Neurofeedback and neuroplasticity of visual self-processing in depressed and healthy adolescents: A preliminary study

Adolescence is a neuroplastic period for self-processing and emotion regulation transformations, that if derailed, are linked to persistent depression. Neural mechanisms of adolescent self-processing and emotion regulation ought to be targeted via new treatments, given moderate effectiveness of curr...

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Main Authors: Karina Quevedo, Guanmin Liu, Jia Yuan Teoh, Satrajit Ghosh, Thomas Zeffiro, Natasha Ahrweiler, Na Zhang, Riley Wedan, Sewon Oh, Guerson Guercio, Christian Paret
Format: Article
Language:English
Published: Elsevier 2019-12-01
Series:Developmental Cognitive Neuroscience
Online Access:http://www.sciencedirect.com/science/article/pii/S1878929319302944
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spelling doaj-3a7ed257fe9f474caa2fc3b82b58e5412020-11-25T01:08:56ZengElsevierDevelopmental Cognitive Neuroscience1878-92932019-12-0140Neurofeedback and neuroplasticity of visual self-processing in depressed and healthy adolescents: A preliminary studyKarina Quevedo0Guanmin Liu1Jia Yuan Teoh2Satrajit Ghosh3Thomas Zeffiro4Natasha Ahrweiler5Na Zhang6Riley Wedan7Sewon Oh8Guerson Guercio9Christian Paret10Department of Psychiatry at the University of Minnesota (U of M), United States; Corresponding author at: Division of Child and Adolescent Psychiatry, Department of Psychiatry, U of M, 2450 Riverside Avenue, F260, Minneapolis, MN 55454, United States.Center for Healthy Minds, University of Wisconsin-Madison, United StatesDepartment of Psychiatry at the University of Minnesota (U of M), United StatesDepartment of Otolaryngology, Harvard Medical School, McGovern Institute for Brain Research at the MIT, United StatesDepartment of Radiology, University of Maryland, United StatesDepartment of Psychiatry at the University of Minnesota (U of M), United StatesREACH Institute, Department of Psychology, Arizona State University, United StatesDepartment of Psychiatry at the University of Minnesota (U of M), United StatesDepartment of Psychiatry at the University of Minnesota (U of M), United StatesDepartment of Psychiatry at the University of Minnesota (U of M), United StatesDepartment of Psychosomatic Medicine and Psychotherapy, Central Institute of Mental Health Mannheim, Heidelberg University, GermanyAdolescence is a neuroplastic period for self-processing and emotion regulation transformations, that if derailed, are linked to persistent depression. Neural mechanisms of adolescent self-processing and emotion regulation ought to be targeted via new treatments, given moderate effectiveness of current interventions. Thus, we implemented a novel neurofeedback protocol in adolescents to test the engagement of circuits sub-serving self-processing and emotion regulation. Methods: Depressed (n = 34) and healthy (n = 19) adolescents underwent neurofeedback training using a novel task. They saw their happy face as a cue to recall positive memories and increased displayed amygdala and hippocampus activity. The control condition was counting-backwards while viewing another happy face. A self vs. other face recognition task was administered before and after neurofeedback training. Results: Adolescents showed higher frontotemporal activity during neurofeedback and higher amygdala and hippocampus and hippocampi activity in time series and region of interest analyses respectively. Before neurofeedback there was higher saliency network engagement for self-face recognition, but that network engagement was lower after neurofeedback. Depressed youth exhibited higher fusiform, inferior parietal lobule and cuneus activity during neurofeedback, but controls appeared to increase amygdala and hippocampus activity faster compared to depressed adolescents. Conclusions: Neurofeedback recruited frontotemporal cortices that support social cognition and emotion regulation. Amygdala and hippocampus engagement via neurofeedback appears to change limbic-frontotemporal networks during self-face recognition. A placebo group or condition and contrasting amygdala and hippocampus, hippocampi or right amygdala versus frontal loci of neurofeedback, e.g. dorsal anterior cingulate cortex, with longer duration of neurofeedback training will elucidate dosage and loci of neurofeedback in adolescents. Keywords: Neurofeedback, Adolescence, Depression, Amygdala, Hippocampus, Dorsal anterior cingulate cortex, Self-face recognitionhttp://www.sciencedirect.com/science/article/pii/S1878929319302944
