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伏隔核中自我刺激与多巴胺释放的机制。

Mechanics of self-stimulation and dopamine release in the nucleus accumbens.

作者信息

Yavich Leonid, Tanila Heikki

机构信息

In Vivo Voltammetry Contract Research Laboratory, Department of Pharmacology and Toxicology, Kuopio University Hospital, Kuopio, Finland.

出版信息

Neuroreport. 2007 Aug 6;18(12):1271-4. doi: 10.1097/WNR.0b013e328244e576.

Abstract

Robust self-stimulation can be obtained from electrodes implanted in the medial forebrain bundle. We used in-vivo voltammetry to monitor stimulated dopamine release in the mouse nucleus accumbens during implantation of the stimulating electrodes. The higher the level of stimulated dopamine release during electrode implantation, the lower was the threshold for self-stimulation and the shorter the duration of the stimulation train when it was controlled by animal. We suggest that dopamine release is a reliable indicator of the proximity of the stimulating electrode to the brain reward sites. Inclusion of this indicator solves the problem of large interindividual variation in self-stimulation currents and permits a new approach to studies on mechanisms and pathways involved in brain reward.

摘要

通过植入内侧前脑束的电极能够获得强烈的自我刺激。我们在植入刺激电极的过程中,采用体内伏安法监测小鼠伏隔核中受刺激的多巴胺释放情况。电极植入过程中受刺激的多巴胺释放水平越高,自我刺激的阈值就越低,并且当由动物控制时,刺激序列的持续时间就越短。我们认为多巴胺释放是刺激电极与脑奖赏位点接近程度的可靠指标。纳入该指标解决了自我刺激电流个体间差异大的问题,并为研究脑奖赏所涉及的机制和途径提供了一种新方法。

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