Literature DB >> 31196941

Dynamic Brain Interactions during Picture Naming.

Aram Giahi Saravani1, Kiefer J Forseth2, Nitin Tandon3,4,5, Xaq Pitkow6,5,7.   

Abstract

Brain computations involve multiple processes by which sensory information is encoded and transformed to drive behavior. These computations are thought to be mediated by dynamic interactions between populations of neurons. Here, we demonstrate that human brains exhibit a reliable sequence of neural interactions during speech production. We use an autoregressive Hidden Markov Model (ARHMM) to identify dynamical network states exhibited by electrocorticographic signals recorded from human neurosurgical patients. Our method resolves dynamic latent network states on a trial-by-trial basis. We characterize individual network states according to the patterns of directional information flow between cortical regions of interest. These network states occur consistently and in a specific, interpretable sequence across trials and subjects: the data support the hypothesis of a fixed-length visual processing state, followed by a variable-length language state, and then by a terminal articulation state. This empirical evidence validates classical psycholinguistic theories that have posited such intermediate states during speaking. It further reveals these state dynamics are not localized to one brain area or one sequence of areas, but are instead a network phenomenon.
Copyright © 2019 Giahi-Saravani et al.

Entities:  

Keywords:  Hidden Markov Model; dynamics; electrocorticography; language; network

Mesh:

Year:  2019        PMID: 31196941      PMCID: PMC6624411          DOI: 10.1523/ENEURO.0472-18.2019

Source DB:  PubMed          Journal:  eNeuro        ISSN: 2373-2822


  42 in total

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9.  Variability of the relationship between electrophysiology and BOLD-fMRI across cortical regions in humans.

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