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Visual Deprivation during Mouse Critical Period Reorganizes Network-Level Functional Connectivity.

Authors :
Siyu Chen
Rahn, Rachel M.
Bice, Annie R.
Bice, Seana H.
Padawer-Curry, Jonah A.
Hengen, Keith B.
Dougherty, Joseph D.
Culver, Joseph P.
Source :
Journal of Neuroscience. 5/8/2024, Vol. 44 Issue 19, p1-20. 20p.
Publication Year :
2024

Abstract

A classic example of experience-dependent plasticity is ocular dominance (OD) shift, in which the responsiveness of neurons in the visual cortex is profoundly altered following monocular deprivation (MD). It has been postulated that OD shifts also modify global neural networks, but such effects have never been demonstrated. Here, we use wide-field fluorescence optical imaging (WFOI) to characterize calcium-based resting-state functional connectivity during acute (3 d) MD in female and male mice with genetically encoded calcium indicators (Thy1-GCaMP6f). We first establish the fundamental performance of WFOI by computing signal to noise properties throughout our data processing pipeline. Following MD, we found that Δ band (0.4-4 Hz) GCaMP6 activity in the deprived visual cortex decreased, suggesting that excitatory activity in this region was reduced by MD. In addition, interhemispheric visual homotopic functional connectivity decreased following MD, which was accompanied by a reduction in parietal and motor homotopic connectivity. Finally, we observed enhanced internetwork connectivity between the visual and parietal cortex that peaked 2 d after MD. Together, these findings support the hypothesis that early MD induces dynamic reorganization of disparate functional networks including the association cortices. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02706474
Volume :
44
Issue :
19
Database :
Academic Search Index
Journal :
Journal of Neuroscience
Publication Type :
Academic Journal
Accession number :
177206609
Full Text :
https://doi.org/10.1523/JNEUROSCI.1019-23.2024