bioRxiv · 10.1101/612358
Retinal and callosal activity-dependent chandelier cell elimination shapes binocularity in primary visual cortex
Abstract
In mammalian primary visual cortex (V1), integration of the left and right visual scene into a binocular percept derives from convergent ipsi- and contralateral geniculocortical inputs and trans-callosal projections between the two hemispheres. However, the underlying developmental mechanisms remain incompletely understood. Using genetic methods in mice we found that during the days before eye-opening, retinal and callosal activity drives massive apoptosis of GABAergic chandelier cells (ChCs) in the binocular region of V1. Blockade of ChC elimination resulted in a contralateral-dominated V1 and deficient binocular vision. As activity patterns within and between retinas prior to vision convey organization of the visual field, their regulation of ChC density through the trans-callosal pathway may prime a nascent binocular territory for subsequent experience-driven tuning during the post-vision critical period.\n\nOne Sentence SummaryPrior to eye opening the developing retina primes the visual cortex for binocular vision by adjusting the density of a cortical inhibitory neuron type.
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Wang, B.-S., Bernardez Sarria, M. S., He, M., Crair, M. C., Huang, Z. J.. 2019-04-18. Retinal and callosal activity-dependent chandelier cell elimination shapes binocularity in primary visual cortex. https://doi.org/10.1101/612358
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