AI Article Synopsis

  • The study investigates how subjects make decisions by tracking their choice strategies on a trial-by-trial basis using a probabilistic method known as Bayesian evidence accumulation.
  • It reveals that both learning and changes in rules lead to the use of different exploratory strategies in various subjects, including humans and animals, where "lose-shift" indicates understanding of new rewarded rules.
  • The approach is versatile, low-cost, and suitable for real-time analysis and control, applicable to any discrete choice strategy.

Article Abstract

Investigating how, when, and what subjects learn during decision-making tasks requires tracking their choice strategies on a trial-by-trial basis. Here, we present a simple but effective probabilistic approach to tracking choice strategies at trial resolution using Bayesian evidence accumulation. We show this approach identifies both successful learning and the exploratory strategies used in decision tasks performed by humans, non-human primates, rats, and synthetic agents. Both when subjects learn and when rules change the exploratory strategies of win-stay and lose-shift, often considered complementary, are consistently used independently. Indeed, we find the use of lose-shift is strong evidence that subjects have latently learnt the salient features of a new rewarded rule. Our approach can be extended to any discrete choice strategy, and its low computational cost is ideally suited for real-time analysis and closed-loop control.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10959529PMC
http://dx.doi.org/10.7554/eLife.86491DOI Listing

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