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March 19, 2026Nature Communications3 citationsOpen Access

Neural circuit models for evidence accumulation through choice-selective sequences

LBLindsey S. BrownJCJounhong Ryan ChoSBScott S. Bolkan

Key Points

  • This study aims to understand how evidence is accumulated in the brain during decision-making processes through different neural circuit models.
  • Developed two neural circuit models that show sequential neural firing.
  • Conducted neural recordings from four brain regions during an evidence accumulation task.
  • Analyzed evidence tuning in different brain regions to evaluate model predictions.
  • Observations showed neurons firing sequentially rather than persistently during decision making.
  • Different brain regions exhibited evidence tuning that aligned with specific neural circuit models.
  • Demonstrated that different mechanisms may explain how evidence is processed and transferred in the brain.

Abstract

Abstract Decision making is traditionally thought to be mediated by neurons that accumulate evidence through persistent activity. However, recent decision-making experiments in rodents have observed neurons across the brain that fire sequentially, rather than persistently, with the subset of neurons in the sequence depending on the animal’s choice. We developed two candidate circuit models in which neurons are active sequentially and transfer evidence faithfully to the next active population. One model encodes evidence in the relative firing of two competing chains of neurons, and the other in the network location of a stereotyped, bump-like pattern of neural activity. Neural recordings from four brain regions during an evidence accumulation task revealed that different regions displayed evidence tuning consistent with different candidate models. This work provides a mechanistic explanation for how graded information may be precisely accumulated within and transferred between neural populations, and suggests that different brain regions may accumulate evidence through different circuit mechanisms.

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Cite This Study

Brown et al. (2026) studied this question.

synapsesocial.com/papers/69bb92d1496e729e629806dehttps://doi.org/10.1038/s41467-026-70267-9
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