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More Than the Sum of Its Parts: A Role for the Hippocampus in Configural Reinforcement Learning

机译:超过其部分的总和:在配置加强学习中的海马作用

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People often perceive configurations rather than the elements they comprise, a bias that may emerge because configurations often predict outcomes. But how does the brain learn to associate configurations with outcomes and how does this learning differ from learning about individual elements? We combined behavior, reinforcement learning models, and functional imaging to understand how people learn to associate configurations of cues with outcomes. We found that configural learning depended on the relative predictive strength of elements versus configurations and was related to both the strength of BOLD activity and patterns of BOLD activity in the hippocampus. Configural learning was further related to functional connectivity between the hippocampus and nucleus accumbens. Moreover, configural learning was associated with flexible knowledge about associations and differential eye movements during choice. Together, this suggests that configural learning is associated with a distinct computational, cognitive, and neural profile that is well suited to support flexible and adaptive behavior.
机译:人们经常感知配置而不是他们包括的元素,可能出现的偏差,因为配置通常预测结果。但是大脑如何学会与结果相关联的配置,并且该学习如何与学习各个元素的不同?我们组合行为,强化学习模型和功能性成像,了解人们如何学习与结果相关联的提示配置。我们发现,配置学习取决于元素与配置的相对预测强度,与海马大胆活动的强度和大胆活动模式有关。配置学习进一步与海马和核心腺之间的功能性连接有关。此外,配置学习与在选择期间的关于关联和差分眼影的灵活知识相关联。这表明,配置学习与一个不同的计算,认知和神经配置文件,其非常适合支持灵活和自适应行为。

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