Intrinsic functional architecture of the human speech processing network
- PMID: 32428761
- DOI: 10.1016/j.cortex.2020.03.013
Intrinsic functional architecture of the human speech processing network
Abstract
Speech engages distributed temporo-fronto-parietal brain regions, however a comprehensive understanding of its intrinsic functional network architecture is lacking. Here we investigate the human speech processing network using the largest sample to date, high temporal resolution resting-state fMRI data, network stability analysis, and theoretically informed models. Network consensus analysis revealed three stable functional modules encompassing: (1) superior temporal plane (STP) and Area Spt, (2) superior temporal sulcus (STS) + ventral frontoparietal cortex, and (3) dorsal frontoparietal cortex. The STS + ventral frontoparietal cortex module showed the highest participation coefficient, and a hub-like organization linking STP with frontoparietal cortical nodes. Node-wise analysis revealed key connectivity features underlying this modular architecture, including a leftward asymmetric connectivity profile, and differential connectivity of STS and STP, with frontoparietal cortex. Our findings, replicated across cohorts, reveal a tripartite functional network architecture supporting speech processing and provide a novel template for future studies.
Keywords: Angular gyrus; Auditory cortex; Inferior frontal gyrus; Speech; Superior temporal sulcus.
Copyright © 2020. Published by Elsevier Ltd.
Conflict of interest statement
Declaration of Competing Interest The authors declare no competing financial interest.
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