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从大鼠小脑顶核引发的一种新型血管减压反应:顶核减压反应。

A novel vasodepressor response elicited from the rat cerebellar fastigial nucleus: the fastigial depressor response.

作者信息

Chida K, Iadecola C, Underwood M D, Reis D J

出版信息

Brain Res. 1986 Apr 9;370(2):378-82. doi: 10.1016/0006-8993(86)90498-1.

Abstract

We sought to determine by using kainic acid (KA), an agent stimulating neuronal cell bodies but not fibers, whether the elevations in arterial pressure (AP) and heart rate (HR) elicited by electrical stimulation of the cerebellar fastigial nucleus (FN) are due to excitation of local neurons in FN or fibers passing through the area. Rats were anesthetized (chloralose 40 mg/kg), paralyzed (tubocurarine) and artificially ventilated. Electrical stimulation of FN (50 Hz, 10-100 microA) increased AP and HR. In contrast restricted microinjections of KA (0.05-5 nmol/100 nl) in FN elicited a sustained, dose-dependent decrease in AP and HR. The response is not due to diffusion of KA to adjacent sites. Excitation by KA of neurons intrinsic to FN elicits a heretofore unrecognized vasodepressor response, the fastigial depressor response.

摘要

我们试图通过使用红藻氨酸(KA)来确定,通过电刺激小脑顶核(FN)引起的动脉血压(AP)升高和心率(HR)加快是由于FN中局部神经元的兴奋还是穿过该区域的纤维的兴奋,KA是一种刺激神经元细胞体而非纤维的物质。将大鼠麻醉(氯醛糖40mg/kg)、麻痹(筒箭毒碱)并进行人工通气。电刺激FN(50Hz,10 - 100微安)可使AP和HR升高。相比之下,在FN中局部微量注射KA(0.05 - 5纳摩尔/100纳升)可引起AP和HR持续的、剂量依赖性降低。该反应并非由于KA扩散至相邻部位所致。KA对FN固有神经元的兴奋引发了一种迄今未被认识到的血管减压反应,即顶核减压反应。

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