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Shared Neural Phenotypes for Mood and Anxiety Disorders: A Meta-analysis of 226 Task-Related Functional Imaging Studies

IMPORTANCE: Major depressive disorder, bipolar disorder, posttraumatic stress disorder, and anxiety disorders are highly comorbid and have shared clinical features. It is not yet known whether their clinical overlap is reflected at the neurobiological level. OBJECTIVE: To detect transdiagnostic conv...

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Autores principales: Janiri, Delfina, Moser, Dominik A., Doucet, Gaelle E., Luber, Maxwell J., Rasgon, Alexander, Lee, Won Hee, Murrough, James W., Sani, Gabriele, Eickhoff, Simon B., Frangou, Sophia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Medical Association 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6822098/
https://www.ncbi.nlm.nih.gov/pubmed/31664439
http://dx.doi.org/10.1001/jamapsychiatry.2019.3351
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author Janiri, Delfina
Moser, Dominik A.
Doucet, Gaelle E.
Luber, Maxwell J.
Rasgon, Alexander
Lee, Won Hee
Murrough, James W.
Sani, Gabriele
Eickhoff, Simon B.
Frangou, Sophia
author_facet Janiri, Delfina
Moser, Dominik A.
Doucet, Gaelle E.
Luber, Maxwell J.
Rasgon, Alexander
Lee, Won Hee
Murrough, James W.
Sani, Gabriele
Eickhoff, Simon B.
Frangou, Sophia
author_sort Janiri, Delfina
collection PubMed
description IMPORTANCE: Major depressive disorder, bipolar disorder, posttraumatic stress disorder, and anxiety disorders are highly comorbid and have shared clinical features. It is not yet known whether their clinical overlap is reflected at the neurobiological level. OBJECTIVE: To detect transdiagnostic convergence in abnormalities in task-related brain activation. DATA SOURCE: Task-related functional magnetic resonance imaging articles published in PubMed, Web of Science, and Google Scholar during the last decade comparing control individuals with patients with mood, posttraumatic stress, and anxiety disorders were examined. STUDY SELECTION: Following Preferred Reporting Items for Systematic Reviews and Meta-analyses reporting guidelines, articles were selected if they reported stereotactic coordinates of whole-brain–based activation differences between adult patients and control individuals. DATA EXTRACTION AND SYNTHESIS: Coordinates of case-control differences coded by diagnosis and by cognitive domain based on the research domain criteria were analyzed using activation likelihood estimation. MAIN OUTCOMES AND MEASURES: Identification of transdiagnostic clusters of aberrant activation and quantification of the contribution of diagnosis and cognitive domain to each cluster. RESULTS: A total of 367 experiments (major depressive disorder, 149; bipolar disorder, 103; posttraumatic stress disorder, 55; and anxiety disorders, 60) were included comprising observations from 4507 patients and 4755 control individuals. Three right-sided clusters of hypoactivation were identified centered in the inferior prefrontal cortex/insula (volume, 2120 mm(3)), the inferior parietal lobule (volume, 1224 mm(3)), and the putamen (volume, 888 mm(3)); diagnostic differences were noted only in the putamen (χ(2)(3) = 8.66; P = .03), where hypoactivation was more likely in bipolar disorder (percentage contribution = 72.17%). Tasks associated with cognitive systems made the largest contribution to each cluster (percentage contributions >29%). Clusters of hyperactivation could only be detected using a less stringent threshold. These were centered in the perigenual/dorsal anterior cingulate cortex (volume, 2208 mm(3)), the left amygdala/parahippocampal gyrus (volume, 2008 mm(3)), and the left thalamus (volume, 1904 mm(3)). No diagnostic differences were observed (χ(2)(3) < 3.06; P > .38), while tasks associated with negative valence systems made the largest contribution to each cluster (percentage contributions >49%). All findings were robust to the moderator effects of age, sex, and magnetic field strength of the scanner and medication. CONCLUSIONS AND RELEVANCE: In mood disorders, posttraumatic stress disorder, and anxiety disorders, the most consistent transdiagnostic abnormalities in task-related brain activity converge in regions that are primarily associated with inhibitory control and salience processing. Targeting these shared neural phenotypes could potentially mitigate the risk of affective morbidity in the general population and improve outcomes in clinical populations.
