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Synapse
February 14, 2026Nature Neuroscience2 citationsOpen Access

Duration between rewards controls the rate of behavioral and dopaminergic learning

DBDennis A. BurkeATAnnie TaylorHJHuijeong Jeong

Key Points

  • The research aims to explore how the duration between rewards affects learning rates in a dopaminergic context.
  • Conducted experiments with mice to analyze learning rates.
  • Tested various conditions regarding reward timing.
  • Developed a dopamine-based learning model to explain findings.
  • Behavioral and dopaminergic learning rates correlate with the duration between rewards.
  • Learning over fixed durations remains constant regardless of cue–outcome experience frequency.
  • Introduced a model of retrospective learning that unifies biological learning mechanisms.

Abstract

Abstract Learning the causes of rewards is crucial for survival. Cue–reward associative learning is controlled in the brain by mesolimbic dopamine. It is widely believed that dopamine drives learning by conveying a reward prediction error. Dopamine-based learning algorithms are generally ‘trial-based’: learning progresses sequentially across individual cue–outcome experiences. A foundational assumption of these models is that the more cue–reward pairings one experiences over a fixed duration, the more one learns this association. By identifying a new biological principle governing learning, we disprove this assumption. Specifically, across many conditions in mice, we show that behavioral and dopaminergic learning rates are proportional to the duration between rewards (or punishments). Due to this rule, the overall learning over a fixed duration is independent of the number of cue–outcome experiences. A dopamine-based model of retrospective learning explains these findings, thereby providing a unified account of the biological mechanisms of learning.

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Cite This Study

Burke et al. (2026) studied this question.

synapsesocial.com/papers/699010382ccff479cfe56b84https://doi.org/10.1038/s41593-026-02206-2
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