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Synapse
March 3, 20260 citationsOpen Access

Cerebellar circuits anticipate dopamine rewards

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BFBenjamin Abad FilioAOAmma OtchereSSSubhiksha Srinivasan

Key Points

  • Cerebellar granule cells anticipate dopamine rewards, showing sustained activity that stops at reward delivery.
  • Granule cell activity adjusts to match 1- or 2-second intervals before dopamine rewards are given.
  • Two-photon imaging revealed that climbing fibers primarily spike post-reward, contrasting with granule cells.
  • The findings suggest a significant role of cerebellar circuits in anticipating rewards beyond physical actions.

Abstract

Predicting rewards is critical for learning. Although the cerebellum predicts rewards like water and food, it also famously coordinates physical actions like drinking and eating. To disentangle reward prediction from the movements to consume reward, we trained mice to push for delayed dopamine rewards delivered directly into the brain. Via two-photon imaging, we found that many cerebellar granule cells (GrCs) anticipated dopamine with sustained activity that terminated at reward delivery. GrC activity also "stretched" to match 1- or 2-s intervals before dopamine, thereby linking the action to the expected reward time. By contrast, most cerebellar climbing fibers (CFs) spiked just after dopamine delivery. GrC-CF activity also generalized between dopamine versus water rewards, both in individual mice and many individual neurons. Finally, naïve mice 'rewarded' only with CF stimulation also learned to execute a modest number of pushing movements, with similar predictive GrC activity. Thus, cerebellar circuits help animals learn to anticipate rewards even when no consummatory action is needed, suggesting deeper cerebellar integration in brain reward prediction networks.

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Cite This Study

Filio et al. (2026) studied this question.

synapsesocial.com/papers/69a76063c6e9836116a2d148https://doi.org/10.64898/2026.02.02.703324
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