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Dopaminergic genes are associated with both directed and random exploration

机译:多巴胺能基因与指向和随机勘探有关

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In order to maximize long-term rewards, agents must balance exploitation (choosing the option with the highest payoff) and exploration (gathering information about options that might have higher payoffs). Although the optimal solution to this trade-off is intractable, humans make use of two effective strategies: selectively exploring options with high uncertainty (directed exploration), and increasing the randomness of their choices when they are more uncertain (random exploration). Using a task that independently manipulates these two forms of exploration, we show that single nucleotide polymorphisms related to dopamine are associated with individual differences in exploration strategies. Variation in a gene linked to prefrontal dopamine (COMT) predicted the degree of directed exploration, as well as the overall randomness of responding. Variation in a gene linked to striatal dopamine (DARPP-32) predicted the degree of both directed and random exploration. These findings suggest that dopamine makes multiple contributions to exploration, depending on its afferent target.
机译:为了最大限度地提高长期奖励,代理商必须削减开发(选择最高的收益率)和勘探(收集有关可能具有更高收益的选项的信息)。虽然这一权衡的最佳解决方案是棘手的,但人类利用了两种有效的策略:选择性地探索具有高不确定性(定向探索)的选择,并在更不确定(随机勘探)时增加其选择的随机性。使用独立操纵这两种探索的任务,我们表明与多巴胺有关的单一核苷酸多态性与勘探策略的个体差异有关。链接到前额外多巴胺(COMT)的基因的变异预测了定向探索程度,以及响应的总体随机性。与纹纹纹纹多巴胺(DARPP-32)相关的基因的变异预测了定向和随机勘探的程度。这些研究结果表明,多巴胺取决于其传入目标,对勘探提供多项贡献。

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