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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Transient changes in mesolimbic dopamine and their association with 'reward'.
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Transient changes in mesolimbic dopamine and their association with 'reward'.

机译:中脑边缘多巴胺的短暂变化及其与“奖励”的关系。

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Mesolimbic dopaminergic neurons modulate complex circuitry in the ventral forebrain involved in reward processing, although the precise function of the dopaminergic input is debated. Electrophysiological measurements have revealed that mesolimbic dopaminergic neurons can fire in either tonic or phasic modes, and that phasic firing accompanies the alerting or anticipatory phases of reward. However, the neurochemical relevance of this rapid neuronal discharge within the reward processing circuitry is not yet clear, in part because of difficulty in interpretation of extracellular dopamine measurements. Herein, the nature of the information provided by different neurochemical techniques is critically discussed. Classical methods of monitoring dopamine reveal changes in extracellular dopamine resulting from tonic neuronal activity, but do not have the temporal resolution to distinguish concentration transients. However, recent advances in dopamine sensors now enable transient dopamine concentrations resulting from phasic firing to be positively identified and followed on a physiologically relevant timescale. This has enabled demonstrations of discrete, phasic dopamine signals accompanying rewarding or alerting stimuli. Thus, enhanced dopamine release at terminals appears to be coincident with phasic electrical activity at cell bodies. These accumulating data promise to help unravel the precise role of phasic dopamine transmission in reward processing.
机译:中脑边缘多巴胺能神经元调节参与奖励处理的腹侧前脑的复杂电路,尽管对多巴胺能输入的确切功能尚有争议。电生理学测量表明,中脑边缘的多巴胺能神经元可以以滋补或阶段性方式激发,并且阶段性激发伴随着奖励的警觉阶段或预期阶段。然而,在奖励处理电路中这种快速神经元放电的神经化学相关性尚不清楚,部分原因是难以解释细胞外多巴胺的测量值。本文中,对不同神经化学技术提供的信息的性质进行了严格的讨论。监测多巴胺的经典方法揭示了由于滋补神经元活性导致的细胞外多巴胺的变化,但没有时间分辨率来区分浓度瞬变。然而,多巴胺传感器的最新进展现在使得能够肯定地识别由相发射引起的瞬态多巴胺浓度,并在生理上相关的时间尺度上进行跟踪。这使得伴随着奖励或警报刺激的离散多相多巴胺信号得以演示。因此,增强的多巴胺在末端的释放似乎与细胞体的相电活动相一致。这些积累的数据有望帮助弄清多巴胺传递在奖励过程中的确切作用。

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