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Neurophysiological modeling of bladder afferent activity in the rat overactive bladder model

机译:大鼠膀胱过度活动症模型中膀胱传入活动的神经生理学模型

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摘要

The overactive bladder (OAB) is a syndrome-based urinary dysfunction characterized by “urgency, with or without urge incontinence, usually with frequency and nocturia”. Earlier we developed a mathematical model of bladder nerve activity during voiding in anesthetized rats and found that the nerve activity in the relaxation phase of voiding contractions was all afferent. In the present study, we applied this mathematical model to an acetic acid (AA) rat model of bladder overactivity to study the sensitivity of afferent fibers in intact nerves to bladder pressure and volume changes. The afferent activity in the filling phase and the slope, i.e., the sensitivity of the afferent fibers to pressure changes in the post-void relaxation phase, were found to be significantly higher in AA than in saline measurements, while the offset (nerve activity at pressure ~0) and maximum pressure were comparable. We have thus shown, for the first time, that the sensitivity of afferent fibers in the OAB can be studied without cutting nerves or preparation of single fibers. We conclude that bladder overactivity induced by AA in rats is neurogenic in origin and is caused by increased sensitivity of afferent sensors in the bladder wall.
机译:膀胱过度活动症(OAB)是一种基于综合征的尿路功能障碍,其特征是“尿急,伴或不伴有急迫性尿失禁,通常伴有尿频和夜尿”。早些时候,我们建立了麻醉大鼠排尿过程中膀胱神经活动的数学模型,发现排尿收缩松弛阶段的神经活动全部传入。在本研究中,我们将此数学模型应用于膀胱过度活动的乙酸(AA)大鼠模型,以研究完整神经中传入纤维对膀胱压力和体积变化的敏感性。发现AA的充盈期和斜率的传入活性(即,传入纤维对空隙后松弛阶段的压力变化的敏感性)显着高于生理盐水中的AA,而偏移(神经活动在最大压力〜0)和最大压力是可比的。因此,我们首次表明,可以在不伤神经或不准备单根纤维的情况下研究OAB中传入纤维的敏感性。我们得出结论,AA诱导的大鼠膀胱过度活动是神经源性的,并且是由膀胱壁传入传感器的敏感性增加引起的。

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