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三极刺激电极在诱发大鼠纹状体多巴胺释放中的效用。

Utility of a tripolar stimulating electrode for eliciting dopamine release in the rat striatum.

作者信息

Bergstrom B P, Garris P A

机构信息

Department of Biological Sciences, Cellular and Integrative Physiology Section, Illinois State University, Normal, USA

出版信息

J Neurosci Methods. 1999 Mar 1;87(2):201-8. doi: 10.1016/s0165-0270(99)00009-6.

Abstract

The present study evaluated tripolar stimulating electrodes for eliciting dopamine release in the rat brain in vivo. Stimulating electrodes were placed either in the medial forebrain bundle or in the ventral mesencephalon associated with the ventral tegmental area and substantia nigra. The concentration of extracellular dopamine was monitored in dopamine terminal fields at 100-ms intervals using fast-scan cyclic voltammetry at carbon-fiber microelectrodes. To characterize the stimulated area, recordings were collected in several striatal regions including the caudate putamen and the core and shell of the nucleus accumbens. The tripolar electrode was equally effective in stimulating dopamine release in medial and lateral regions of the striatum. In contrast, responses evoked by a bipolar electrode were typically greater in one mediolateral edge versus the other. The added size of the tripolar electrode did not appear to cause complications as signals were stable over the course of the experiment (3 h). Subsets of mesostriatal dopamine neurons could also be selectively activated using the tripolar electrode in excellent agreement with previously described topography. Taken together, these results suggested that the tripolar stimulating electrode is well suited for studying the regulation of midbrain dopamine neurons in vivo.

摘要

本研究评估了三极刺激电极在体内诱发大鼠脑内多巴胺释放的效果。刺激电极被置于内侧前脑束或与腹侧被盖区及黑质相关的腹侧中脑。使用碳纤维微电极通过快速扫描循环伏安法以100毫秒的间隔监测多巴胺终末场中细胞外多巴胺的浓度。为了表征受刺激区域,在包括尾壳核以及伏隔核核心和壳在内的几个纹状体区域进行记录。三极电极在刺激纹状体内侧和外侧区域的多巴胺释放方面同样有效。相比之下,双极电极诱发的反应通常在一个内侧-外侧边缘比另一个更大。三极电极增加的尺寸似乎并未引起并发症,因为在实验过程(3小时)中信号是稳定的。中脑纹状体多巴胺神经元的亚群也可以使用三极电极被选择性激活,这与先前描述的拓扑结构高度一致。综上所述,这些结果表明三极刺激电极非常适合用于研究体内中脑多巴胺神经元的调节。

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