Reductions in task positive neural systems occur with the passage of time and are associated with changes in ongoing thought

Abstract Cognition is dynamic and involves both the maintenance of and transitions between neurocognitive states. While recent research has identified some of the neural systems involved in sustaining task states, it is less well understood how intrinsic influences on cognition emerge over time. The...

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Main Authors: Adam Turnbull, Theodoros Karapanagiotidis, Hao-Ting Wang, Boris C. Bernhardt, Robert Leech, Daniel Margulies, Jonathan Schooler, Elizabeth Jefferies, Jonathan Smallwood
Format: Article
Language:English
Published: Nature Publishing Group 2020-06-01
Series:Scientific Reports
Online Access:https://doi.org/10.1038/s41598-020-66698-z
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spelling doaj-93edec684c064021a7b0c83c4b7a3ba12021-06-20T11:39:02ZengNature Publishing GroupScientific Reports2045-23222020-06-0110111010.1038/s41598-020-66698-zReductions in task positive neural systems occur with the passage of time and are associated with changes in ongoing thoughtAdam Turnbull0Theodoros Karapanagiotidis1Hao-Ting Wang2Boris C. Bernhardt3Robert Leech4Daniel Margulies5Jonathan Schooler6Elizabeth Jefferies7Jonathan Smallwood8Department of Psychology, University of YorkDepartment of Psychology, University of YorkSackler Centre for Consciousness Science, University of SussexMontreal Neurological Institute and Hospital, McGill UniversityCentre for Neuroimaging Science, Kings CollegeCentre National de la Recherche Scientifique (CNRS)Psychological and Brain Sciences, University of CaliforniaDepartment of Psychology, University of YorkDepartment of Psychology, University of YorkAbstract Cognition is dynamic and involves both the maintenance of and transitions between neurocognitive states. While recent research has identified some of the neural systems involved in sustaining task states, it is less well understood how intrinsic influences on cognition emerge over time. The current study uses fMRI and Multi-Dimensional Experience Sampling (MDES) to chart how cognition changes over time from moments in time when external attention was established. We found that the passage of time was associated with brain regions associated with external attention decreasing in activity over time. Comparing this pattern of activity to defined functional hierarchies of brain organization, we found that it could be best understood as movement away from systems involved in task performance. Moments where the participants described their thoughts as off-task showed a significant similarity to the task-negative end of the same hierarchy. Finally, the greater the similarity of a participant’s neural dynamics to this hierarchy the faster their rate of increasing off-task thought over time. These findings suggest topographical changes in neural processing that emerge over time and those seen during off-task thought can both be understood as a common shift away from neural motifs seen during complex task performance.https://doi.org/10.1038/s41598-020-66698-z
collection DOAJ
language English
format Article
sources DOAJ
author Adam Turnbull
Theodoros Karapanagiotidis
Hao-Ting Wang
Boris C. Bernhardt
Robert Leech
Daniel Margulies
Jonathan Schooler
Elizabeth Jefferies
Jonathan Smallwood
spellingShingle Adam Turnbull
Theodoros Karapanagiotidis
Hao-Ting Wang
Boris C. Bernhardt
Robert Leech
Daniel Margulies
Jonathan Schooler
Elizabeth Jefferies
Jonathan Smallwood
Reductions in task positive neural systems occur with the passage of time and are associated with changes in ongoing thought
Scientific Reports
author_facet Adam Turnbull
Theodoros Karapanagiotidis
Hao-Ting Wang
Boris C. Bernhardt
Robert Leech
Daniel Margulies
Jonathan Schooler
Elizabeth Jefferies
Jonathan Smallwood
author_sort Adam Turnbull
title Reductions in task positive neural systems occur with the passage of time and are associated with changes in ongoing thought
title_short Reductions in task positive neural systems occur with the passage of time and are associated with changes in ongoing thought
title_full Reductions in task positive neural systems occur with the passage of time and are associated with changes in ongoing thought
title_fullStr Reductions in task positive neural systems occur with the passage of time and are associated with changes in ongoing thought
title_full_unstemmed Reductions in task positive neural systems occur with the passage of time and are associated with changes in ongoing thought
title_sort reductions in task positive neural systems occur with the passage of time and are associated with changes in ongoing thought
publisher Nature Publishing Group
series Scientific Reports
issn 2045-2322
publishDate 2020-06-01
description Abstract Cognition is dynamic and involves both the maintenance of and transitions between neurocognitive states. While recent research has identified some of the neural systems involved in sustaining task states, it is less well understood how intrinsic influences on cognition emerge over time. The current study uses fMRI and Multi-Dimensional Experience Sampling (MDES) to chart how cognition changes over time from moments in time when external attention was established. We found that the passage of time was associated with brain regions associated with external attention decreasing in activity over time. Comparing this pattern of activity to defined functional hierarchies of brain organization, we found that it could be best understood as movement away from systems involved in task performance. Moments where the participants described their thoughts as off-task showed a significant similarity to the task-negative end of the same hierarchy. Finally, the greater the similarity of a participant’s neural dynamics to this hierarchy the faster their rate of increasing off-task thought over time. These findings suggest topographical changes in neural processing that emerge over time and those seen during off-task thought can both be understood as a common shift away from neural motifs seen during complex task performance.
url https://doi.org/10.1038/s41598-020-66698-z
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