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Patients on the psychosis spectrum employ an alternate brain network to engage in complex decision-making

Brain reward processing mechanisms that underlie complex decision-making are compromised in psychosis. The goal of this research was to advance our understanding of the underlying (1) neural mechanisms and (2) discrete neuro-economic/motivational processes that may be altered in complex decision-mak...

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Autores principales: Ramchandran, Kanchna, Fiedorowicz, Jess, Chen, Zhaoying, Bu, Yilin, Bechara, Antoine, Andreasen, Nancy C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7485831/
https://www.ncbi.nlm.nih.gov/pubmed/32915832
http://dx.doi.org/10.1371/journal.pone.0238774
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author Ramchandran, Kanchna
Fiedorowicz, Jess
Chen, Zhaoying
Bu, Yilin
Bechara, Antoine
Andreasen, Nancy C.
author_facet Ramchandran, Kanchna
Fiedorowicz, Jess
Chen, Zhaoying
Bu, Yilin
Bechara, Antoine
Andreasen, Nancy C.
author_sort Ramchandran, Kanchna
collection PubMed
description Brain reward processing mechanisms that underlie complex decision-making are compromised in psychosis. The goal of this research was to advance our understanding of the underlying (1) neural mechanisms and (2) discrete neuro-economic/motivational processes that may be altered in complex decision-making in euthymic patients on the psychosis spectrum (PPS). Utilizing a functional magnetic resonance neuroimaging (fmri) paradigm of a well-validated laboratory measure of complex decision-making (Iowa Gambling Task-IGT), the brain activation patterns of a target group of PPS were compared to a demographically matched healthy comparison group (HMC). These two groups were also evaluated on real-life decision outcomes on day of scan. PPS primarily activate the Dorsal Attentional Network (DAN) in real-life decision outcomes and in achieving similar levels of performance on the IGT as the HMC, in-spite of dysregulated dopamine-based brain-reward circuit and salience network fmri activation patterns. However, PPS report more significant negative outcomes of their decision-making in real-life, compared to HMC. The differential engagement of brain networks by PPS on the IGT appear to be moderated by antipsychotic, dopamine antagonist, medication lifetime/daily dose levels. These findings may also be mediated by extent of dysregulation in brain reward circuitry and salience network associated with psychosis severity in the target PPS group. This is also evident in case studies of unmedicated PPS. We conclude by suggesting that the brain may adapt to this dysregulation by co-opting the DAN network, which is implicated in the related function of problem-solving, towards complex decision-making. The extent of utilization of the DAN network in complex decision-making may be moderated by psychosis severity.
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spelling pubmed-74858312020-09-21 Patients on the psychosis spectrum employ an alternate brain network to engage in complex decision-making Ramchandran, Kanchna Fiedorowicz, Jess Chen, Zhaoying Bu, Yilin Bechara, Antoine Andreasen, Nancy C. PLoS One Research Article Brain reward processing mechanisms that underlie complex decision-making are compromised in psychosis. The goal of this research was to advance our understanding of the underlying (1) neural mechanisms and (2) discrete neuro-economic/motivational processes that may be altered in complex decision-making in euthymic patients on the psychosis spectrum (PPS). Utilizing a functional magnetic resonance neuroimaging (fmri) paradigm of a well-validated laboratory measure of complex decision-making (Iowa Gambling Task-IGT), the brain activation patterns of a target group of PPS were compared to a demographically matched healthy comparison group (HMC). These two groups were also evaluated on real-life decision outcomes on day of scan. PPS primarily activate the Dorsal Attentional Network (DAN) in real-life decision outcomes and in achieving similar levels of performance on the IGT as the HMC, in-spite of dysregulated dopamine-based brain-reward circuit and salience network fmri activation patterns. However, PPS report more significant negative outcomes of their decision-making in real-life, compared to HMC. The differential engagement of brain networks by PPS on the IGT appear to be moderated by antipsychotic, dopamine antagonist, medication lifetime/daily dose levels. These findings may also be mediated by extent of dysregulation in brain reward circuitry and salience network associated with psychosis severity in the target PPS group. This is also evident in case studies of unmedicated PPS. We conclude by suggesting that the brain may adapt to this dysregulation by co-opting the DAN network, which is implicated in the related function of problem-solving, towards complex decision-making. The extent of utilization of the DAN network in complex decision-making may be moderated by psychosis severity. Public Library of Science 2020-09-11 /pmc/articles/PMC7485831/ /pubmed/32915832 http://dx.doi.org/10.1371/journal.pone.0238774 Text en © 2020 Ramchandran et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ramchandran, Kanchna
Fiedorowicz, Jess
Chen, Zhaoying
Bu, Yilin
Bechara, Antoine
Andreasen, Nancy C.
Patients on the psychosis spectrum employ an alternate brain network to engage in complex decision-making
title Patients on the psychosis spectrum employ an alternate brain network to engage in complex decision-making
title_full Patients on the psychosis spectrum employ an alternate brain network to engage in complex decision-making
title_fullStr Patients on the psychosis spectrum employ an alternate brain network to engage in complex decision-making
title_full_unstemmed Patients on the psychosis spectrum employ an alternate brain network to engage in complex decision-making
title_short Patients on the psychosis spectrum employ an alternate brain network to engage in complex decision-making
title_sort patients on the psychosis spectrum employ an alternate brain network to engage in complex decision-making
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7485831/
https://www.ncbi.nlm.nih.gov/pubmed/32915832
http://dx.doi.org/10.1371/journal.pone.0238774
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