食管感受器在胸段食管起始部和末端更为集中。在原发性蠕动期间,当绵羊吞咽食团(小球或充气气球)时,仅57%的情况下传入放电增强。当放电增强时,随着食团体积从20毫升增加到40毫升,其增加停止。在局部食管收缩期间,仅当充气气球位于感受器部位时才会出现传入放电。当原发性蠕动波经过气球时,放电增强。尽管食管尾部仍保持扩张,但在食管内更靠近头端的第二个气球充气会导致尾部部位单位的活动消失。

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