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Cognitive Effort and Schizophrenia Modulate Large-Scale Functional Brain Connectivity. | LitMetric

Cognitive Effort and Schizophrenia Modulate Large-Scale Functional Brain Connectivity.

Schizophr Bull

Norwegian Centre for Mental Disorders Research, KG Jebsen Centre for Psychosis Research, Division of Mental Health and Addiction, Oslo University Hospital & Institute of Clinical Medicine, University of Oslo, Oslo, Norway; Department of Psychology, University of Oslo, Oslo, Norway.

Published: November 2015

AI Article Synopsis

  • Schizophrenia (SZ) involves cognitive dysfunction, disorganized thoughts, hallucinations, and delusions, reflecting issues in brain connectivity.
  • Recent research examined how different cognitive loads affect brain network interactions in SZ patients compared to healthy individuals using advanced imaging techniques.
  • Key findings revealed that cognitive load significantly influenced brain connectivity, but the reduced functional connectivity observed in SZ, particularly involving the insular network, was consistent across varying cognitive efforts, suggesting a general dysfunction in brain networks associated with the disorder.

Article Abstract

Schizophrenia (SZ) is characterized by cognitive dysfunction and disorganized thought, in addition to hallucinations and delusions, and is regarded a disorder of brain connectivity. Recent efforts have been made to characterize the underlying brain network organization and interactions. However, to which degree connectivity alterations in SZ vary across different levels of cognitive effort is unknown. Utilizing independent component analysis (ICA) and methods for delineating functional connectivity measures from functional magnetic resonance imaging (fMRI) data, we investigated the effects of cognitive effort, SZ and their interactions on between-network functional connectivity during 2 levels of cognitive load in a large and well-characterized sample of SZ patients (n = 99) and healthy individuals (n = 143). Cognitive load influenced a majority of the functional connections, including but not limited to fronto-parietal and default-mode networks, reflecting both decreases and increases in between-network synchronization. Reduced connectivity in SZ was identified in 2 large-scale functional connections across load conditions, with a particular involvement of an insular network. The results document an important role of interactions between insular, default-mode, and visual networks in SZ pathophysiology. The interplay between brain networks was robustly modulated by cognitive effort, but the reduced functional connectivity in SZ, primarily related to an insular network, was independent of cognitive load, indicating a relatively general brain network-level dysfunction.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4601701PMC
http://dx.doi.org/10.1093/schbul/sbv013DOI Listing

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