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Electrical Stimulation-Evoked Dopamine Release in the Primate Striatum

机译:灵长类纹状体中电刺激诱发的多巴胺释放

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摘要

Background: Primate studies demonstrate that high-frequency electrical stimulation (HFS) of the caudate can enhance learning. Importantly, in these studies, stimulation was applied following the execution of behavior and the effect persisted into subsequent trials, suggesting a change in plasticity rather than a momentary facilitation of behavior. Objectives/Methods: Although the mechanism of HFS-enhanced learning is not understood, evidence suggests that dopamine plays a critical role. Therefore, we used in vivo amperometry to evaluate the effects of HFS on striatal dopamine release in the anesthetized primate. While this does not directly examine dopamine during learning, it provides insight with relation to dopamine dynamics during electrical stimulation and specifically between different stimulation parameters and striatal compartments. Results: We demonstrate that HFS results in significantly more dopamine release in the striatum compared to low-frequency stimulation. In addition, electrical stimulation operates differentially on specific neuronal elements, as the parameters for dopamine release are different for the caudate, putamen and medial forebrain bundle. Conclusions: While not direct evidence, these data suggest that HFS evokes significant dopamine release which may play a role in stimulation-enhanced learning. Moreover, these data suggest a means to modulate extracellular dopamine with a high degree of temporal and spatial precision for either research or clinical applications.
机译:背景:灵长类动物的研究表明,尾状体的高频电刺激(HFS)可以促进学习。重要的是,在这些研究中,刺激是在行为执行后施加的,其效果持续到随后的试验中,表明可塑性发生了变化,而不是行为的暂时促进。目的/方法:尽管尚不清楚HFS增强学习的机制,但证据表明多巴胺起着关键作用。因此,我们使用体内安培法评估HFS对麻醉灵长类动物纹状体多巴胺释放的影响。虽然这不能在学习过程中直接检查多巴胺,但可以提供有关电刺激过程中多巴胺动力学的见解,尤其是在不同的刺激参数和纹状体隔室之间。结果:我们证明,与低频刺激相比,HFS导致纹状体中多巴胺的释放明显增加。另外,电刺激在特定的神经元元件上的作用不同,因为对于尾状,壳状核和内侧前脑束,多巴胺释放的参数是不同的。结论:尽管不是直接证据,但这些数据表明HFS引起大量的多巴胺释放,这可能在刺激增强型学习中起作用。而且,这些数据表明了一种用于研究或临床应用的高度时空精度调节细胞外多巴胺的方法。

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