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大鼠脑沟前额叶皮质的颅内自我刺激:刺激部位6-羟基多巴胺或 kainic 酸损伤的影响。

Intracranial self-stimulation from the sulcal prefrontal cortex in the rat: the effect of 6-hydroxydopamine or kainic acid lesions at the site of stimulation.

作者信息

Gerfen C R, Clavier R M

出版信息

Brain Res. 1981 Nov 16;224(2):291-304. doi: 10.1016/0006-8993(81)90860-x.

Abstract

An electrode cannula system was used to elicit intracranial self-stimulation (ICSS) from the sulcal prefrontal cortex in rats to test the behavioral effects of local infusions of 6-hydroxydopamine (6-OHDA) or kainic acid (KA) into the brain area surrounding the electrode tip. In experiment I sulcal ICSS animals received injections of 6-OHDA with or without desipramine (DMI) pretreatment to block 6-OHDA uptake into noradrenergic (NA) terminals. Those animals that received DMI pretreatment were subsequently shown to have sustained sulcal cortical dopaminergic (DA) denervation while sulcal molecular layer NA systems were spared as revealed with glyoxylic acid-induced catecholamine histofluorescence. Those animals not receiving DMI pretreatment sustained near-complete denervation of both NA and DA sulcal cortical systems. Neither treatment had a lasting effect on sulcal ICSS suggesting that sulcal ICSS is not dependent on the presynaptic release or DA of NA into that brain area. In experiment II KA injections that lesioned neurons in sulcal cortical layers V and VI resulted in the abolition of sulcal ICSS for the duration of a 21 day postlesion trial period. These results suggest that activation of a descending corticofugal system originating in the sulcal cortex is responsible for the mediation of sulcal prefrontal cortical ICSS. This system was mapped by the selective silver impregnation of degenerating neural elements resulting from effective lesions.

摘要

使用电极套管系统从大鼠的沟前额叶皮质引发颅内自我刺激(ICSS),以测试向电极尖端周围脑区局部注入6-羟基多巴胺(6-OHDA)或海藻酸(KA)的行为效应。在实验I中,沟ICSS动物接受了6-OHDA注射,有或没有去甲丙咪嗪(DMI)预处理以阻断6-OHDA摄取到去甲肾上腺素能(NA)终末。随后显示,那些接受DMI预处理的动物具有持续的沟皮质多巴胺能(DA)去神经支配,而去甲肾上腺素分子层NA系统未受影响,这通过乙醛酸诱导的儿茶酚胺组织荧光得以揭示。那些未接受DMI预处理的动物,其NA和DA沟皮质系统均持续近完全去神经支配。两种处理对沟ICSS均无持久影响,这表明沟ICSS不依赖于NA向该脑区的突触前释放或DA。在实验II中,在沟皮质V层和VI层损伤神经元的KA注射导致在损伤后21天的试验期内沟ICSS消失。这些结果表明,起源于沟皮质的下行皮质离心系统的激活负责介导沟前额叶皮质ICSS。该系统通过对有效损伤导致的变性神经元成分进行选择性银浸染来定位。

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