Intrinsic Connectivity Networks in the Self- and Other-Referential Processing
Neuroimaging studies have revealed a multitude of brain regions associated with self- and other-referential processing, but the question how the distinction between self, close other, and distant other is processed in the brain still remains unanswered. The default mode network (DMN) is the primary...
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doaj-c91b366f0b964932b6b4b30c39316b722020-11-25T03:57:01ZengFrontiers Media S.A.Frontiers in Human Neuroscience1662-51612020-11-011410.3389/fnhum.2020.579703579703Intrinsic Connectivity Networks in the Self- and Other-Referential ProcessingGennady G. Knyazev0Alexander N. Savostyanov1Alexander N. Savostyanov2Andrey V. Bocharov3Evgeny A. Levin4Pavel D. Rudych5Laboratory of Psychophysiology of Individual Differences, Institute of Physiology and Basic Medicine, Novosibirsk, RussiaLaboratory of Psychophysiology of Individual Differences, Institute of Physiology and Basic Medicine, Novosibirsk, RussiaJoint Laboratory of Psychological Genetics at the Institute of Cytology and Genetics SB RAS, Institute of Physiology and Basic Medicine, Novosibirsk, RussiaLaboratory of Psychophysiology of Individual Differences, Institute of Physiology and Basic Medicine, Novosibirsk, RussiaE.N. Meshalkin National Medical Research Center, Novosibirsk, RussiaLaboratory of Psychophysiology of Individual Differences, Institute of Physiology and Basic Medicine, Novosibirsk, RussiaNeuroimaging studies have revealed a multitude of brain regions associated with self- and other-referential processing, but the question how the distinction between self, close other, and distant other is processed in the brain still remains unanswered. The default mode network (DMN) is the primary network associated with the processing of self, whereas task-positive networks (TPN) are indispensable for the processing of external objects. We hypothesize that self- and close-other-processing would engage DMN more than TPN, whereas distant-other-processing would engage TPN to a greater extent. To test this hypothesis, we used functional magnetic resonance imaging (fMRI) functional connectivity data obtained in the course of a trait adjective judgment task while subjects evaluated themselves, the best friend, a neutral stranger, and an unpleasant person. A positive association between the degree of self-relatedness and the degree of DMN dominance was revealed in cortical midline structures (CMS) and the left lateral prefrontal cortex. Relative to TPN, DMN showed greater connectivity in me than in friend, in friend than in stranger, and in stranger than in unpleasant conditions. These results show that the less the evaluated person is perceived as self-related, the more the balance of activity in the brain shifts from the DMN to the TPN.https://www.frontiersin.org/articles/10.3389/fnhum.2020.579703/fulldefault mode networkcentral executive networksalience networkself-referential processingtrait adjective judgment taskfMRI |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Gennady G. Knyazev Alexander N. Savostyanov Alexander N. Savostyanov Andrey V. Bocharov Evgeny A. Levin Pavel D. Rudych |
spellingShingle |
Gennady G. Knyazev Alexander N. Savostyanov Alexander N. Savostyanov Andrey V. Bocharov Evgeny A. Levin Pavel D. Rudych Intrinsic Connectivity Networks in the Self- and Other-Referential Processing Frontiers in Human Neuroscience default mode network central executive network salience network self-referential processing trait adjective judgment task fMRI |
author_facet |
Gennady G. Knyazev Alexander N. Savostyanov Alexander N. Savostyanov Andrey V. Bocharov Evgeny A. Levin Pavel D. Rudych |
author_sort |
Gennady G. Knyazev |
title |
Intrinsic Connectivity Networks in the Self- and Other-Referential Processing |
title_short |
Intrinsic Connectivity Networks in the Self- and Other-Referential Processing |
title_full |
Intrinsic Connectivity Networks in the Self- and Other-Referential Processing |
title_fullStr |
Intrinsic Connectivity Networks in the Self- and Other-Referential Processing |
title_full_unstemmed |
Intrinsic Connectivity Networks in the Self- and Other-Referential Processing |
title_sort |
intrinsic connectivity networks in the self- and other-referential processing |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Human Neuroscience |
issn |
1662-5161 |
publishDate |
2020-11-01 |
description |
Neuroimaging studies have revealed a multitude of brain regions associated with self- and other-referential processing, but the question how the distinction between self, close other, and distant other is processed in the brain still remains unanswered. The default mode network (DMN) is the primary network associated with the processing of self, whereas task-positive networks (TPN) are indispensable for the processing of external objects. We hypothesize that self- and close-other-processing would engage DMN more than TPN, whereas distant-other-processing would engage TPN to a greater extent. To test this hypothesis, we used functional magnetic resonance imaging (fMRI) functional connectivity data obtained in the course of a trait adjective judgment task while subjects evaluated themselves, the best friend, a neutral stranger, and an unpleasant person. A positive association between the degree of self-relatedness and the degree of DMN dominance was revealed in cortical midline structures (CMS) and the left lateral prefrontal cortex. Relative to TPN, DMN showed greater connectivity in me than in friend, in friend than in stranger, and in stranger than in unpleasant conditions. These results show that the less the evaluated person is perceived as self-related, the more the balance of activity in the brain shifts from the DMN to the TPN. |
topic |
default mode network central executive network salience network self-referential processing trait adjective judgment task fMRI |
url |
https://www.frontiersin.org/articles/10.3389/fnhum.2020.579703/full |
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