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Divergence between oculomotor and perceptual causality.

Jeremy B Badler1, Philippe Lefèvre, Marcus Missal

  • 1Laboratory of Neurophysiology, Center for Systems Engineering and Applied Mechanics, and Institute of Neuroscience, Université catholique de Louvain, Brussels, Belgium. jeremy.badler@uclouvain.be

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This study investigated how people perceive causality. Oculomotor responses showed a bias towards perceived causal motion, but this did not correlate with explicit judgments, suggesting different cognitive processes.

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Area of Science:

  • Cognitive Psychology
  • Neuroscience
  • Perception

Background:

  • Humans intuitively perceive causality in physical interactions, like colliding billiard balls.
  • Previous research indicated predictive oculomotor responses align with perceived causal motion.
  • Direct comparison between predictive oculomotor and reactive psychophysical responses to causality was lacking.

Purpose of the Study:

  • To directly compare predictive oculomotor responses and reactive psychophysical judgments of causality.
  • To determine if these two response types correlate, suggesting shared underlying mental processes.
  • To investigate how introducing a delay affects oculomotor biases and causal judgments.

Main Methods:

  • Recorded oculomotor responses to visual stimuli depicting collisions.
  • Subjects manually classified stimuli as causal or noncausal.
  • Introduced a 300-millisecond delay in 50% of trials to disrupt causality perception.
  • Analyzed correlations between oculomotor biases and psychophysical classifications across subjects and trials.

Main Results:

  • Oculomotor responses exhibited a bias towards perceived causal motion, aligning with psychophysical classifications.
  • Correlations between oculomotor and psychophysical responses were largely absent across subjects.
  • Despite a delay impeding causality perception, oculomotor biases persisted, with altered classification strategies.
  • No trial-by-trial correlation was found between oculomotor and judgment responses.

Conclusions:

  • Oculomotor responses to causal stimuli and explicit judgments of causality involve divergent cognitive processes.
  • Predictive oculomotor biases may operate independently of conscious causal perception and judgment.
  • The findings challenge the assumption of unified mechanisms for action prediction and causal reasoning.