人类和大鼠排尿过程中膀胱压力、收缩性和尿流的比较尿动力学模式。

APMIS. Supplementum Pub Date : 2003-01-01
Frank Schmidt, Yakusuni Yoshimura, Peter Young Shin, Christos E Constantinou
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引用次数: 0

摘要

对人类和大鼠正常排尿的独特模式进行了尿动力学表征。数据是从实验研究中获得的,其中膀胱压力是在耻骨上测量的,避免了尿道仪器。对17名无症状男性志愿者进行了动态尿动力学研究。使用UPS2020动态系统通过耻骨上导管监测膀胱压力,通过直肠球囊监测腹部压力。每个监测时段的平均持续时间为20.5小时。确定每位受试者的逼尿肌压力和流速记录,并以排尿开始作为时间标记,在整个监测期间对连续的充血期和排尿期进行平均。计算每个受试者以及每个组的平均压力、流量、累积体积和收缩率曲线,并以图形形式呈现。采用麻醉大鼠排尿期18只进行比较。进行连续CMG,记录耻骨上膀胱压力。提取各组尿道开口压力、最大逼尿肌压力、最大流速下逼尿肌压力、膀胱容量、WF等平均参数并进行统计学比较。数值为M +/- SE。在CMG排尿阶段,在人和大鼠中观察到的尿动力学时间模式在逼尿肌压力和相关流量方面具有惊人的定性相似性。在绝大多数动物的排尿开始时,这种现象尤为显著。此外,排尿前和排尿时膀胱产生的压力在数量上是相似的。然而,也有明显的差异,特别是在排尿时膀胱压力振荡时观察到的模式。人类和大鼠逼尿肌压力和流量的时间序列包含许多定性和定量的相似性,使得大鼠的潜力成为研究排尿开始的特别有用的模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative urodynamic patterns of bladder pressure, contractility and urine flow in man and rat during micturition.

A urodynamic characterization of the distinctive patterns of normal micturition in man and rat was undertaken. Data were obtained from experimental studies where bladder pressure was measured suprapubically obviating urethral instrumentation. Ambulatory urodynamic studies were conducted with 17 asymptomatic male volunteers. Bladder pressure was monitored via a supra-pubic catheter and abdominal pressure via a rectal balloon using a UPS2020 ambulatory system. Average duration of each monitoring period was 20.5 hours. Detrusor pressure and flow rate records from each subject were identified and consecutive filling and voiding phases were averaged over the entire monitoring period using the onset of micturition as a time marker. The averaged pattern of pressure, flowrate, cumulative volume, and contractility curves for each subject as well each for group was computed and graphically presented. For comparison, the micturition phase of 18 anesthetized rats were used. A continuous CMG was performed and bladder pressure was recorded suprapubically. For each group the averaged parameters of urethral opening pressure, Max Detrusor pressure, Detrusor pressure at Max flowrate, bladder capacity, and WF were extracted and compared statistically. Numerical values are M +/- SE. The urodynamic temporal patterns observed during the micturition phase of the CMG in terms of detrusor pressure and associated flow, in both man and rat posses striking qualitative similarities. These are particularly striking during the onset of micturition in the great majority of animals. Furthermore the pressures generated by the bladder before and during micturition are quantitatively similar. However there were also distinct differences particularly in the pattern observed during voiding when bladder pressure was oscillatory. The temporal sequence of detrusor pressure and flow in man and rat contains many qualitative and quantitative similarities rendering the rat's potential as a particularly useful model in the study of the onset of micturition.

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