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大鼠食管的迷走-迷走反射运动模式。

Vagovagal reflex motility patterns of the rat esophagus.

作者信息

Lu W Y, Bieger D

机构信息

Division of Basic Medical Sciences, Faculty of Medicine, Memorial University of Newfoundland, St. John's, Canada.

出版信息

Am J Physiol. 1998 May;274(5):R1425-35. doi: 10.1152/ajpregu.1998.274.5.R1425.

Abstract

Esophageal reflex motility and its neural correlates were investigated in 94 urethan-anesthetized adult male albino rats. When distended by means of a stationary balloon, the cervical and thoracic esophageal portion responded with a single pressure wave (type I response), whereas the diaphragmatic (intercrural) segment exhibited rhythmic contractions (type II response). Balloon deflation resulted in an off response aboral to the balloon. Bilateral cervical vagotomy or systemic D-tubocurarine abolished all types of reflex responses. Both type I and type II responses were associated with multiunit discharges in the central subnucleus of the solitary tract complex (NTSC) and the compact formation of the nucleus ambiguus (AMBC). Type I discharges, consisting of single bursts, and type II discharges, consisting of rhythmic 0.6-Hz bursts, preceded intraesophageal pressure waves in a fixed phase relationship, persisted after contralateral vagotomy, and were eliminated by ipsilateral vagotomy. During neuromuscular paralysis, peak intraburst discharge rates were reduced in both the NTSC and AMBC, with a concomitant decrease in rhythmicity. It is concluded that bolusevoked peristalsis of the rat esophagus is 1) segmentally organized; 2) effected by a bilateral uncrossed reflex arc consisting of vagal viscerosensory, NTSC premotor, and AMBC motoneurons innervating the striated muscle tunic and 3) strongly facilitated by reafferent feedback.

摘要

在94只经乌拉坦麻醉的成年雄性白化大鼠中研究了食管反射运动及其神经关联。当通过固定气囊扩张时,颈段和胸段食管部分会产生单一压力波反应(I型反应),而膈段(肋间段)则表现出节律性收缩(II型反应)。气囊放气导致气囊口侧出现关闭反应。双侧颈迷走神经切断术或全身给予D -筒箭毒碱可消除所有类型的反射反应。I型和II型反应均与孤束核复合体中央亚核(NTSC)和疑核紧密部(AMBC)中的多单位放电有关。I型放电由单个爆发组成,II型放电由节律性的0.6 Hz爆发组成,它们以固定的相位关系先于食管内压力波出现,在对侧迷走神经切断术后持续存在,并被同侧迷走神经切断术消除。在神经肌肉麻痹期间,NTSC和AMBC中的爆发内峰值放电率均降低,同时节律性也降低。结论是,大鼠食管的团块诱发蠕动:1)是节段性组织的;2)由双侧不交叉的反射弧介导,该反射弧由迷走神经内脏感觉神经元、NTSC运动前神经元和支配横纹肌层的AMBC运动神经元组成;3)受到再传入反馈的强烈促进。

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