首页> 外文期刊>The Journal of Urology >Evidence for involvement of the subcoeruleus nucleus and nucleus raphe magnus in urine storage and penile erection in decerebrate rats.
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Evidence for involvement of the subcoeruleus nucleus and nucleus raphe magnus in urine storage and penile erection in decerebrate rats.

机译:有证据表明小脑大鼠的尿中蓄积和阴茎勃起牵涉到小脑下核和大核。

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PURPOSE: Micturition and male sexual activity require the lower urinary tract to function. During the sexual act, micturition must be inhibited and urine stored in the bladder. We studied the role of the brainstem in relation to both micturition/urine storage and penile erection in rats. MATERIALS AND METHODS: Wire electrodes were placed on the dorsal nerve of the penis and microelectrodes for stimulation were introduced into the brainstem in decerebrate male rats. Electrical stimulation was used to locate optimally responding sites by monitoring the isovolumetric intravesical pressure and intracavernous pressure. RESULTS: Electrical stimulation of the dorsal nerve of the penis, the subcoeruleus nucleus in the rostral pons, and the nucleus raphe magnus in the caudal pons increased intracavernous pressure, but inhibited rhythmic bladder contractions. Electrical stimulation of Barrington's nucleus (the pontine micturition center in the rat) in the rostral pons induced bladder contraction. Stimulation of the pontine reticular formation did not increase intracavernous pressure. Acute transection of the thoracic spinal cord eliminated rhythmic bladder contractions, but gave rise to sporadic increments of intracavernous pressure. CONCLUSIONS: This electrophysiological study demonstrated that the subcoeruleus nucleus and nucleus raphe magnus are involved in both urine storage and penile erection, and that their physiological functions are reciprocally controlled; so that erection leads to inhibition of micturition.
机译:目的:排尿和男性性活动需要下尿路起作用。在性行为期间,必须抑制排尿并将尿液储存在膀胱中。我们研究了大鼠脑干与排尿/尿液储存和阴茎勃起的关系。材料与方法:将线电极置于阴茎的背神经上,并将微刺激电极引入到无脑的雄性大鼠脑干中。电刺激用于通过监测等容膀胱内压力和海绵体内压力来定位最佳反应部位。结果:电刺激阴茎背神经,延髓桥脑小结核下核和尾脑桥核大裂核增加了海绵体内压力,但抑制了节律性膀胱收缩。在鼻尖桥中电刺激Barrington核(大鼠的桥脑排尿中心)可引起膀胱收缩。脑桥网状结构的刺激并没有增加海绵体内压力。胸脊髓的急性横切消除了节律性的膀胱收缩,但是引起了海绵体内压力的偶发性增加。结论:这项电生理研究表明,蓝藻核和裂核大核都参与尿液的储存和阴茎的勃起,并且它们的生理功能是相互控制的。因此勃起导致排尿障碍。

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