Panoramic visual statistics shape retina-wide organization of receptive fields

Resource type
Authors/contributors
Title
Panoramic visual statistics shape retina-wide organization of receptive fields
Abstract
Abstract Statistics of natural scenes are not uniform—their structure varies dramatically from ground to sky. It remains unknown whether these nonuniformities are reflected in the large-scale organization of the early visual system and what benefits such adaptations would confer. Here, by relying on the efficient coding hypothesis, we predict that changes in the structure of receptive fields across visual space increase the efficiency of sensory coding. Using the mouse ( Mus musculus ) as a model species, we show that receptive fields of retinal ganglion cells change their shape along the dorsoventral retinal axis, with a marked surround asymmetry at the visual horizon, in agreement with our predictions. Our work demonstrates that, according to principles of efficient coding, the panoramic structure of natural scenes is exploited by the retina across space and cell types.
Publication
Nature Neuroscience
Volume
26
Issue
4
Pages
606-614
Date
04/2023
Journal Abbr
Nat Neurosci
Language
en
ISSN
1097-6256, 1546-1726
Accessed
8/7/23, 11:31 AM
Library Catalog
DOI.org (Crossref)
Citation
Gupta, D., Młynarski, W., Sumser, A., Symonova, O., Svatoň, J., & Joesch, M. (2023). Panoramic visual statistics shape retina-wide organization of receptive fields. Nature Neuroscience, 26(4), 606–614. https://doi.org/10.1038/s41593-023-01280-0
Cell Types
Species / Tissue
Subject area
Link to this record