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Cerebellar acceleration of learning in an evidence-accumulation task

  • Marlies Oostland
  • , Mikhail Kislin
  • , Yuhang Chen
  • , Tiffany Chen
  • , Sarah Jo Venditto
  • , Ben Deverett
  • , Samuel S.H. Wang

Research output: Contribution to journalArticlepeer-review

Abstract

SummaryCerebellar processing contributes to sensory salience, cognition, and behavioral flexibility. Here, we report that learning on a sensory evidence-accumulation task in mice is accelerated by cue-locked optogenetic stimulation of Purkinje cells but not by continuous optogenetic interference. Latent-state analysis revealed that accelerated learning was associated with enhanced focus on current over past trials. A cerebellum-specific transgenic autism model with disrupted Purkinje cell function also unexpectedly showed accelerated learning as well as enhanced reactivity to touch and auditory cues. Transgenic mice and wild-type mice receiving cue-locked stimulation showed prolonged sensory responses in Purkinje cell complex spikes and anterior cingulate cortex, and a subset of Purkinje cells in crus I showed on-task enhanced response to stimuli in wild-type mice. Sensory salience and task state may be different facets of a complex-spike-based mechanism for regulating brain-wide learning mechanisms. These findings potentially link cerebellum-dependent sensory salience with a global weak coherence account of autism.

Original languageEnglish (US)
Article number117262
JournalCell Reports
Volume45
Issue number4
DOIs
StatePublished - Apr 28 2026

All Science Journal Classification (ASJC) codes

  • General Biochemistry, Genetics and Molecular Biology

Keywords

  • anterior cingulate cortex
  • autism
  • behavioral state
  • cerebellum
  • cognition
  • complex spikes
  • learning
  • sensory reactivity
  • task focus

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