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工作记忆与老年人强化学习的相关性随学习时间尺度而异。

Relevance of working memory for reinforcement learning in older adults varies with timescale of learning.

机构信息

Behavioural Science Institute, Radboud University , Nijmegen, The Netherlands.

Department of Clinical Psychology, University of Amsterdam , Amsterdam, The Netherlands.

出版信息

Neuropsychol Dev Cogn B Aging Neuropsychol Cogn. 2020 Sep;27(5):654-676. doi: 10.1080/13825585.2019.1664389. Epub 2019 Sep 22.

Abstract

In young adults, individual differences in working memory (WM) contribute to reinforcement learning (RL). Age-related RL changes, however, are mostly attributed to decreased reward prediction-error (RPE) signaling. Here, we investigated the contribution of WM to RL in young (18-35) and older (≥65) adults. Because WM supports maintenance across a limited timescale, we only expected a relation between RL and WM with short delays between stimulus repetitions. Our results demonstrated better learning with short than long delays. A week later, however, long-delay associations were remembered better. Computational modeling corroborated that during learning, WM was more engaged by young adults in the short-delay condition than in any other age-condition combination. Crucially, both model-derived and neuropsychological assessments of WM predicted short-delay learning in older adults, who further benefitted from using self-conceived learning strategies. Thus, depending on the timescale of learning, age-related RL changes may not only reflect decreased RPE signaling but also WM decline.

摘要

在年轻人中,工作记忆(WM)的个体差异有助于强化学习(RL)。然而,与年龄相关的 RL 变化主要归因于减少奖励预测误差(RPE)信号。在这里,我们研究了 WM 在年轻(18-35 岁)和老年(≥65 岁)成年人中的 RL 贡献。因为 WM 支持在有限的时间尺度内保持,所以我们只期望 RL 和 WM 之间存在关联,前提是刺激重复之间的延迟较短。我们的结果表明,短延迟的学习效果更好。然而,一周后,长延迟的关联被记得更好。计算模型证实,在学习过程中,与任何其他年龄条件组合相比,年轻成年人在短延迟条件下更能投入 WM。至关重要的是,WM 的模型推导和神经心理学评估都可以预测老年成年人在短延迟学习中的表现,并且他们进一步受益于使用自我构想的学习策略。因此,根据学习的时间尺度,与年龄相关的 RL 变化不仅可能反映出减少的 RPE 信号,还可能反映出 WM 下降。

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