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Spatiotemporal complexity patterns of resting‐state bioelectrical activity explain fluid intelligence: Sex matters

Neural complexity is thought to be associated with efficient information processing but the exact nature of this relation remains unclear. Here, the relationship of fluid intelligence (gf) with the resting‐state EEG (rsEEG) complexity over different timescales and different electrodes was investigat...

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Autores principales: Dreszer, Joanna, Grochowski, Marek, Lewandowska, Monika, Nikadon, Jan, Gorgol, Joanna, Bałaj, Bibianna, Finc, Karolina, Duch, Włodzisław, Kałamała, Patrycja, Chuderski, Adam, Piotrowski, Tomasz
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7643359/
https://www.ncbi.nlm.nih.gov/pubmed/32808732
http://dx.doi.org/10.1002/hbm.25162
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author Dreszer, Joanna
Grochowski, Marek
Lewandowska, Monika
Nikadon, Jan
Gorgol, Joanna
Bałaj, Bibianna
Finc, Karolina
Duch, Włodzisław
Kałamała, Patrycja
Chuderski, Adam
Piotrowski, Tomasz
author_facet Dreszer, Joanna
Grochowski, Marek
Lewandowska, Monika
Nikadon, Jan
Gorgol, Joanna
Bałaj, Bibianna
Finc, Karolina
Duch, Włodzisław
Kałamała, Patrycja
Chuderski, Adam
Piotrowski, Tomasz
author_sort Dreszer, Joanna
collection PubMed
description Neural complexity is thought to be associated with efficient information processing but the exact nature of this relation remains unclear. Here, the relationship of fluid intelligence (gf) with the resting‐state EEG (rsEEG) complexity over different timescales and different electrodes was investigated. A 6‐min rsEEG blocks of eyes open were analyzed. The results of 119 subjects (57 men, mean age = 22.85 ± 2.84 years) were examined using multivariate multiscale sample entropy (mMSE) that quantifies changes in information richness of rsEEG in multiple data channels at fine and coarse timescales. gf factor was extracted from six intelligence tests. Partial least square regression analysis revealed that mainly predictors of the rsEEG complexity at coarse timescales in the frontoparietal network (FPN) and the temporo‐parietal complexities at fine timescales were relevant to higher gf. Sex differently affected the relationship between fluid intelligence and EEG complexity at rest. In men, gf was mainly positively related to the complexity at coarse timescales in the FPN. Furthermore, at fine and coarse timescales positive relations in the parietal region were revealed. In women, positive relations with gf were mostly observed for the overall and the coarse complexity in the FPN, whereas negative associations with gf were found for the complexity at fine timescales in the parietal and centro‐temporal region. These outcomes indicate that two separate time pathways (corresponding to fine and coarse timescales) used to characterize rsEEG complexity (expressed by mMSE features) are beneficial for effective information processing.
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spelling pubmed-76433592020-11-13 Spatiotemporal complexity patterns of resting‐state bioelectrical activity explain fluid intelligence: Sex matters Dreszer, Joanna Grochowski, Marek Lewandowska, Monika Nikadon, Jan Gorgol, Joanna Bałaj, Bibianna Finc, Karolina Duch, Włodzisław Kałamała, Patrycja Chuderski, Adam Piotrowski, Tomasz Hum Brain Mapp Research Articles Neural complexity is thought to be associated with efficient information processing but the exact nature of this relation remains unclear. Here, the relationship of fluid intelligence (gf) with the resting‐state EEG (rsEEG) complexity over different timescales and different electrodes was investigated. A 6‐min rsEEG blocks of eyes open were analyzed. The results of 119 subjects (57 men, mean age = 22.85 ± 2.84 years) were examined using multivariate multiscale sample entropy (mMSE) that quantifies changes in information richness of rsEEG in multiple data channels at fine and coarse timescales. gf factor was extracted from six intelligence tests. Partial least square regression analysis revealed that mainly predictors of the rsEEG complexity at coarse timescales in the frontoparietal network (FPN) and the temporo‐parietal complexities at fine timescales were relevant to higher gf. Sex differently affected the relationship between fluid intelligence and EEG complexity at rest. In men, gf was mainly positively related to the complexity at coarse timescales in the FPN. Furthermore, at fine and coarse timescales positive relations in the parietal region were revealed. In women, positive relations with gf were mostly observed for the overall and the coarse complexity in the FPN, whereas negative associations with gf were found for the complexity at fine timescales in the parietal and centro‐temporal region. These outcomes indicate that two separate time pathways (corresponding to fine and coarse timescales) used to characterize rsEEG complexity (expressed by mMSE features) are beneficial for effective information processing. John Wiley & Sons, Inc. 2020-08-18 /pmc/articles/PMC7643359/ /pubmed/32808732 http://dx.doi.org/10.1002/hbm.25162 Text en © 2020 The Authors. Human Brain Mapping published by Wiley Periodicals LLC. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Dreszer, Joanna
Grochowski, Marek
Lewandowska, Monika
Nikadon, Jan
Gorgol, Joanna
Bałaj, Bibianna
Finc, Karolina
Duch, Włodzisław
Kałamała, Patrycja
Chuderski, Adam
Piotrowski, Tomasz
Spatiotemporal complexity patterns of resting‐state bioelectrical activity explain fluid intelligence: Sex matters
title Spatiotemporal complexity patterns of resting‐state bioelectrical activity explain fluid intelligence: Sex matters
title_full Spatiotemporal complexity patterns of resting‐state bioelectrical activity explain fluid intelligence: Sex matters
title_fullStr Spatiotemporal complexity patterns of resting‐state bioelectrical activity explain fluid intelligence: Sex matters
title_full_unstemmed Spatiotemporal complexity patterns of resting‐state bioelectrical activity explain fluid intelligence: Sex matters
title_short Spatiotemporal complexity patterns of resting‐state bioelectrical activity explain fluid intelligence: Sex matters
title_sort spatiotemporal complexity patterns of resting‐state bioelectrical activity explain fluid intelligence: sex matters
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7643359/
https://www.ncbi.nlm.nih.gov/pubmed/32808732
http://dx.doi.org/10.1002/hbm.25162
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