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spelling pubmed-68220982019-11-14 Shared Neural Phenotypes for Mood and Anxiety Disorders: A Meta-analysis of 226 Task-Related Functional Imaging Studies Janiri, Delfina Moser, Dominik A. Doucet, Gaelle E. Luber, Maxwell J. Rasgon, Alexander Lee, Won Hee Murrough, James W. Sani, Gabriele Eickhoff, Simon B. Frangou, Sophia JAMA Psychiatry Original Investigation IMPORTANCE: Major depressive disorder, bipolar disorder, posttraumatic stress disorder, and anxiety disorders are highly comorbid and have shared clinical features. It is not yet known whether their clinical overlap is reflected at the neurobiological level. OBJECTIVE: To detect transdiagnostic convergence in abnormalities in task-related brain activation. DATA SOURCE: Task-related functional magnetic resonance imaging articles published in PubMed, Web of Science, and Google Scholar during the last decade comparing control individuals with patients with mood, posttraumatic stress, and anxiety disorders were examined. STUDY SELECTION: Following Preferred Reporting Items for Systematic Reviews and Meta-analyses reporting guidelines, articles were selected if they reported stereotactic coordinates of whole-brain–based activation differences between adult patients and control individuals. DATA EXTRACTION AND SYNTHESIS: Coordinates of case-control differences coded by diagnosis and by cognitive domain based on the research domain criteria were analyzed using activation likelihood estimation. MAIN OUTCOMES AND MEASURES: Identification of transdiagnostic clusters of aberrant activation and quantification of the contribution of diagnosis and cognitive domain to each cluster. RESULTS: A total of 367 experiments (major depressive disorder, 149; bipolar disorder, 103; posttraumatic stress disorder, 55; and anxiety disorders, 60) were included comprising observations from 4507 patients and 4755 control individuals. Three right-sided clusters of hypoactivation were identified centered in the inferior prefrontal cortex/insula (volume, 2120 mm(3)), the inferior parietal lobule (volume, 1224 mm(3)), and the putamen (volume, 888 mm(3)); diagnostic differences were noted only in the putamen (χ(2)(3) = 8.66; P = .03), where hypoactivation was more likely in bipolar disorder (percentage contribution = 72.17%). Tasks associated with cognitive systems made the largest contribution to each cluster (percentage contributions >29%). Clusters of hyperactivation could only be detected using a less stringent threshold. These were centered in the perigenual/dorsal anterior cingulate cortex (volume, 2208 mm(3)), the left amygdala/parahippocampal gyrus (volume, 2008 mm(3)), and the left thalamus (volume, 1904 mm(3)). No diagnostic differences were observed (χ(2)(3) < 3.06; P > .38), while tasks associated with negative valence systems made the largest contribution to each cluster (percentage contributions >49%). All findings were robust to the moderator effects of age, sex, and magnetic field strength of the scanner and medication. CONCLUSIONS AND RELEVANCE: In mood disorders, posttraumatic stress disorder, and anxiety disorders, the most consistent transdiagnostic abnormalities in task-related brain activity converge in regions that are primarily associated with inhibitory control and salience processing. Targeting these shared neural phenotypes could potentially mitigate the risk of affective morbidity in the general population and improve outcomes in clinical populations. American Medical Association 2019-10-30 2020-02 /pmc/articles/PMC6822098/ /pubmed/31664439 http://dx.doi.org/10.1001/jamapsychiatry.2019.3351 Text en Copyright 2019 Janiri D et al. JAMA Psychiatry. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the CC-BY License.
spellingShingle Original Investigation
Janiri, Delfina
Moser, Dominik A.
Doucet, Gaelle E.
Luber, Maxwell J.
Rasgon, Alexander
Lee, Won Hee
Murrough, James W.
Sani, Gabriele
Eickhoff, Simon B.
Frangou, Sophia
Shared Neural Phenotypes for Mood and Anxiety Disorders: A Meta-analysis of 226 Task-Related Functional Imaging Studies
title Shared Neural Phenotypes for Mood and Anxiety Disorders: A Meta-analysis of 226 Task-Related Functional Imaging Studies
title_full Shared Neural Phenotypes for Mood and Anxiety Disorders: A Meta-analysis of 226 Task-Related Functional Imaging Studies
title_fullStr Shared Neural Phenotypes for Mood and Anxiety Disorders: A Meta-analysis of 226 Task-Related Functional Imaging Studies
title_full_unstemmed Shared Neural Phenotypes for Mood and Anxiety Disorders: A Meta-analysis of 226 Task-Related Functional Imaging Studies
title_short Shared Neural Phenotypes for Mood and Anxiety Disorders: A Meta-analysis of 226 Task-Related Functional Imaging Studies
title_sort shared neural phenotypes for mood and anxiety disorders: a meta-analysis of 226 task-related functional imaging studies
topic Original Investigation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6822098/
https://www.ncbi.nlm.nih.gov/pubmed/31664439
http://dx.doi.org/10.1001/jamapsychiatry.2019.3351
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