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胃扩张和喂食对犬空肠移行性运动复合波的干扰。

Disruption of the jejunal migrating motor complex by gastric distension and feeding in the dog.

作者信息

Bull J S, Grundy D, Scratcherd T

机构信息

Department of Physiology, University of Sheffield, Western Bank.

出版信息

J Physiol. 1987 Dec;394:381-92. doi: 10.1113/jphysiol.1987.sp016876.

DOI:10.1113/jphysiol.1987.sp016876
PMID:3443971
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1191967/
Abstract
  1. The jejunal motor response to gastric distension has been quantified in the conscious dog and compared with that of feeding in order to determine the role of the physical bulk of a meal in the conversion from fasted to fed motor activity. 2. In six dogs gastric distension abolished the cyclical migrating motor complex (m.m.c.) and evoked a pattern of continuous irregular jejunal motility similar to that seen postprandially, but only after a latency of 21.5 +/- 2.7 min compared to that of 7.1 +/- 1.2 min for the response to feeding. Computer analysis of distension and fed jejunal motility revealed similar distributions of intervals between contractions and contraction amplitudes with comparable mean values for both. 3. In two dogs with antrum and corpus surgically divided distension of the corpus had a similar effect on jejunal motility although the latency to both distension and feeding were considerably less. 4. By varying the period of distension it has been possible to control accurately the duration of the jejunal motor response and so assess its effectiveness in disrupting the timing of the m.m.c. The return to m.m.c. cycling following deflation was independent of preceding complexes. The occurrence of the post-distension activity front was closely related to the act of deflation itself (R = 0.94) following a latency of 26.2 +/- 2.1 min (n = 39). 5. It is concluded that the bulk of a meal contributes significantly to the early part of postprandial motility and is capable of disrupting the timing of subsequent migrating motor complexes.
摘要
  1. 已对清醒犬的空肠对胃扩张的运动反应进行了量化,并与进食时的反应进行了比较,以确定进餐的物理体积在从空腹运动活动转换为进食运动活动中的作用。2. 在六只犬中,胃扩张消除了周期性移行运动复合波(m.m.c.),并诱发了一种类似于餐后所见的连续不规则空肠运动模式,但与进食反应的潜伏期7.1±1.2分钟相比,潜伏期为21.5±2.7分钟。对扩张和进食后空肠运动的计算机分析显示,收缩间隔和收缩幅度的分布相似,两者的平均值相当。3. 在两只胃窦和胃体手术分离的犬中,胃体扩张对空肠运动有类似影响,尽管扩张和进食的潜伏期都明显缩短。4. 通过改变扩张时间,可以精确控制空肠运动反应的持续时间,从而评估其扰乱m.m.c.时间的有效性。放气后恢复到m.m.c.循环与先前的复合波无关。扩张后活动前沿的出现与放气本身的动作密切相关(R = 0.94),潜伏期为26.2±2.1分钟(n = 39)。5. 得出的结论是,进餐的体积对餐后运动的早期阶段有显著贡献,并且能够扰乱随后移行运动复合波的时间。

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本文引用的文献

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Control of the interdigestive myoelectric activity in dogs by the vagus nerves and pentagastrin.迷走神经和五肽胃泌素对犬消化间期肌电活动的控制
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The interdigestive myo-electric complex of the stomach and small bowel of dogs.犬胃和小肠的消化间期肌电复合波
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Electrical spiking activity and propulsion in small intestine in fed and fasted rats.进食和禁食大鼠小肠的电脉冲活动与推进运动
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10
Intestinal phase of gastric acid secretion: augmentation of maximal response of Heidenhain pouch to gastrin and histamine.胃酸分泌的肠期:海登海因小胃对胃泌素和组胺最大反应的增强。
Gastroenterology. 1975 Apr;68(4 Pt 1):691-8.