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多巴胺对人类决策中探索/利用权衡的调节作用。

Dopaminergic modulation of the exploration/exploitation trade-off in human decision-making.

机构信息

Department of Systems Neuroscience, University Medical Center Hamburg-Eppendorf, Hamburg, Germany.

Department of Psychology, Biological Psychology, University of Cologne, Cologne, Germany.

出版信息

Elife. 2020 Jun 2;9:e51260. doi: 10.7554/eLife.51260.

Abstract

Involvement of dopamine in regulating exploration during decision-making has long been hypothesized, but direct causal evidence in humans is still lacking. Here, we use a combination of computational modeling, pharmacological intervention and functional magnetic resonance imaging to address this issue. Thirty-one healthy male participants performed a restless four-armed bandit task in a within-subjects design under three drug conditions: 150 mg of the dopamine precursor L-dopa, 2 mg of the D2 receptor antagonist haloperidol, and placebo. Choices were best explained by an extension of an established Bayesian learning model accounting for perseveration, directed exploration and random exploration. Modeling revealed attenuated directed exploration under L-dopa, while neural signatures of exploration, exploitation and prediction error were unaffected. Instead, L-dopa attenuated neural representations of overall uncertainty in insula and dorsal anterior cingulate cortex. Our results highlight the computational role of these regions in exploration and suggest that dopamine modulates how this circuit tracks accumulating uncertainty during decision-making.

摘要

多巴胺在调节决策过程中的探索行为方面的作用早已被假设,但在人类中直接的因果证据仍然缺乏。在这里,我们使用计算建模、药物干预和功能磁共振成像的组合来解决这个问题。31 名健康男性参与者在三种药物条件下(150 毫克多巴胺前体左旋多巴、2 毫克 D2 受体拮抗剂氟哌啶醇和安慰剂)以被试内设计完成了一个不安分的四臂赌博任务。选择可以通过扩展一个已建立的贝叶斯学习模型来最好地解释,该模型考虑了坚持、定向探索和随机探索。模型表明,左旋多巴会降低定向探索,而探索、利用和预测误差的神经特征不受影响。相反,左旋多巴会减弱岛叶和背侧前扣带皮层中整体不确定性的神经表示。我们的结果强调了这些区域在探索中的计算作用,并表明多巴胺调节了这个电路在决策过程中如何跟踪累积的不确定性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4d9/7266623/5fffccdfa54a/elife-51260-fig1.jpg

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