4.7 Article

Stimulating both eyes with matching stimuli enhances V1 responses

Journal

ISCIENCE
Volume 25, Issue 5, Pages -

Publisher

CELL PRESS
DOI: 10.1016/j.isci.2022.104182

Keywords

-

Funding

  1. NEI [P30EY008126, R01EY027402, T32EY007135, T32EY007125, F31EY031293]
  2. Office of the Director [S10OD021771]

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This study investigated how the primary visual cortex (V1) responds to concordant binocular stimulation. The results revealed that binocular stimuli evoked stronger V1 activity compared to monocular stimuli. This binocular facilitation was most proportional to the stimulus contrast during the initial transient response, but additional contrast-mediated dynamics emerged as V1 responses evolved.
Neurons in the primary visual cortex (V1) of primates play a key role in combining monocular inputs to form a binocular response. Although much has been gleaned from studying how V1 responds to discrepant (dichoptic) images, equally important is to understand how V1 responds to concordant (dioptic) images in the two eyes. Here, we investigated the extent to which concordant, balanced, zerodisparity binocular stimulation modifies V1 responses to varying stimulus contrast using intracranial multielectrode arrays. On average, binocular stimuli evoked stronger V1 activity than their monocular counterparts. This binocular facilitation scaled most proportionately with contrast during the initial transient. As V1 responses evolved, additional contrast-mediated dynamics emerged. Specifically, responses exhibited longer maintenance of facilitation for lower contrast and binocular suppression at high contrast. These results suggest that V1 processes concordant stimulation of both eyes in at least two sequential steps: initial response enhancement followed by contrast-dependent control of excitation.

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