Ultra-high field neuroimaging reveals fine-scale processing for 3D perception

Adrian K T Ng, Ke Jia, Nuno R Goncalves, Elisa Zamboni, Valentin Kemper, Rainer Goebel, Andrew E Welchman, Zoe Kourtzi*

*Corresponding author for this work

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Abstract

Binocular disparity provides critical information about three-dimensional (3D) structures to support perception and action. In the past decade significant progress has been made in uncovering human brain areas engaged in the processing of binocular disparity signals. Yet, the fine-scale brain processing underlying 3D perception remains unknown. Here, we use ultrahigh-field (7T) functional imaging at submillimeter resolution to examine fine-scale BOLD fMRI signals involved in 3D perception. In particular, we sought to interrogate the local circuitry involved in disparity processing by sampling fMRI responses at different positions relative to the cortical surface (i.e., across cortical depths corresponding to layers). We tested for representations related to 3D perception by presenting participants (male and female, N = 8) with stimuli that enable stable stereoscopic perception [i.e., correlated random dot stereograms (RDS)] versus those that do not (i.e., anticorrelated RDS). Using multivoxel pattern analysis (MVPA), we demonstrate cortical depth-specific representations in areas V3A and V7 as indicated by stronger pattern responses for correlated than for anticorrelated stimuli in upper rather than deeper layers. Examining informational connectivity, we find higher feedforward layer-to-layer connectivity for correlated than anti correlated stimuli between V3A and V7. Further, we observe disparity-specific feedback from V3A to V1 and from V7 to V3A. Our findings provide evidence for the role of V3A as a key nexus for disparity processing, which is implicated in feed forward and feedback signals related to the perceptual estimation of 3D structures.

Original languageEnglish
Pages (from-to)8362-8374
Number of pages13
JournalJournal of Neuroscience
Volume41
Issue number40
Early online date19 Aug 2021
DOIs
Publication statusPublished - 6 Oct 2021

Keywords

  • 7 TESLA
  • ANALYSIS STRATEGIES
  • BINOCULAR DISPARITY
  • CORTICAL DEPTH
  • FMRI
  • GE BOLD
  • LAMINAR DIFFERENCES
  • RESPONSES
  • RETINOTOPIC ORGANIZATION
  • VISUAL-CORTEX
  • binocular disparity
  • depth perception
  • functional connectivity
  • ultra-high-field fMRI
  • visual cortex

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