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首页> 外文期刊>Neurogastroenterology and motility >Neural gastrointestinal electrical stimulation enhances colonic motility in a chronic canine model of delayed colonic transit.
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Neural gastrointestinal electrical stimulation enhances colonic motility in a chronic canine model of delayed colonic transit.

机译:在胃肠道延迟转移的慢性犬模型中,神经胃肠道电刺激可增强结肠运动性。

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摘要

Neural gastrointestinal electrical stimulation (NGES) induces sequential contractions and enhances emptying in acute canine gastric and colonic models. This study was set to determine (i) the effect of NGES in a chronic canine model of delayed colonic transit and (ii) possible mechanism of action. Four pairs of electrodes were implanted in the distal colon of nine mongrel dogs. Delayed colonic transit was induced by diphenoxylate/atropine and alosetron. Transit was fluoroscopically determined by the rate of evacuation of radiopaque markers, and was tested twice in each dog, in random order, on and off stimulation. Two stimulation sequences, separated by 1 min, were delivered twice a day via exteriorized electrodes. Colonic manometry during stimulation was performed before and after intravenous (i.v.) injection of 1 mg of atropine. Complete evacuation of all markers was significantly shortened by NGES, from 4 days to 2 days, interquartile range 3-4 days vs 2-3 days, respectively, P = 0.016. NGES inducedstrong sequential contractions that were significantly diminished by atropine: 190.0 +/- 14.0 mmHg vs 48.7 +/- 19.4 mmHg, respectively (P < 0.001). NGES induces strong sequential colonic contractions and significantly accelerates movement of content in a canine model of delayed colonic transit. The effect is atropine sensitive.
机译:神经胃肠电刺激(NGES)诱导顺序收缩并增强急性犬胃和结肠模型的排空。这项研究的目的是确定(i)NGES在延迟结肠转运的慢性犬模型中的作用和(ii)可能的作用机制。四对电极被植入九只杂种狗的远端结肠中。地芬诺酯/阿托品和阿洛司琼引起结肠延迟转运。通过不透射线标志物的疏散率在荧光镜下确定过境,并且在每只狗中以随机顺序在开和关刺激下测试两次。每天两次通过外部电极传递间隔为1分钟的两个刺激序列。在静脉内(i.v.)注射1 mg阿托品之前和之后,进行刺激期间的结肠测压。 NGES显着缩短了所有标记的完全撤离时间,从4天缩短至2天,四分位间距分别为3-4天和2-3天,P = 0.016。 NGES诱导的强力顺序收缩被阿托品显着降低:分别为190.0 +/- 14.0 mmHg和48.7 +/- 19.4 mmHg(P <0.001)。 NGES会引起强烈的顺序结肠收缩,并显着加速内容丰富的延迟结肠运输犬模型的运动。该作用对阿托品敏感。

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