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横纹肌食管的运动神经支配。第1部分。糖原耗竭技术揭示的大鼠食管左右迷走神经的壁内分布。

Motor innervation of the striated oesophagus muscle. Part 1. Intramural distribution of the right and left vagus nerve in the rat oesophagus as revealed by the glycogen depletion technique.

作者信息

Gruber H

出版信息

J Neurol Sci. 1978 Mar;36(1):41-53. doi: 10.1016/0022-510x(78)90160-0.

Abstract

The muscularis propria of the rat oesophagus is entirely made up of striated muscle fibres. All fibres are of the same histochemical type, which is characterized by high activity of actomyosin ATPase, medium activity of oxidative enzymes and relatively strong reaction for phosphorylase. Prolonged stimulation (10 Hz, 30 min) of the vagus nerves causes depletion of the glycogen content of the oesophageal muscle fibres. This stimulation effect can be visualized by means of the PAS technique as well as by the histochemical reaction for phosphorylase. In 8 animals the right and in 8 animals the left vagus nerve were stimulated repetitively and the stimulated muscle fibres were identified in transverse sections of the oesophagi, stained for phosphorylase. The muscle fibres supplied by one vagus nerve are distributed all over the circumference of the oesophagus. In the upper third of the oesophagus stimulation of either vagus nerve depletes slightly less than 50% of the muscle fibres, whereas in the lower two-thirds the right vagus nerve seems to predominate to a certain degree. In 3 animals both vagus nerves were stimulated simultaneously. Bilateral stimulation produced a very extensive depletion. Only a few muscle fibres remained unaffected. Functional implications of the results, the question of polyneuronal innervation and the role of the myenteric plexus are discussed.

摘要

大鼠食管的固有肌层完全由横纹肌纤维组成。所有纤维都属于同一组织化学类型,其特点是肌动球蛋白ATP酶活性高、氧化酶活性中等以及磷酸化酶反应相对较强。迷走神经的长时间刺激(10赫兹,30分钟)会导致食管肌纤维糖原含量耗尽。这种刺激效应可以通过PAS技术以及磷酸化酶的组织化学反应观察到。在8只动物中,右侧迷走神经被重复刺激,在另外8只动物中,左侧迷走神经被重复刺激,并且在食管的横切面上识别出受刺激的肌纤维,这些切片用磷酸化酶进行染色。由一条迷走神经支配的肌纤维分布在食管的整个圆周上。在食管上三分之一处,刺激任一侧迷走神经会使略少于50%的肌纤维糖原耗尽,而在食管下三分之二处,右侧迷走神经似乎在一定程度上占主导地位。在3只动物中,双侧迷走神经同时受到刺激。双侧刺激导致非常广泛的糖原耗尽。只有少数肌纤维未受影响。本文讨论了这些结果的功能意义、多神经元支配问题以及肌间神经丛的作用。

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