上尿路功能的研究。制造。犬输尿管肌电图从“所谓的起搏器”中分离出来。

K Suga, T Tsuzuki, S Kawamura, K Seo, T Kubo
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引用次数: 0

摘要

许多工人报告说,输尿管蠕动运动是由“所谓的起搏器”控制的。但是,在我们最近的研究中发现,起搏器的存在并不总是蠕动运动所必需的。本研究采用18只杂种犬分别制作孤立和非孤立原型模型,探讨影响输尿管蠕动排出的因素。经腹膜暴露双侧肾脏和输尿管。制备单侧上尿路保留起搏器,无肾血供;制备对侧上尿路不保留起搏器,在输尿管近端切开。两种模型均发生膀胱输尿管反流(VUR)。记录管腔压和输尿管肌电图。结果表明,输尿管有自发性的蠕动放电,且随腔压的升高,其蠕动频率有增加的趋势。提示充分的扩张刺激是促使蠕动流量增加的因素,这种情况下的蠕动流量由输尿管上段向下段传播。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Studies on function of the upper urinary tract. XXIX. Canine ureteral electromyogram isolated from "so-called Pacemaker"].

Many workers have reported that ureteral peristaltic movement is controlled by the "so-called Pacemaker". But, in our recent studies, it was revealed that the existence of pacemaker is not always necessary for the peristaltic movement. In this study, we made isolated and non-isolated prototype models, using 18 mongrel dogs, to explore the influential factors on ureteral peristaltic discharge. Bilateral kidney and ureter were exposed transperitoneally. Unilateral upper urinary tract was prepared to preserve the pacemaker without renal blood supply, and contralateral one was prepared not to preserve the pacemaker by cutting at the proximal portion of the ureter. Vesico-ureteral reflux (VUR) was caused on these two models. A luminal pressure and ureteral electromyogram was recorded. In the result, there is spontaneous peristaltic discharges of the ureter which had the tendency to increase peristaltic frequency according to the increase of the luminal pressure. It was suggested that adequate expanding stimulation is the factor of peristaltic discharge to increase, and the peristaltic discharge under this condition propagates from upper to lower portion of the ureter.

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