Prospective contingency explains behavior and dopamine signals during associative learning, Qian et al., 2025

Burrell, Mark;Qian, Lechen;Matias, Sara;Hennig, Jay A.;Murthy, Venkatesh N.;Gershman, Samuel J.;Uchida, Naoshige

Description

Code and Data for Prospective contingency explains behavior and dopamine signals during associative learningAbstract: AbstractAssociative learning depends on contingency, the degree to which a stimulus predicts an outcome. Despite its importance, the neural mechanisms linking contingency to behavior remain elusive. Here we examined the dopamine activity in the ventral striatum – a signal implicated in associative learning – in a Pavlovian contingency degradation task in mice. We show that both anticipatory licking and dopamine responses to a conditioned stimulus decreased when additional rewards were delivered uncued, but remained unchanged if additional rewards were cued. These results conflict with contingency-based accounts using a traditional definition of contingency or a novel causal learning model (ANCCR), but can be explained by temporal difference (TD) learning models equipped with an appropriate inter-trial-interval (ITI) state representation. Recurrent neural networks trained within a TD framework develop state representations like our best ‘handcrafted’ model. Our findings suggest that the TD error can be a measure that describes both contingency and dopaminergic activity.

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Metrics

Dataset Index

0.4

FAIR Score

85%

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0

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0

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Publication Details

DOI

Publisher

figshare

License

Creative Commons Attribution 4.0 International

Assigned Domain

Subfield

Cognitive Neuroscience

Field

Neuroscience

Domain

Life Sciences

Confidence Score

54%

Source

Scholar Data Model

Keywords

Neurosciences not elsewhere classified

Normalization Factors

FT

63.46

CTw

1.00

MTw

1.00