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兔气管张力的下丘脑后部控制及中枢组胺能神经元的参与

Posterior hypothalamic control of rabbit tracheal tension and involvement of central histaminergic neurons.

作者信息

Iwase M, Kanamaru M, Homma I

机构信息

Department of 2nd Physiology, Showa University School of Medicine, Tokyo, Japan.

出版信息

J Auton Nerv Syst. 1995 May 17;53(1):69-76. doi: 10.1016/0165-1838(94)00166-h.

Abstract

The hypothalamus is involved in the control of the cardiovascular system, but airway tone is less well defined. In the posterior hypothalamus, histaminergic neuronal cell bodies are located. Effects of electrical stimulation in the posterior hypothalamus on tracheal tension and the cardiovascular system were examined in anesthetized, paralyzed and artificially ventilated rabbits. Tracheal tension was determined from pressure exerted on a balloon inserted in the trachea and measured by a pressure transducer. Electrical stimulation of the posterior hypothalamus caused tracheal tension to decrease, arterial blood pressure to increase, and mild tachycardia followed by bradycardia. The tracheal tension decrease induced by posterior hypothalamic stimulation was not affected by atropine nor by transection of either the superior laryngeal nerve or the vagus nerve, but was depressed by adrenoceptor blockade. Tracheal tension decrease was also reduced by pyrilamine, a histamine H1-receptor antagonist, administered into the fourth ventricle, but was not affected by cimetidine, a histamine H2-receptor antagonist. The stimulation sites where these effects were evoked were interspersed among the loci of histamine immunoreactive cell bodies previously reported. Results suggest that posterior hypothalamic neurons decrease tracheal tension through the sympathetic nervous system, and involve the histaminergic neurons in this route.

摘要

下丘脑参与心血管系统的调控,但气道张力的调控机制尚不明确。组胺能神经元细胞体位于下丘脑后部。本研究在麻醉、麻痹并进行人工通气的家兔身上,观察下丘脑后部电刺激对气管张力和心血管系统的影响。气管张力通过插入气管的球囊所受压力来测定,由压力传感器进行测量。下丘脑后部电刺激可使气管张力降低、动脉血压升高,并引发轻度心动过速后转为心动过缓。下丘脑后部刺激所致的气管张力降低不受阿托品影响,也不受喉上神经或迷走神经切断的影响,但可被肾上腺素能受体阻断所抑制。将组胺H1受体拮抗剂吡咯胺注入第四脑室也可降低气管张力,但组胺H2受体拮抗剂西咪替丁对此无影响。引发这些效应的刺激位点散布于先前报道的组胺免疫反应性细胞体所在区域。结果表明,下丘脑后部神经元通过交感神经系统降低气管张力,且该途径涉及组胺能神经元。

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