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September 30, 2025PLoS Computational Biology4 citationsOpen Access

Early visual signatures and benefits of intra-saccadic motion streaks

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RSRichard SchweitzerTSThomas SeelJRJörg Raisch

Key Points

  • Intra-saccadic motion streaks significantly reduce secondary saccade latency, enhancing visual processing speed and accuracy.
  • The EEG signal shows enhanced localization of post-saccadic targets, with effects arising within 50 ms after saccade offset.
  • This study used eye tracking and EEG to uncover the dynamics of visual processing during saccadic eye movements, particularly the role of motion streaks.
  • Results suggest that efficient gaze correction relies on visual dynamics, linking moving target trajectories to benefits in saccadic behavior.

Abstract

Eye movements routinely induce motion streaks as they shift visual projections across the retina at high speeds. To investigate the visual consequences of intra-saccadic motion streaks, we co-registered eye tracking and EEG while gaze-contingently shifting target objects during saccades, presenting either continuous, ‘streaky’ or apparent, step-like motion in four directions. We found significant reductions of secondary saccade latency, as well as improved decoding of the post-saccadic target location from the EEG signal when motion streaks were available. These signals arose as early as 50 ms after saccade offset and had a clear occipital topography. Using a physiologically plausible visual processing model, we provide evidence that the target’s motion trajectory is coded in orientation-selective channels and that speed of gaze correction was linked to the visual dynamics arising from the combination of saccadic and target motion, providing a parsimonious explanation of the behavioral benefits of intra-saccadic motion streaks.

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Cite This Study

Schweitzer et al. (2025) studied this question.

synapsesocial.com/papers/68dc1e3f8a7d58c25ebb2031https://doi.org/10.1371/journal.pcbi.1013544
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