Literature DB >> 28052450

Correspondence between evoked and intrinsic functional brain network configurations.

Taylor Bolt1, Jason S Nomi1, Mikail Rubinov2,3, Lucina Q Uddin1,4.   

Abstract

Much of the literature exploring differences between intrinsic and task-evoked brain architectures has examined changes in functional connectivity patterns between specific brain regions. While informative, this approach overlooks important overall functional changes in hub organization and network topology that may provide insights about differences in integration between intrinsic and task-evoked states. Examination of changes in overall network organization, such as a change in the concentration of hub nodes or a quantitative change in network organization, is important for understanding the underlying processes that differ between intrinsic and task-evoked brain architectures. The present study used graph-theoretical techniques applied to publicly available neuroimaging data collected from a large sample of individuals (N = 202), and a within-subject design where resting-state and several task scans were collected from each participant as part of the Human Connectome Project. We demonstrate that differences between intrinsic and task-evoked brain networks are characterized by a task-general shift in high-connectivity hubs from primarily sensorimotor/auditory processing areas during the intrinsic state to executive control/salience network areas during task performance. In addition, we demonstrate that differences between intrinsic and task-evoked architectures are associated with changes in overall network organization, such as increases in network clustering, global efficiency and integration between modules. These findings offer a new perspective on the principles guiding functional brain organization by identifying unique and divergent properties of overall network organization between the resting-state and task performance. Hum Brain Mapp 38:1992-2007, 2017.
© 2017 Wiley Periodicals, Inc. © 2017 Wiley Periodicals, Inc.

Entities:  

Keywords:  Human Connectome Project; graph theory; intrinsic connectivity; resting state fMRI; salience network

Mesh:

Substances:

Year:  2017        PMID: 28052450      PMCID: PMC6866760          DOI: 10.1002/hbm.23500

Source DB:  PubMed          Journal:  Hum Brain Mapp        ISSN: 1065-9471            Impact factor:   5.038


  77 in total

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2.  Dissociable intrinsic connectivity networks for salience processing and executive control.

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3.  Identifying the brain's most globally connected regions.

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4.  Collective dynamics of 'small-world' networks.

Authors:  D J Watts; S H Strogatz
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Review 5.  Salience processing and insular cortical function and dysfunction.

Authors:  Lucina Q Uddin
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6.  Overlapping communities reveal rich structure in large-scale brain networks during rest and task conditions.

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7.  Optimization of experimental design in fMRI: a general framework using a genetic algorithm.

Authors:  Tor D Wager; Thomas E Nichols
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8.  Mapping the functional connectivity of anterior cingulate cortex.

Authors:  Daniel S Margulies; A M Clare Kelly; Lucina Q Uddin; Bharat B Biswal; F Xavier Castellanos; Michael P Milham
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9.  Optimization of rs-fMRI Pre-processing for Enhanced Signal-Noise Separation, Test-Retest Reliability, and Group Discrimination.

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10.  Graph-Theoretical Study of Functional Changes Associated with the Iowa Gambling Task.

Authors:  Taylor Bolt; Paul J Laurienti; Robert Lyday; Ashley Morgan; Dale Dagenbach
Journal:  Front Hum Neurosci       Date:  2016-06-27       Impact factor: 3.169

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  32 in total

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2.  Dynamic brain network configurations during rest and an attention task with frequent occurrence of mind wandering.

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3.  Disrupted topology of the resting state structural connectome in middle-aged APOE ε4 carriers.

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4.  Brain network profiling defines functionally specialized cortical networks.

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5.  Quantifying Differences Between Passive and Task-Evoked Intrinsic Functional Connectivity in a Large-Scale Brain Simulation.

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Review 6.  Towards a Universal Taxonomy of Macro-scale Functional Human Brain Networks.

Authors:  Lucina Q Uddin; B T Thomas Yeo; R Nathan Spreng
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Review 7.  Resting-State Functional Connectivity in the Human Connectome Project: Current Status and Relevance to Understanding Psychopathology.

Authors:  Deanna M Barch
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8.  Core networks and their reconfiguration patterns across cognitive loads.

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9.  Inflexible Functional Connectivity of the Dorsal Anterior Cingulate Cortex in Adolescent Major Depressive Disorder.

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10.  Future Directions for Examination of Brain Networks in Neurodevelopmental Disorders.

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