[Experimental investigations of the propagation mechanism and the nerve regulatory mechanism of the interdigestive migrating electric complex in intestinal movement].

T Ozawa, K Kawamura, S Kitahara, H Murakuni, H Deguchi, N Shimada, Y Tsugu
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引用次数: 2

Abstract

Segments and Thirty-Vella type loops of the small intestine of dogs were prepared, and the excitation propagation pattern of the interdigestive migrating electric complex (IMEC) was observed by electromyography. The nerve regulatory mechanism in intestinal movement was investigated. The results indicated that first, the frequency of the basic electric rhythm (BER) is controlled so that a downward gradient is formed from the upper to the lower intestine, but this gradient continues to be controlled by a two-dimensional control mechanism involving parietal factors and extrinsic nerves due to transection of the intestines and damage to the extrinsic nerves in the dominant region. However, propagation of the IMEC in the small intestine appeared to be regulated by a combination of the two-dimensional control mechanism involving extrinsic and parietal nerves corresponding to the BER control mechanism. It was clear that the propagation mechanism of IMEC is related to the BER frequency, and propagation of the IMEC is downward in accordance with the frequency gradient of BER.

[肠道运动中消化间迁移电复合体的传播机制和神经调控机制的实验研究]。
制备犬小肠段和30 - vella型环,用肌电图观察消化间迁移电复合体(IMEC)的兴奋传播模式。研究了肠道运动的神经调节机制。结果表明,首先,基本电节律(BER)的频率受到控制,由上至下形成一个向下的梯度,但由于肠的横断和优势区外源性神经的损伤,这种梯度继续受到一个涉及壁因子和外源性神经的二维控制机制的控制。然而,IMEC在小肠内的繁殖似乎受到与BER控制机制相对应的涉及外源性神经和顶神经的二维控制机制的组合调节。可见,IMEC的传播机制与误码率频率有关,IMEC的传播沿误码率的频率梯度向下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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