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The origin of segmentation motor activity in the intestine

机译:肠段运动活动的起源

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The segmentation motor activity of the gut that facilitates absorption of nutrients was first described in the late 19th century, but the fundamental mechanisms underlying it remain poorly understood. The dominant theory suggests alternate excitation and inhibition from the enteric nervous system. Here we demonstrate that typical segmentation can occur after total nerve blockade. The segmentation motor pattern emerges when the amplitude of the dominant pacemaker, the slow wave generated by interstitial cells of Cajal associated with the myenteric plexus (ICC-MP), is modulated by the phase of induced lower frequency rhythmic transient depolarizations, generated by ICC associated with the deep muscular plexus (ICC-DMP), resulting in a waxing and waning of the amplitude of the slow wave and a rhythmic checkered pattern of segmentation motor activity. Phase-amplitude modulation of the slow waves points to an underlying system of coupled nonlinear oscillators originating in the networks of ICC.
机译:促进营养吸收的肠道分段运动活动最早是在19世纪末描述的,但是其背后的基本机制仍知之甚少。占主导地位的理论提出了肠神经系统的交替激发和抑制作用。在这里,我们证明典型的分割可以在完全神经阻滞后发生。当由心脏起搏器的振幅(由与肌层神经丛(ICC-MP)相关的Cajal的间质细胞产生的慢波)受由ICC相关的低频节律性瞬时去极化的相位调制时,就会出现分段运动模式与深肌丛(ICC-DMP)结合使用,导致慢波振幅起蜡和减弱,以及分段运动活动的节律棋盘格。慢波的相位-幅度调制指向源于ICC网络的耦合非线性振荡器的基础系统。

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