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Visual Cortex Gains Independence from Peripheral Drive before Eye Opening.

Alexandra Gribizis | Xinxin Ge | Tanya L Daigle | James B Ackman | Hongkui Zeng | Daeyeol Lee | Michael C Crair
Neuron | 2019

Visual spatial perception in the mammalian brain occurs through two parallel pathways: one reaches the primary visual cortex (V1) through the thalamus and another the superior colliculus (SC) via direct projections from the retina. The origin, development, and relative function of these two evolutionarily distinct pathways remain obscure. We examined the early functional development of both pathways by simultaneously imaging pre- and post-synaptic spontaneous neuronal activity. We observed that the quality of retinal activity transfer to the thalamus and superior colliculus does not change across the first two postnatal weeks. However, beginning in the second postnatal week, retinal activity does not drive V1 as strongly as earlier wave activity, suggesting that intrinsic cortical activity competes with signals from the sensory periphery as the cortex matures. Together, these findings bring new insight into the function of the SC and V1 and the role of peripheral activity in driving both circuits across development.

Pubmed ID: 31561919

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Associated grants

  • Agency: NEI NIH HHS, United States
    Id: P30 EY026878
  • Agency: NEI NIH HHS, United States
    Id: P30 EY000785
  • Agency: NEI NIH HHS, United States
    Id: R01 EY023105
  • Agency: NEI NIH HHS, United States
    Id: R01 EY015788
  • Agency: NEI NIH HHS, United States
    Id: F31 EY025968
  • Agency: NIDA NIH HHS, United States
    Id: R01 DA028298

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