collection DOAJ
language English
format Article
sources DOAJ
author Karina Quevedo
Guanmin Liu
Jia Yuan Teoh
Satrajit Ghosh
Thomas Zeffiro
Natasha Ahrweiler
Na Zhang
Riley Wedan
Sewon Oh
Guerson Guercio
Christian Paret
spellingShingle Karina Quevedo
Guanmin Liu
Jia Yuan Teoh
Satrajit Ghosh
Thomas Zeffiro
Natasha Ahrweiler
Na Zhang
Riley Wedan
Sewon Oh
Guerson Guercio
Christian Paret
Neurofeedback and neuroplasticity of visual self-processing in depressed and healthy adolescents: A preliminary study
Developmental Cognitive Neuroscience
author_facet Karina Quevedo
Guanmin Liu
Jia Yuan Teoh
Satrajit Ghosh
Thomas Zeffiro
Natasha Ahrweiler
Na Zhang
Riley Wedan
Sewon Oh
Guerson Guercio
Christian Paret
author_sort Karina Quevedo
title Neurofeedback and neuroplasticity of visual self-processing in depressed and healthy adolescents: A preliminary study
title_short Neurofeedback and neuroplasticity of visual self-processing in depressed and healthy adolescents: A preliminary study
title_full Neurofeedback and neuroplasticity of visual self-processing in depressed and healthy adolescents: A preliminary study
title_fullStr Neurofeedback and neuroplasticity of visual self-processing in depressed and healthy adolescents: A preliminary study
title_full_unstemmed Neurofeedback and neuroplasticity of visual self-processing in depressed and healthy adolescents: A preliminary study
title_sort neurofeedback and neuroplasticity of visual self-processing in depressed and healthy adolescents: a preliminary study
publisher Elsevier
series Developmental Cognitive Neuroscience
issn 1878-9293
publishDate 2019-12-01
description Adolescence is a neuroplastic period for self-processing and emotion regulation transformations, that if derailed, are linked to persistent depression. Neural mechanisms of adolescent self-processing and emotion regulation ought to be targeted via new treatments, given moderate effectiveness of current interventions. Thus, we implemented a novel neurofeedback protocol in adolescents to test the engagement of circuits sub-serving self-processing and emotion regulation. Methods: Depressed (n = 34) and healthy (n = 19) adolescents underwent neurofeedback training using a novel task. They saw their happy face as a cue to recall positive memories and increased displayed amygdala and hippocampus activity. The control condition was counting-backwards while viewing another happy face. A self vs. other face recognition task was administered before and after neurofeedback training. Results: Adolescents showed higher frontotemporal activity during neurofeedback and higher amygdala and hippocampus and hippocampi activity in time series and region of interest analyses respectively. Before neurofeedback there was higher saliency network engagement for self-face recognition, but that network engagement was lower after neurofeedback. Depressed youth exhibited higher fusiform, inferior parietal lobule and cuneus activity during neurofeedback, but controls appeared to increase amygdala and hippocampus activity faster compared to depressed adolescents. Conclusions: Neurofeedback recruited frontotemporal cortices that support social cognition and emotion regulation. Amygdala and hippocampus engagement via neurofeedback appears to change limbic-frontotemporal networks during self-face recognition. A placebo group or condition and contrasting amygdala and hippocampus, hippocampi or right amygdala versus frontal loci of neurofeedback, e.g. dorsal anterior cingulate cortex, with longer duration of neurofeedback training will elucidate dosage and loci of neurofeedback in adolescents. Keywords: Neurofeedback, Adolescence, Depression, Amygdala, Hippocampus, Dorsal anterior cingulate cortex, Self-face recognition
url http://www.sciencedirect.com/science/article/pii/S1878929319302944
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