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对大鼠黑质进行电刺激不会增加其甩尾潜伏期。

Electrical stimulation of the substantia nigra does not increase tail-flick latency in the rat.

作者信息

Duggal K N, Barasi S

出版信息

Exp Neurol. 1985 Feb;87(2):300-8. doi: 10.1016/0014-4886(85)90220-1.

Abstract

The effect of electrical stimulation at multiple sites in the midbrain was investigated in rats lightly anesthetized with barbiturate. The application of monopolar electrical stimulation to the substantia nigra (SN) or the adjacent cerebral peduncle failed to produce an elevation in tail-flick latency (TFL) in response to the application of noxious radiant heat. However, the same intensity of stimulation when applied to an area dorsal to the SN led to an elevation in TFL. This effect was not due to current spread to dopaminergic neurons in the zona compacta compartment of the SN because administration of cis-flupenthixol failed to block the effect. We conclude that, contrary to previous suggestions, discrete electrical stimulation of the SN itself does not give rise to a state of antinociception.

摘要

在用巴比妥类药物轻度麻醉的大鼠中,研究了中脑多个部位电刺激的效果。对黑质(SN)或相邻的大脑脚施加单极电刺激,在施加有害辐射热时未能使甩尾潜伏期(TFL)延长。然而,当将相同强度的刺激施加到SN背侧区域时,TFL会延长。这种效应并非由于电流扩散到SN致密部的多巴胺能神经元,因为施用顺式氟哌噻吨未能阻断该效应。我们得出结论,与之前的观点相反,对SN本身进行离散电刺激不会引起抗伤害感受状态。

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