Literature DB >> 34467399

Extended Frontal Networks for Visual and Auditory Working Memory.

Abigail L Noyce1,2, Ray W Lefco3, James A Brissenden2,4, Sean M Tobyne3, Barbara G Shinn-Cunningham1, David C Somers2.   

Abstract

Working memory (WM) supports the persistent representation of transient sensory information. Visual and auditory stimuli place different demands on WM and recruit different brain networks. Separate auditory- and visual-biased WM networks extend into the frontal lobes, but several challenges confront attempts to parcellate human frontal cortex, including fine-grained organization and between-subject variability. Here, we use differential intrinsic functional connectivity from 2 visual-biased and 2 auditory-biased frontal structures to identify additional candidate sensory-biased regions in frontal cortex. We then examine direct contrasts of task functional magnetic resonance imaging during visual versus auditory 2-back WM to validate those candidate regions. Three visual-biased and 5 auditory-biased regions are robustly activated bilaterally in the frontal lobes of individual subjects (N = 14, 7 women). These regions exhibit a sensory preference during passive exposure to task stimuli, and that preference is stronger during WM. Hierarchical clustering analysis of intrinsic connectivity among novel and previously identified bilateral sensory-biased regions confirms that they functionally segregate into visual and auditory networks, even though the networks are anatomically interdigitated. We also observe that the frontotemporal auditory WM network is highly selective and exhibits strong functional connectivity to structures serving non-WM functions, while the frontoparietal visual WM network hierarchically merges into the multiple-demand cognitive system.
© The Author(s) 2021. Published by Oxford University Press. All rights reserved. For permissions, please e-mail: journals.permission@oup.com.

Entities:  

Keywords:  attention; fMRI; frontal cortex; functional connectivity; multisensory

Mesh:

Year:  2022        PMID: 34467399      PMCID: PMC8841551          DOI: 10.1093/cercor/bhab249

Source DB:  PubMed          Journal:  Cereb Cortex        ISSN: 1047-3211            Impact factor:   4.861


  60 in total

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10.  Topographic Cortico-cerebellar Networks Revealed by Visual Attention and Working Memory.

Authors:  James A Brissenden; Sean M Tobyne; David E Osher; Emily J Levin; Mark A Halko; David C Somers
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