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Longitudinal resting-state network connectivity changes in electroconvulsive therapy patients compared to healthy controls.
Verdijk, Joey P A J; van de Mortel, Laurens A; Ten Doesschate, Freek; Pottkämper, Julia C M; Stuiver, Sven; Bruin, Willem B; Abbott, Christopher C; Argyelan, Miklos; Ousdal, Olga T; Bartsch, Hauke; Narr, Katherine; Tendolkar, Indira; Calhoun, Vince; Lukemire, Joshua; Guo, Ying; Oltedal, Leif; van Wingen, Guido; van Waarde, Jeroen A.
Afiliação
  • Verdijk JPAJ; Rijnstate Hospital, Department of Psychiatry, P.O. Box 9555, 6800 TA Arnhem, the Netherlands; University of Twente, Department of Clinical Neurophysiology, Enschede, the Netherlands. Electronic address: jverdijk@rijnstate.nl.
  • van de Mortel LA; Amsterdam UMC location University of Amsterdam, Department of Psychiatry, Amsterdam, the Netherlands; Amsterdam Neuroscience, Amsterdam, the Netherlands.
  • Ten Doesschate F; Rijnstate Hospital, Department of Psychiatry, P.O. Box 9555, 6800 TA Arnhem, the Netherlands; Amsterdam UMC location University of Amsterdam, Department of Psychiatry, Amsterdam, the Netherlands; Amsterdam Neuroscience, Amsterdam, the Netherlands.
  • Pottkämper JCM; Rijnstate Hospital, Department of Psychiatry, P.O. Box 9555, 6800 TA Arnhem, the Netherlands; University of Twente, Department of Clinical Neurophysiology, Enschede, the Netherlands.
  • Stuiver S; Rijnstate Hospital, Department of Psychiatry, P.O. Box 9555, 6800 TA Arnhem, the Netherlands; University of Twente, Department of Clinical Neurophysiology, Enschede, the Netherlands.
  • Bruin WB; Amsterdam UMC location University of Amsterdam, Department of Psychiatry, Amsterdam, the Netherlands; Amsterdam Neuroscience, Amsterdam, the Netherlands.
  • Abbott CC; Department of Psychiatry, University of New Mexico School of Medicine, Albuquerque, NM, USA.
  • Argyelan M; Center for Psychiatric Neuroscience at the Feinstein Institute for Medical Research, New York, NY, USA.
  • Ousdal OT; Department of Biomedicine, University of Bergen, Bergen, Norway; Department of Radiology, Haukeland University Hospital, Bergen, Norway.
  • Bartsch H; Department of Computer Science, University of Bergen, Bergen, Norway; Mohn Medical Imaging and Visualization Center, Department of Radiology, Haukeland University Hospital, Bergen, Norway.
  • Narr K; Departments of Neurology, Psychiatry, and Biobehavioral Sciences, University of California, Los Angeles, CA, USA.
  • Tendolkar I; Donders Institute for Brain, Cognition and Behavior, Department of Psychiatry, Nijmegen, the Netherlands.
  • Calhoun V; Tri-institutional center for Translational Research in Neuroimaging and Data Science (TReNDS) Center, Emory University, USA.
  • Lukemire J; Emory Center for Biomedical Imaging Statistics, Emory University, USA.
  • Guo Y; Emory Center for Biomedical Imaging Statistics, Emory University, USA.
  • Oltedal L; Mohn Medical Imaging and Visualization Center, Department of Radiology, Haukeland University Hospital, Bergen, Norway.
  • van Wingen G; Amsterdam UMC location University of Amsterdam, Department of Psychiatry, Amsterdam, the Netherlands; Amsterdam Neuroscience, Amsterdam, the Netherlands.
  • van Waarde JA; Rijnstate Hospital, Department of Psychiatry, P.O. Box 9555, 6800 TA Arnhem, the Netherlands.
Brain Stimul ; 17(1): 140-147, 2024.
Article em En | MEDLINE | ID: mdl-38101469
ABSTRACT

OBJECTIVE:

Electroconvulsive therapy (ECT) is effective for major depressive episodes. Understanding of underlying mechanisms has been increased by examining changes of brain connectivity but studies often do not correct for test-retest variability in healthy controls (HC). In this study, we investigated changes in resting-state networks after ECT in a multicenter study.

METHODS:

Functional resting-state magnetic resonance imaging data, acquired before start and within one week after ECT, from 90 depressed patients were analyzed, as well as longitudinal data of 24 HC. Group-information guided independent component analysis (GIG-ICA) was used to spatially restrict decomposition to twelve canonical resting-state networks. Selected networks of interest were the default mode network (DMN), salience network (SN), and left and right frontoparietal network (LFPN, and RFPN). Whole-brain voxel-wise analyses were used to assess group differences at baseline, group by time interactions, and correlations with treatment effectiveness. In addition, between-network connectivity and within-network strengths were computed.

RESULTS:

Within-network strength of the DMN was lower at baseline in ECT patients which increased after ECT compared to HC, after which no differences were detected. At baseline, ECT patients showed lower whole-brain voxel-wise DMN connectivity in the precuneus. Increase of within-network strength of the LFPN was correlated with treatment effectiveness. We did not find whole-brain voxel-wise or between-network changes.

CONCLUSION:

DMN within-network connectivity normalized after ECT. Within-network increase of the LFPN in ECT patients was correlated with higher treatment effectiveness. In contrast to earlier studies, we found no whole-brain voxel-wise changes, which highlights the necessity to account for test-retest effects.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Transtorno Depressivo Maior / Eletroconvulsoterapia Limite: Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Transtorno Depressivo Maior / Eletroconvulsoterapia Limite: Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article