Literature DB >> 28698107

Dynamic graph metrics: Tutorial, toolbox, and tale.

Ann E Sizemore1, Danielle S Bassett2.   

Abstract

The central nervous system is composed of many individual units - from cells to areas - that are connected with one another in a complex pattern of functional interactions that supports perception, action, and cognition. One natural and parsimonious representation of such a system is a graph in which nodes (units) are connected by edges (interactions). While applicable across spatiotemporal scales, species, and cohorts, the traditional graph approach is unable to address the complexity of time-varying connectivity patterns that may be critically important for an understanding of emotional and cognitive state, task-switching, adaptation and development, or aging and disease progression. Here we survey a set of tools from applied mathematics that offer measures to characterize dynamic graphs. Along with this survey, we offer suggestions for visualization and a publicly-available MATLAB toolbox to facilitate the application of these metrics to existing or yet-to-be acquired neuroimaging data. We illustrate the toolbox by applying it to a previously published data set of time-varying functional graphs, but note that the tools can also be applied to time-varying structural graphs or to other sorts of relational data entirely. Our aim is to provide the neuroimaging community with a useful set of tools, and an intuition regarding how to use them, for addressing emerging questions that hinge on accurate and creative analyses of dynamic graphs.
Copyright © 2017 The Author(s). Published by Elsevier Inc. All rights reserved.

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Year:  2017        PMID: 28698107      PMCID: PMC5758445          DOI: 10.1016/j.neuroimage.2017.06.081

Source DB:  PubMed          Journal:  Neuroimage        ISSN: 1053-8119            Impact factor:   6.556


  117 in total

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  37 in total

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Review 3.  Modeling and interpreting mesoscale network dynamics.

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Journal:  Neuroimage       Date:  2017-06-20       Impact factor: 6.556

4.  Dynamic Reconfiguration, Fragmentation, and Integration of Whole-Brain Modular Structure across Depths of Unconsciousness.

Authors:  Dominic Standage; Corson N Areshenkoff; Joseph Y Nashed; R Matthew Hutchison; Melina Hutchison; Dietmar Heinke; Ravi S Menon; Stefan Everling; Jason P Gallivan
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5.  Dynamic functional connectivity in temporal lobe epilepsy: a graph theoretical and machine learning approach.

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Review 6.  On the nature and use of models in network neuroscience.

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7.  Digital phenotyping for psychiatry: Accommodating data and theory with network science methodologies.

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8.  Psychological resilience negatively correlates with resting-state brain network flexibility in young healthy adults: a dynamic functional magnetic resonance imaging study.

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9.  Increased dynamic flexibility in the medial temporal lobe network following an exercise intervention mediates generalization of prior learning.

Authors:  Neha Sinha; Chelsie N Berg; Michael A Yassa; Mark A Gluck
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10.  Extraction of Time-Varying Spatiotemporal Networks Using Parameter-Tuned Constrained IVA.

Authors:  Suchita Bhinge; Rami Mowakeaa; Vince D Calhoun; Tulay Adali
Journal:  IEEE Trans Med Imaging       Date:  2019-01-23       Impact factor: 10.048

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