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Insights into the mechanisms underlying colonic motor patterns

机译:洞察结肠运动模式的潜在机制

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In recent years there have been significant technical and methodological advances in our ability to record themovements of the gastrointestinal tract. This has led to significant changes in our understanding of the different types of motor patterns that exist in the gastrointestinal tract (particularly the large intestine) and in our understanding of the mechanisms underlying their generation. Compared with other tubular smooth muscle organs, a rich variety of motor patterns occurs in the large intestine. This reflects a relatively autonomous nervous system in the gut wall, which has its own unique population of sensory neurons. Although the enteric nervous system can function independently of central neural inputs, under physiological conditions bowel motility is influenced by the CNS: if spinal pathways are disrupted, deficits in motility occur. The combination of high resolution manometry and video imaging has improved our knowledge of the range of motor patterns and provided some insight into the neural and mechanical factors underlying propulsion of contents. The neural circuits responsible for the generation of peristalsis and colonic migrating motor complexes have now been identified to lie within the myenteric plexus and do not require inputs from the mucosa or submucosal ganglia for their generation, but can be modified by their activity. This review will discuss the recent advances in our understanding of the different patterns of propagating motor activity in the large intestine of mammals and how latest technologies have led to major changes in our understanding of the mechanisms underlying their generation.
机译:近年来,我们记录胃肠道运动的能力有了重大的技术和方法上的进步。这导致我们对胃肠道(尤其是大肠)中存在的不同类型运动模式的理解以及对它们产生的机制的理解有了重大变化。与其他管状平滑肌器官相比,大肠内会发生多种运动模式。这反映出肠壁中相对自治的神经系统,它具有自己独特的感觉神经元群体。尽管肠神经系统可以独立于中枢神经输入发挥功能,但在生理条件下肠蠕动会受到中枢神经系统的影响:如果脊椎通路被破坏,则会发生蠕动缺乏。高分辨率测压和视频成像相结合,提高了我们对运动模式范围的了解,并提供了对推动内容的神经和机械因素的一些了解。现在已经确定负责蠕动和结肠迁移运动复合物产生的神经回路位于肌间神经丛内,不需要粘膜或粘膜下神经节的输入,但是可以通过其活性进行改变。这篇综述将讨论我们对哺乳动物大肠运动功能的不同传播方式的理解的最新进展,以及最新技术如何导致我们对它们的产生机理的深刻理解。

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