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犬近端结肠的电起搏器受抑制性运动神经元的功能性支配。

Electrical pacemakers of canine proximal colon are functionally innervated by inhibitory motor neurons.

作者信息

Smith T K, Reed J B, Sanders K M

机构信息

Department of Physiology, University of Nevada School of Medicine, Reno 89431.

出版信息

Am J Physiol. 1989 Mar;256(3 Pt 1):C466-77. doi: 10.1152/ajpcell.1989.256.3.C466.

Abstract

Pacemaker activity in the canine proximal colon occurs at the submucosal and myenteric borders of the circular layer [Am. J. Physiol. 252 (Cell Physiol. 21): C215-C224 and C290-C299, 1987]. The present study investigated the neural regulation of rhythmic electrical activity. Spontaneous inhibitory junction potentials (IJPs) were observed in intracellular recordings from circular muscle cells near the myenteric border. The amplitudes of these events decayed with distance through the circular layer. Stimulation at the myenteric plexus surface evoked IJPs that mimicked the spontaneous events. Stimulation at the submucosal surface evoked IJPs in adjacent cells that were of shorter duration and of different waveform than myenteric IJPs. Amplitudes of IJPs evoked by stimulation near either surface decayed with distance from the site of stimulation. The decay functions for IJPs were essentially identical to the decay of spontaneous slow waves or myenteric potential oscillations. Spontaneous and evoked IJPs affected the amplitudes, durations, and patterns of ongoing rhythmic electrical activity. The data suggest that myenteric and submucosal pacemaker populations may be innervated by different populations of inhibitory nerve fibers. Innervation appears to be heterogeneous with dense populations of inhibitory nerve fibers predominantly located in the pacemaker regions. Neural regulations of pacemaker activity influences rhythmic electrical activity throughout the muscularis.

摘要

犬近端结肠的起搏活动发生在环形肌层的黏膜下层和肌间边界处[《美国生理学杂志》252卷(细胞生理学21):C215 - C224及C290 - C299,1987年]。本研究调查了节律性电活动的神经调节。在肌间边界附近的环形肌细胞的细胞内记录中观察到自发抑制性连接电位(IJPs)。这些电位的幅度在通过环形肌层时随距离衰减。在肌间神经丛表面进行刺激可诱发与自发事件相似的IJPs。在黏膜下层表面进行刺激可在相邻细胞中诱发IJPs,其持续时间较短且波形与肌间IJPs不同。在任一表面附近进行刺激所诱发的IJPs的幅度随距刺激部位的距离而衰减。IJPs的衰减函数与自发慢波或肌间电位振荡的衰减基本相同。自发和诱发的IJPs会影响正在进行的节律性电活动的幅度、持续时间和模式。数据表明,肌间和黏膜下起搏细胞群可能受不同抑制性神经纤维群的支配。神经支配似乎是异质性的,抑制性神经纤维密集群主要位于起搏区域。起搏活动的神经调节影响整个肌层的节律性电活动。

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