Spatiotemporal effects of microsaccades on population activity in the visual cortex of monkeys during fixation

Elhanan Meirovithz1, Inbal Ayzenshtat, Uri Werner-Reiss

  • 1Gonda Multidisciplinary Brain Research Center, Bar-Ilan University, 52900 Ramat Gan, Israel.

Insights

Eye microsaccades (MSs) displace retinal images, causing variable neural modulation. This study reveals MSs induce stimulus-dependent responses and shifts in V1 visual maps, clarifying their complex effects on neural activity.

Area of Science:

  • Neuroscience
  • Visual Processing
  • Retinal Dynamics

Background:

  • Microsaccades (MSs) are small, involuntary eye movements during fixation.
  • MSs displace the retinal image, potentially modulating neural activity.
  • The precise effects of MSs on visual cortex activity remain unclear.

Purpose of the Study:

  • To investigate the spatiotemporal neural modulation induced by MSs in V1 and V2.
  • To examine how different visual stimuli influence MS-evoked neural dynamics.
  • To clarify the variability in MS effects on neuronal responses.

Main Methods:

  • Voltage-sensitive dye imaging in behaving monkeys.
  • Recording neural activity in V1 and V2 during visual fixation and stimulation.
  • Analysis of spatiotemporal patterns and synchronization of neural responses.

Main Results:

  • MSs evoked monophasic or biphasic neural responses, varying with stimulus size.
  • Neural responses were associated with distinct spatiotemporal synchronization patterns.
  • MSs caused shifts in V1 population responses relative to the retinotopic map.

Conclusions:

  • MSs disrupt visual stability in V1, contributing to response variability.
  • MS-induced neural effects exhibit diverse spatiotemporal dynamics.
  • Findings clarify the complex role of MSs in visual processing.

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