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Degenerate boundaries for multiple-alternative decisions

Author

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  • Sophie-Anne Baker

    (University of Bristol)

  • Thom Griffith

    (University of Bristol)

  • Nathan F. Lepora

    (University of Bristol)

Abstract

Integration-to-threshold models of two-choice perceptual decision making have guided our understanding of human and animal behavior and neural processing. Although such models seem to extend naturally to multiple-choice decision making, consensus on a normative framework has yet to emerge, and hence the implications of threshold characteristics for multiple choices have only been partially explored. Here we consider sequential Bayesian inference and a conceptualisation of decision making as a particle diffusing in n-dimensions. We show by simulation that, within a parameterised subset of time-independent boundaries, the optimal decision boundaries comprise a degenerate family of nonlinear structures that jointly depend on the state of multiple accumulators and speed-accuracy trade-offs. This degeneracy is contrary to current 2-choice results where there is a single optimal threshold. Such boundaries support both stationary and collapsing thresholds as optimal strategies for decision-making, both of which result from stationary representations of nonlinear boundaries. Our findings point towards a normative theory of multiple-choice decision making, provide a characterisation of optimal decision thresholds under this framework, and inform the debate between stationary and dynamic decision boundaries for optimal decision making.

Suggested Citation

  • Sophie-Anne Baker & Thom Griffith & Nathan F. Lepora, 2022. "Degenerate boundaries for multiple-alternative decisions," Nature Communications, Nature, vol. 13(1), pages 1-15, December.
  • Handle: RePEc:nat:natcom:v:13:y:2022:i:1:d:10.1038_s41467-022-32741-y
    DOI: 10.1038/s41467-022-32741-y
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    References listed on IDEAS

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    1. Huber, Joel & Payne, John W & Puto, Christopher, 1982. "Adding Asymmetrically Dominated Alternatives: Violations of Regularity and the Similarity Hypothesis," Journal of Consumer Research, Journal of Consumer Research Inc., vol. 9(1), pages 90-98, June.
    2. Satohiro Tajima & Jan Drugowitsch & Alexandre Pouget, 2016. "Optimal policy for value-based decision-making," Nature Communications, Nature, vol. 7(1), pages 1-12, November.
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    Cited by:

    1. Diederich, Adele & Mallahi-Karai, Keivan, 2023. "Cube model: Predictions and account for best–worst choice situations with three choice alternatives," Journal of choice modelling, Elsevier, vol. 49(C).

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