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Combinations of low-level and high-level neural processes account for distinct patterns of context-dependent choice

Combinations of low-level and high-level neural processes account for distinct patterns of context-dependent choice

来源:bioRxiv_logobioRxiv
英文摘要

Abstract Context effects have been explained by either low-level neural adjustments or high-level cognitive processes but not their combination. It is currently unclear how these processes interact to shape individuals’ responses to context. Here, we used a large cohort of human subjects in experiments involving choice between two or three gambles in order to study the dependence of context effects on neural adaptation and individuals’ risk attitudes. Our experiments did not provide any evidence that neural adaptation on long timescales (~100 trials) contributes to context effects. Using post-hoc analyses we identified two groups of subjects with distinct patterns of responses to decoys, both of which depended on individuals’ risk aversion. Subjects in the first group exhibited strong, consistent decoy effects and became more risk averse due to decoy presentation. In contrast, subjects in the second group did not show consistent decoy effects and became more risk seeking. The degree of change in risk aversion due to decoy presentation was positively correlated with the original degrees of risk aversion. To explain these results and reveal underlying neural mechanisms, we developed new models incorporating both low- and high-level processes and used these models to fit individuals’ choice behavior. We found that observed distinct patterns of decoy effects can be explained by a combination of adjustments in neural representations and competitive weighting of reward attributes, both of which depend on risk aversion but in opposite directions. Altogether, our results demonstrate how a combination of low- and high-level processes shapes choice behavior in more naturalistic settings, modulates overall risk preference, and explains distinct behavioral phenotypes.

Horno Oihane、Spitmaan Mehran、Chu Emily、Soltani Alireza

Champalimaud Research, Champalimaud Centre for the UnknownDepartment of Psychological and Brain Sciences, Dartmouth CollegeDepartment of Psychological and Brain Sciences, Dartmouth CollegeDepartment of Psychological and Brain Sciences, Dartmouth College

10.1101/508655

生物科学理论、生物科学方法生物科学研究方法、生物科学研究技术生物物理学

decision makingrisk aversionneural adaptationdecoy effectsattention

Horno Oihane,Spitmaan Mehran,Chu Emily,Soltani Alireza.Combinations of low-level and high-level neural processes account for distinct patterns of context-dependent choice[EB/OL].(2025-03-28)[2025-05-07].https://www.biorxiv.org/content/10.1101/508655.点此复制

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