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The Emergence of Tuning to Global Shape Properties of Radial Frequency Patterns in the Ventral Visual Pathway

Radial frequency (RF) patterns, created by sinusoidal modulations of a circle's radius, are processed globally when RF is low. These closed shapes therefore offer a useful way to interrogate the human visual system for global processing of curvature. RF patterns elicit greater responses than th...

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Autores principales: Lawrence, Samuel J. D., Zamboni, Elisa, Vernon, Richard J. W., Gouws, André D., Wade, Alex R., Morland, Antony B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Society for Neuroscience 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10359028/
https://www.ncbi.nlm.nih.gov/pubmed/37369590
http://dx.doi.org/10.1523/JNEUROSCI.2237-22.2023
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author Lawrence, Samuel J. D.
Zamboni, Elisa
Vernon, Richard J. W.
Gouws, André D.
Wade, Alex R.
Morland, Antony B.
author_facet Lawrence, Samuel J. D.
Zamboni, Elisa
Vernon, Richard J. W.
Gouws, André D.
Wade, Alex R.
Morland, Antony B.
author_sort Lawrence, Samuel J. D.
collection PubMed
description Radial frequency (RF) patterns, created by sinusoidal modulations of a circle's radius, are processed globally when RF is low. These closed shapes therefore offer a useful way to interrogate the human visual system for global processing of curvature. RF patterns elicit greater responses than those to radial gratings in V4 and more anterior face-selective regions of the ventral visual pathway. This is largely consistent with work on nonhuman primates showing curvature processing emerges in V4, but is evident also higher up the ventral visual stream. Rather than contrasting RF patterns with other stimuli, we presented them at varied frequencies in a regimen that allowed tunings to RF to be derived from 8 human participants (3 female). We found tuning to low RF in lateral occipital areas and to some extent in V4. In a control experiment, we added a high-frequency ripple to the stimuli disrupting the local contour. Low-frequency tuning to these stimuli remained in the ventral visual stream, underscoring its role in global processing of shape curvature. We then used representational similarity analysis to show that, in lateral occipital areas, the neural representation was related to stimulus similarity, when it was computed with a model that captured how stimuli are perceived. We therefore show that global processing of shape curvature emerges in the ventral visual stream as early as V4, but is found more strongly in lateral occipital regions, which exhibit responses and representations that relate well to perception. SIGNIFICANCE STATEMENT We show that tuning to low radial frequencies, known to engage global shape processing mechanisms, was localized to lateral occipital regions. When low-level stimulus properties were accounted for such tuning emerged in V4 and LO2 in addition to the object-selective region LO. We also documented representations of global shape properties in lateral occipital regions, and these representations were predicted well by a proxy of the perceptual difference between the stimuli.
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spelling pubmed-103590282023-07-21 The Emergence of Tuning to Global Shape Properties of Radial Frequency Patterns in the Ventral Visual Pathway Lawrence, Samuel J. D. Zamboni, Elisa Vernon, Richard J. W. Gouws, André D. Wade, Alex R. Morland, Antony B. J Neurosci Research Articles Radial frequency (RF) patterns, created by sinusoidal modulations of a circle's radius, are processed globally when RF is low. These closed shapes therefore offer a useful way to interrogate the human visual system for global processing of curvature. RF patterns elicit greater responses than those to radial gratings in V4 and more anterior face-selective regions of the ventral visual pathway. This is largely consistent with work on nonhuman primates showing curvature processing emerges in V4, but is evident also higher up the ventral visual stream. Rather than contrasting RF patterns with other stimuli, we presented them at varied frequencies in a regimen that allowed tunings to RF to be derived from 8 human participants (3 female). We found tuning to low RF in lateral occipital areas and to some extent in V4. In a control experiment, we added a high-frequency ripple to the stimuli disrupting the local contour. Low-frequency tuning to these stimuli remained in the ventral visual stream, underscoring its role in global processing of shape curvature. We then used representational similarity analysis to show that, in lateral occipital areas, the neural representation was related to stimulus similarity, when it was computed with a model that captured how stimuli are perceived. We therefore show that global processing of shape curvature emerges in the ventral visual stream as early as V4, but is found more strongly in lateral occipital regions, which exhibit responses and representations that relate well to perception. SIGNIFICANCE STATEMENT We show that tuning to low radial frequencies, known to engage global shape processing mechanisms, was localized to lateral occipital regions. When low-level stimulus properties were accounted for such tuning emerged in V4 and LO2 in addition to the object-selective region LO. We also documented representations of global shape properties in lateral occipital regions, and these representations were predicted well by a proxy of the perceptual difference between the stimuli. Society for Neuroscience 2023-07-19 /pmc/articles/PMC10359028/ /pubmed/37369590 http://dx.doi.org/10.1523/JNEUROSCI.2237-22.2023 Text en Copyright © 2023 Lawrence et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Articles
Lawrence, Samuel J. D.
Zamboni, Elisa
Vernon, Richard J. W.
Gouws, André D.
Wade, Alex R.
Morland, Antony B.
The Emergence of Tuning to Global Shape Properties of Radial Frequency Patterns in the Ventral Visual Pathway
title The Emergence of Tuning to Global Shape Properties of Radial Frequency Patterns in the Ventral Visual Pathway
title_full The Emergence of Tuning to Global Shape Properties of Radial Frequency Patterns in the Ventral Visual Pathway
title_fullStr The Emergence of Tuning to Global Shape Properties of Radial Frequency Patterns in the Ventral Visual Pathway
title_full_unstemmed The Emergence of Tuning to Global Shape Properties of Radial Frequency Patterns in the Ventral Visual Pathway
title_short The Emergence of Tuning to Global Shape Properties of Radial Frequency Patterns in the Ventral Visual Pathway
title_sort emergence of tuning to global shape properties of radial frequency patterns in the ventral visual pathway
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10359028/
https://www.ncbi.nlm.nih.gov/pubmed/37369590
http://dx.doi.org/10.1523/JNEUROSCI.2237-22.2023
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