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Research ArticleResearch Article: New Research, Sensory and Motor Systems

Topographically Localized Modulation of Tectal Cell Spatial Tuning by Complex Natural Scenes

Thomas T. J. Sainsbury, Giovanni Diana and Martin P. Meyer
eNeuro 21 December 2022, 10 (1) ENEURO.0223-22.2022; https://doi.org/10.1523/ENEURO.0223-22.2022
Thomas T. J. Sainsbury
1The Centre for Developmental Neurobiology and MRC Center for Neurodevelopmental Disorders, King’s College London, London, United Kingdom, SE1 1UL
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Giovanni Diana
1The Centre for Developmental Neurobiology and MRC Center for Neurodevelopmental Disorders, King’s College London, London, United Kingdom, SE1 1UL
2Insitut Pasteur, University of Paris, Paris, France, 75015
3Sampled Analytics, Arcueil, France, 94110
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Martin P. Meyer
1The Centre for Developmental Neurobiology and MRC Center for Neurodevelopmental Disorders, King’s College London, London, United Kingdom, SE1 1UL
4Lundbeck Foundation, Copenhagen, Denmark, 2100
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Abstract

The tuning properties of neurons in the visual system can be contextually modulated by the statistics of the area surrounding their receptive field (RF), particularly when the surround contains natural features. However, stimuli presented in specific egocentric locations may have greater behavioral relevance, raising the possibility that the extent of contextual modulation may vary with position in visual space. To explore this possibility, we utilized the small size and optical transparency of the larval zebrafish to describe the form and spatial arrangement of contextually modulated cells throughout an entire tectal hemisphere. We found that the spatial tuning of tectal neurons to a prey-like stimulus sharpens when the stimulus is presented against a background with the statistics of complex natural scenes, relative to a featureless background. These neurons are confined to a spatially restricted region of the tectum and have receptive fields centered within a region of visual space in which the presence of prey preferentially triggers hunting behavior. Our results suggest that contextual modulation of tectal neurons by complex backgrounds may facilitate prey-localization in cluttered visual environments.

  • calcium imaging
  • contextual modulation
  • developmental biology
  • natural scenes
  • vision
  • zebrafish

Footnotes

  • The authors declare no competing financial interests.

  • This research was funded by a welcome trust grant held by M.P.M.

This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license, which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.

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eneuro: 10 (1)
eNeuro
Vol. 10, Issue 1
January 2023
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Topographically Localized Modulation of Tectal Cell Spatial Tuning by Complex Natural Scenes
Thomas T. J. Sainsbury, Giovanni Diana, Martin P. Meyer
eNeuro 21 December 2022, 10 (1) ENEURO.0223-22.2022; DOI: 10.1523/ENEURO.0223-22.2022

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Topographically Localized Modulation of Tectal Cell Spatial Tuning by Complex Natural Scenes
Thomas T. J. Sainsbury, Giovanni Diana, Martin P. Meyer
eNeuro 21 December 2022, 10 (1) ENEURO.0223-22.2022; DOI: 10.1523/ENEURO.0223-22.2022
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Keywords

  • calcium imaging
  • contextual modulation
  • developmental biology
  • natural scenes
  • vision
  • zebrafish

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