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在大脑奖励回路中解开愉悦、激励显著性和学习信号的联系。

Disentangling pleasure from incentive salience and learning signals in brain reward circuitry.

机构信息

Department of Psychology, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Proc Natl Acad Sci U S A. 2011 Jul 5;108(27):E255-64. doi: 10.1073/pnas.1101920108. Epub 2011 Jun 13.

Abstract

Multiple signals for reward-hedonic impact, motivation, and learned associative prediction-are funneled through brain mesocorticolimbic circuits involving the nucleus accumbens and ventral pallidum. Here, we show how the hedonic "liking" and motivation "wanting" signals for a sweet reward are distinctly modulated and tracked in this circuit separately from signals for Pavlovian predictions (learning). Animals first learned to associate a fixed sequence of Pavlovian cues with sucrose reward. Subsequent intraaccumbens microinjections of an opioid-stimulating drug increased the hedonic liking impact of sucrose in behavior and firing signals of ventral pallidum neurons, and likewise, they increased incentive salience signals in firing to the reward-proximal incentive cue (but did not alter firing signals to the learned prediction value of a reward-distal cue). Microinjection of a dopamine-stimulating drug instead enhanced only the motivation component but did not alter hedonic impact or learned prediction signals. Different dedicated neuronal subpopulations in the ventral pallidum tracked signal enhancements for hedonic impact vs. incentive salience, and a faster firing pattern also distinguished incentive signals from slower hedonic signals, even for a third overlapping population. These results reveal separate neural representations of wanting, liking, and prediction components of the same reward within the nucleus accumbens to ventral pallidum segment of mesocorticolimbic circuitry.

摘要

多种与奖赏愉悦影响、动机和习得关联预测相关的信号,通过涉及伏隔核和腹侧苍白球的脑边缘皮质回路进行传递。在这里,我们展示了愉悦“喜欢”和奖赏动机“想要”的信号,是如何在该回路中与用于巴甫洛夫预测(学习)的信号分开进行独特调节和追踪的。动物首先学会将一个固定的巴甫洛夫线索序列与蔗糖奖赏联系起来。随后,在伏隔核内注射阿片类药物刺激药物,增加了蔗糖的愉悦影响,以及腹侧苍白球神经元的放电信号,同样地,它们也增加了对奖赏近端激励线索的激励显著性信号(但不会改变对奖赏远端线索的习得预测值的放电信号)。相反,多巴胺刺激药物的注射仅增强了动机成分,但不会改变愉悦影响或习得预测信号。腹侧苍白球中的不同专用神经元亚群追踪了愉悦影响与激励显著性的信号增强,更快的发射模式也将激励信号与较慢的愉悦信号区分开来,即使对于第三个重叠的群体也是如此。这些结果揭示了相同奖赏的奖赏动机、愉悦和预测成分在伏隔核至边缘皮质回路的腹侧苍白球段内的单独神经表示。

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