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Precision-based causal inference modulates audiovisual temporal recalibration

View ORCID ProfileLuhe Li, View ORCID ProfileFangfang Hong, Stephanie Badde, Michael S. Landy
doi: https://doi.org/10.1101/2024.03.08.584189
Luhe Li
1Department of Psychology, New York University
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  • For correspondence: [email protected]
Fangfang Hong
2Department of Psychology, University of Pennsylvania
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Stephanie Badde
3Department of Psychology, Tufts University
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Michael S. Landy
1Department of Psychology, New York University
4Center for Neural Science, New York University
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Abstract

Cross-modal temporal recalibration guarantees stable temporal perception across ever-changing environments. Yet, the mechanisms of cross-modal temporal recalibration remain unknown. Here, we conducted an experiment to measure how participants’ temporal perception was affected by exposure to audiovisual stimuli with consistent temporal delays. Consistent with previous findings, recalibration effects plateaued with increasing audiovisual asynchrony and varied by which modality led during the exposure phase. We compared six observer models that differed in how they update the audiovisual temporal bias during the exposure phase and whether they assume modality-specific or modality-independent precision of arrival latency. The causal-inference observer shifts the audiovisual temporal bias to compensate for perceived asynchrony, which is inferred by considering two causal scenarios: when the audiovisual stimuli have a common cause or separate causes. The asynchrony-contingent observer updates the bias to achieve simultaneity of auditory and visual measurements, modulating the update rate by the likelihood of the audiovisual stimuli originating from a simultaneous event. In the asynchrony-correction model, the observer first assesses whether the sensory measurement is asynchronous; if so, she adjusts the bias proportionally to the magnitude of the measured asynchrony. Each model was paired with either modality-specific or modality-independent precision of arrival latency. A Bayesian model comparison revealed that both the causal-inference process and modality-specific precision in arrival latency are required to capture the nonlinearity and asymmetry observed in audiovisual temporal recalibration. Our findings support the hypothesis that audiovisual temporal recalibration relies on the same causal-inference processes that govern cross-modal perception.

Competing Interest Statement

The authors have declared no competing interest.

Footnotes

  • Minor changes to remove the conclusion part. All the major analyses and figures are kept unchanged.

  • https://osf.io/8s7qv/

Copyright 
The copyright holder for this preprint is the author/funder, who has granted bioRxiv a license to display the preprint in perpetuity. It is made available under a CC-BY-NC-ND 4.0 International license.
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Posted January 13, 2025.
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Precision-based causal inference modulates audiovisual temporal recalibration
Luhe Li, Fangfang Hong, Stephanie Badde, Michael S. Landy
bioRxiv 2024.03.08.584189; doi: https://doi.org/10.1101/2024.03.08.584189
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Precision-based causal inference modulates audiovisual temporal recalibration
Luhe Li, Fangfang Hong, Stephanie Badde, Michael S. Landy
bioRxiv 2024.03.08.584189; doi: https://doi.org/10.1101/2024.03.08.584189

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