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Motor “laziness” constrains fixation selection in real-world tasks

  • Charlie S. Burlingham
  • , Naveen Sendhilnathan
  • , Oleg Komogortsev
  • , T. Scott Murdison
  • , Michael Proulx
  • Meta Platforms
  • New York University
  • Texas State University

Research output: Contribution to journalArticlepeer-review

26   Link opens in a new tab Citations (SciVal)

Abstract

Humans coordinate their eye, head, and body movements to gather information from a dynamic environment while maximizing reward and minimizing biomechanical and energetic costs. However, such natural behavior is not possible in traditional experiments employing head/body restraints and artificial, static stimuli. Therefore, it is unclear to what extent mechanisms of fixation selection discovered in lab studies, such as inhibition-of-return (IOR), influence everyday behavior. To address this gap, participants performed nine real-world tasks, including driving, visually searching for an item, and building a Lego set, while wearing a mobile eye tracker (169 recordings; 26.6 h). Surprisingly, in all tasks, participants most often returned to what they just viewed and saccade latencies were shorter preceding return than forward saccades, i.e., consistent with facilitation, rather than inhibition, of return. We hypothesize that conservation of eye and head motor effort ("laziness") contributes. Correspondingly, we observed center biases in fixation position and duration relative to the head's orientation. A model that generates scanpaths by randomly sampling these distributions reproduced all return phenomena we observed, including distinct 3-fixation sequences for forward versus return saccades. After controlling for orbital eccentricity, one task (building a Lego set) showed evidence for IOR. This, along with small discrepancies between model and data, indicates that the brain balances minimization of motor costs with maximization of rewards (e.g., accomplished by IOR and other mechanisms) and that the optimal balance varies according to task demands. Supporting this account, the orbital range of motion used in each task traded off lawfully with fixation duration.

Original languageEnglish
Article numbere2302239121
Number of pages11
JournalProceedings of the National Academy of Sciences of the United States of America
Volume121
Issue number12
Early online date12 Mar 2024
DOIs
Publication statusPublished - 19 Mar 2024

Data Availability Statement

Code and anonymized datahave been deposited in an Open Science Foundation repository (72)

Acknowledgements

We thank Dr. Xiuyun Wu for ensuring the quality of our data. We also posthumously thank Dr. Kevin MacKenzie for initially motivating and collecting early data for this study. M.J.P. also has an affiliation with the University of Bath, United Kingdom.

Funding

data. We also posthumously thank Dr. Kevin MacKenzie for initially motivating and collecting early data for this study. M.J.P. also has an affiliation with the University of Bath, United Kingdom.

Funders
University of Bath

    Keywords

    • center bias
    • energy optimality
    • fixation selection
    • inhibition of return
    • re-centering bias

    ASJC Scopus subject areas

    • General

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