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April 10, 2026Vision Research1 citationsOpen Access

Baseline dynamics in human visual behaviour

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TFThomas FabianTechnical University of Darmstadt

Key Points

  • The aim is to explore if gaze behaviour follows predictable patterns across different contexts and tasks.
  • Utilized a context-agnostic eye movement model with a fixed transition kernel.
  • Compared predictions of gaze behaviour against a baseline model sampling randomly from an empirical distribution.
  • Analyzed eye movement data across various viewing situations.
  • The context-agnostic model predicted human saccade lengths more accurately than the baseline model.
  • Evidence suggests that human gaze patterns exhibit baseline dynamics across different contexts.
  • The findings indicate the presence of a universal component in the human visual system.

Abstract

Humans perceive their visual environment by directing their eyes towards relevant objects. The deployment of visual attention depends substantially on stimulus properties, higher cognitive processes, and biases and constraints of the visual system. Numerous models describe human eye movements depending on the task or content. However, there is no universal, context-invariant model of human gaze behaviour. Here, we show that statistical regularities can be utilised to model human gaze behaviour regardless of task, observer, and stimulus. Using a context-agnostic eye movement model with a fixed transition kernel, we can predict human saccade lengths in various viewing situations better than a baseline model which randomly samples from the pooled empirical distribution. Thus, contrary to current belief, human gaze patterns follow baseline dynamics, making them comparable across contexts. Since gaze behaviour is directly related to brain structure, our results provide evidence for the existence of an underlying, context-invariant component in the human visual system.

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Cite This Study

Thomas Fabian (2026) studied this question.

synapsesocial.com/papers/69d892886c1944d70ce03ea1https://doi.org/10.1016/j.visres.2026.108828
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