Alm P, Elmér M
Acta Physiol Scand. 1975 May;94(1):36-45. doi: 10.1111/j.1748-1716.1975.tb05859.x.
The autonimic innervation of the rat urinary bladder was studied using histochemical methods and nerve stimulations. A sparse adrenergic innervation of the detrusor muscle was found. It was supposed to originate from long adrenergic neurones. The trigonum area had a rich ssupply of adrenergic fibres, probably derived from short adrenergic neurones. A uniformly rich supply of acetylcholine-esterase (AChE)-positive nerves was found in the WHOLE BLADDER. Postganglionic sympathetic denervation caused no detectable change of adrenergic or AChE-positive nerves in the bladder, while parasympathetic decentralization or denervation produced a total disappearance of adrenergic fibres. The AChE-positive nerves were appreciably reduced in number after parasympathetic decentralization and not detectable after postganglionic denervation. Neither adrenergic nor AChE-positive ganglion cells could be demonstrated in the bladder wall. Electrical stimulation of the hypogastric nerves or the pelvic nerves distal to the pelvic ganglia elictied contraction of the detrusor muscle. The responses were not affected by hexamethonium, dihydroergotamine or proparanolol but were slightly reduced by guanethidine, reduced to about 40% by atropine and potentiated by eserine. Stimulation of the pelvic nerve proximal to the pelvic ganglion was partially blocked by hexamethonium. It si concluded that the urinary bladder of the rat is supplied by postganglionic adrenergic fibres mainly via the pelvic nerves and only to a lesser extent via the hypogastric nerves. Probably cholinergic fibres pass to the bladder mainly via the pelvic nerves but also via the hypogastric nerves, having their cellbodies outside the bladder wall, partly proximal to the pelvic ganglia.
采用组织化学方法和神经刺激法对大鼠膀胱的自主神经支配进行了研究。发现逼尿肌有稀疏的肾上腺素能神经支配。推测其起源于长肾上腺素能神经元。三角区有丰富的肾上腺素能纤维供应,可能来自短肾上腺素能神经元。在整个膀胱中发现乙酰胆碱酯酶(AChE)阳性神经分布均匀丰富。节后交感神经去神经支配未引起膀胱中肾上腺素能或AChE阳性神经的可检测变化,而副交感神经离断或去神经支配则导致肾上腺素能纤维完全消失。副交感神经离断后,AChE阳性神经数量明显减少,节后去神经支配后则无法检测到。在膀胱壁中未发现肾上腺素能或AChE阳性神经节细胞。电刺激腹下神经或盆神经节远端的盆神经可引起逼尿肌收缩。这些反应不受六甲铵、双氢麦角胺或普萘洛尔的影响,但被胍乙啶轻微减弱,被阿托品减弱至约40%,并被毒扁豆碱增强。刺激盆神经节近端的盆神经可被六甲铵部分阻断。结论是大鼠膀胱主要通过盆神经接受节后肾上腺素能纤维供应,仅在较小程度上通过腹下神经供应。胆碱能纤维可能主要通过盆神经但也通过腹下神经进入膀胱,其细胞体位于膀胱壁外,部分在盆神经节近端。