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交感神经系统对猫在整个控尿过程中膀胱壁顺应性的影响。

Sympathetic nervous system effects on feline bladder wall compliance throughout continence.

作者信息

Khadra M H, Satchell P M, Vaughan C W

机构信息

Department of Surgery, University of Sydney, NSW, Australia.

出版信息

Acta Physiol Scand. 1995 Sep;155(1):31-9. doi: 10.1111/j.1748-1716.1995.tb09945.x.

Abstract

The urinary bladder is a compliant organ, high compliance being essential for useful urine storage. The extent to which the sympathetic nervous system promotes the storage of urine by increasing bladder compliance is unclear. The aim of the present study was to determine the range of bladder volumes over which the sympathetic nervous system increased bladder wall compliance. In supine, anaesthetized cats, the bladder was filled at twice the rate of natural filling, the continence cycle being interrupted at five stages. These stages were when the bladder had become globular, during prodromal contractions, soon after non-micturating contractions had commenced, approximately two-thirds of the way through the continence cycle and just prior to micturition. During each of these interruptions, bladder volume was held constant while pelvic nerve afferent activity and bladder pressure were recorded. Recordings were obtained before and during the intravenous infusion of trimethaphan, the resulting partial ganglion blockade decreasing arterial pressure by a third. Bladder pressure as well as afferent nerve activity increased significantly when the sympathetic drive was transiently blocked, indicating that there had been a prevailing net sympatho-inhibitory effect promoting bladder wall relaxation. This effect was observed during prodromal contractions and continued until the onset of micturition. This net sympatho-inhibitory effect is a potential therapeutic path for the treatment of bladder storage disorders.

摘要

膀胱是一个顺应性器官,高顺应性对于有效储存尿液至关重要。交感神经系统通过增加膀胱顺应性来促进尿液储存的程度尚不清楚。本研究的目的是确定交感神经系统增加膀胱壁顺应性的膀胱容量范围。在仰卧麻醉的猫中,以自然充盈速率的两倍对膀胱进行充盈,在五个阶段中断控尿周期。这些阶段分别是膀胱变成球形时、前驱性收缩期间、非排尿性收缩开始后不久、控尿周期大约三分之二时以及排尿前。在每次中断期间,保持膀胱容量恒定,同时记录盆神经传入活动和膀胱压力。在静脉输注三甲噻方之前和期间进行记录,由此产生的部分神经节阻滞使动脉压降低三分之一。当交感神经驱动被短暂阻断时,膀胱压力以及传入神经活动显著增加,表明存在一种主要的交感抑制性净效应促进膀胱壁松弛。这种效应在前驱性收缩期间观察到,并持续到排尿开始。这种交感抑制性净效应是治疗膀胱储存障碍的一条潜在治疗途径。

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