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Memory-guided microsaccades

Author

Listed:
  • Konstantin F. Willeke

    (Tuebingen University
    Tuebingen University
    Tuebingen University)

  • Xiaoguang Tian

    (Tuebingen University
    Tuebingen University
    Tuebingen University)

  • Antimo Buonocore

    (Tuebingen University
    Tuebingen University)

  • Joachim Bellet

    (Tuebingen University
    Tuebingen University
    Tuebingen University)

  • Araceli Ramirez-Cardenas

    (Tuebingen University
    Tuebingen University)

  • Ziad M. Hafed

    (Tuebingen University
    Tuebingen University)

Abstract

Despite strong evidence to the contrary in the literature, microsaccades are overwhelmingly described as involuntary eye movements. Here we show in both human subjects and monkeys that individual microsaccades of any direction can easily be triggered: (1) on demand, based on an arbitrary instruction, (2) without any special training, (3) without visual guidance by a stimulus, and (4) in a spatially and temporally accurate manner. Subjects voluntarily generated instructed “memory-guided” microsaccades readily, and similarly to how they made normal visually-guided ones. In two monkeys, we also observed midbrain superior colliculus neurons that exhibit movement-related activity bursts exclusively for memory-guided microsaccades, but not for similarly-sized visually-guided movements. Our results demonstrate behavioral and neural evidence for voluntary control over individual microsaccades, supporting recently discovered functional contributions of individual microsaccade generation to visual performance alterations and covert visual selection, as well as observations that microsaccades optimize eye position during high acuity visually-guided behavior.

Suggested Citation

  • Konstantin F. Willeke & Xiaoguang Tian & Antimo Buonocore & Joachim Bellet & Araceli Ramirez-Cardenas & Ziad M. Hafed, 2019. "Memory-guided microsaccades," Nature Communications, Nature, vol. 10(1), pages 1-14, December.
  • Handle: RePEc:nat:natcom:v:10:y:2019:i:1:d:10.1038_s41467-019-11711-x
    DOI: 10.1038/s41467-019-11711-x
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