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Two classes of functional connectivity in dynamical processes in networks

The relationship between network structure and dynamics is one of the most extensively investigated problems in the theory of complex systems of recent years. Understanding this relationship is of relevance to a range of disciplines—from neuroscience to geomorphology. A major strategy of investigati...

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Autores principales: Voutsa, Venetia, Battaglia, Demian, Bracken, Louise J., Brovelli, Andrea, Costescu, Julia, Díaz Muñoz, Mario, Fath, Brian D., Funk, Andrea, Guirro, Mel, Hein, Thomas, Kerschner, Christian, Kimmich, Christian, Lima, Vinicius, Messé, Arnaud, Parsons, Anthony J., Perez, John, Pöppl, Ronald, Prell, Christina, Recinos, Sonia, Shi, Yanhua, Tiwari, Shubham, Turnbull, Laura, Wainwright, John, Waxenecker, Harald, Hütt, Marc-Thorsten
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8526174/
https://www.ncbi.nlm.nih.gov/pubmed/34665977
http://dx.doi.org/10.1098/rsif.2021.0486
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author Voutsa, Venetia
Battaglia, Demian
Bracken, Louise J.
Brovelli, Andrea
Costescu, Julia
Díaz Muñoz, Mario
Fath, Brian D.
Funk, Andrea
Guirro, Mel
Hein, Thomas
Kerschner, Christian
Kimmich, Christian
Lima, Vinicius
Messé, Arnaud
Parsons, Anthony J.
Perez, John
Pöppl, Ronald
Prell, Christina
Recinos, Sonia
Shi, Yanhua
Tiwari, Shubham
Turnbull, Laura
Wainwright, John
Waxenecker, Harald
Hütt, Marc-Thorsten
author_facet Voutsa, Venetia
Battaglia, Demian
Bracken, Louise J.
Brovelli, Andrea
Costescu, Julia
Díaz Muñoz, Mario
Fath, Brian D.
Funk, Andrea
Guirro, Mel
Hein, Thomas
Kerschner, Christian
Kimmich, Christian
Lima, Vinicius
Messé, Arnaud
Parsons, Anthony J.
Perez, John
Pöppl, Ronald
Prell, Christina
Recinos, Sonia
Shi, Yanhua
Tiwari, Shubham
Turnbull, Laura
Wainwright, John
Waxenecker, Harald
Hütt, Marc-Thorsten
author_sort Voutsa, Venetia
collection PubMed
description The relationship between network structure and dynamics is one of the most extensively investigated problems in the theory of complex systems of recent years. Understanding this relationship is of relevance to a range of disciplines—from neuroscience to geomorphology. A major strategy of investigating this relationship is the quantitative comparison of a representation of network architecture (structural connectivity, SC) with a (network) representation of the dynamics (functional connectivity, FC). Here, we show that one can distinguish two classes of functional connectivity—one based on simultaneous activity (co-activity) of nodes, the other based on sequential activity of nodes. We delineate these two classes in different categories of dynamical processes—excitations, regular and chaotic oscillators—and provide examples for SC/FC correlations of both classes in each of these models. We expand the theoretical view of the SC/FC relationships, with conceptual instances of the SC and the two classes of FC for various application scenarios in geomorphology, ecology, systems biology, neuroscience and socio-ecological systems. Seeing the organisation of dynamical processes in a network either as governed by co-activity or by sequential activity allows us to bring some order in the myriad of observations relating structure and function of complex networks.
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spelling pubmed-85261742021-10-26 Two classes of functional connectivity in dynamical processes in networks Voutsa, Venetia Battaglia, Demian Bracken, Louise J. Brovelli, Andrea Costescu, Julia Díaz Muñoz, Mario Fath, Brian D. Funk, Andrea Guirro, Mel Hein, Thomas Kerschner, Christian Kimmich, Christian Lima, Vinicius Messé, Arnaud Parsons, Anthony J. Perez, John Pöppl, Ronald Prell, Christina Recinos, Sonia Shi, Yanhua Tiwari, Shubham Turnbull, Laura Wainwright, John Waxenecker, Harald Hütt, Marc-Thorsten J R Soc Interface Review Articles The relationship between network structure and dynamics is one of the most extensively investigated problems in the theory of complex systems of recent years. Understanding this relationship is of relevance to a range of disciplines—from neuroscience to geomorphology. A major strategy of investigating this relationship is the quantitative comparison of a representation of network architecture (structural connectivity, SC) with a (network) representation of the dynamics (functional connectivity, FC). Here, we show that one can distinguish two classes of functional connectivity—one based on simultaneous activity (co-activity) of nodes, the other based on sequential activity of nodes. We delineate these two classes in different categories of dynamical processes—excitations, regular and chaotic oscillators—and provide examples for SC/FC correlations of both classes in each of these models. We expand the theoretical view of the SC/FC relationships, with conceptual instances of the SC and the two classes of FC for various application scenarios in geomorphology, ecology, systems biology, neuroscience and socio-ecological systems. Seeing the organisation of dynamical processes in a network either as governed by co-activity or by sequential activity allows us to bring some order in the myriad of observations relating structure and function of complex networks. The Royal Society 2021-10-20 /pmc/articles/PMC8526174/ /pubmed/34665977 http://dx.doi.org/10.1098/rsif.2021.0486 Text en © 2021 The Authors. https://creativecommons.org/licenses/by/4.0/Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, provided the original author and source are credited.
spellingShingle Review Articles
Voutsa, Venetia
Battaglia, Demian
Bracken, Louise J.
Brovelli, Andrea
Costescu, Julia
Díaz Muñoz, Mario
Fath, Brian D.
Funk, Andrea
Guirro, Mel
Hein, Thomas
Kerschner, Christian
Kimmich, Christian
Lima, Vinicius
Messé, Arnaud
Parsons, Anthony J.
Perez, John
Pöppl, Ronald
Prell, Christina
Recinos, Sonia
Shi, Yanhua
Tiwari, Shubham
Turnbull, Laura
Wainwright, John
Waxenecker, Harald
Hütt, Marc-Thorsten
Two classes of functional connectivity in dynamical processes in networks
title Two classes of functional connectivity in dynamical processes in networks
title_full Two classes of functional connectivity in dynamical processes in networks
title_fullStr Two classes of functional connectivity in dynamical processes in networks
title_full_unstemmed Two classes of functional connectivity in dynamical processes in networks
title_short Two classes of functional connectivity in dynamical processes in networks
title_sort two classes of functional connectivity in dynamical processes in networks
topic Review Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8526174/
https://www.ncbi.nlm.nih.gov/pubmed/34665977
http://dx.doi.org/10.1098/rsif.2021.0486
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