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通过植入式力传感器测量禁食清醒犬胃肠道的特征性运动活动。

Characteristic motor activity of the gastrointestinal tract in fasted conscious dogs measured by implanted force transducers.

作者信息

Itoh Z, Takeuchi S, Aizawa I, Takayanagi R

出版信息

Am J Dig Dis. 1978 Mar;23(3):229-38. doi: 10.1007/BF01072323.

Abstract

Gastrointestinal contractile actiivity from the gastric body to the terminal ileum in conscious dogs was continuously recorded for several weeks by means of chronically implanted strain-gage force transducers. It was found that the 24-hr changes in the gastrointestinal contractile activity consisted of the two different major patterns, the digestive and interdigestive patterns. In the interdigestive state, a cyclic, recurring, caudad-moving band of strong contractions starting in the stomach and the duodenum and traversing the entire length of the small intestine was observed. When one band of strong contractions reached the distal ileum, another developed in the stomach and the duodenum again and propagated in a caudad direction. Such recycling episodes interrupted by long-lasting quiescence repeatedly occurred until the next meal. These characteristic contractile activities observed in our dogs are identical with the interdigestive myoelectric complex of the stomach and the small bowel recently reported by Code and Marlett (5). Four sequential phases (I-IV) of the migrating myoelectric complex, defined in terms of action potential activity, seem to correspond to the resting (quiescence), preceding irregular contractions, strong contractions, and subsiding contractions observed in the present study, respectively. Function and control mechanism of the interdigestive contractile activity were discussed.

摘要

通过长期植入的应变片式力传感器,连续数周记录清醒犬从胃体到回肠末端的胃肠收缩活动。结果发现,胃肠收缩活动的24小时变化包括两种不同的主要模式,即消化期模式和消化间期模式。在消化间期状态下,观察到一种周期性、反复出现的、从胃和十二指肠开始并沿尾侧移动的强收缩带,它贯穿小肠全长。当一组强收缩带到达回肠末端时,另一组又在胃和十二指肠出现,并沿尾侧方向传播。这种被长时间静息打断的循环发作反复出现,直到下一餐。在我们的犬身上观察到的这些特征性收缩活动,与Code和Marlett(5)最近报道的胃和小肠的消化间期肌电复合波相同。根据动作电位活动定义的移行性肌电复合波的四个连续阶段(I-IV),似乎分别对应于本研究中观察到的静息(静止)、先前的不规则收缩、强收缩和减弱收缩。讨论了消化间期收缩活动的功能和控制机制。

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