Preliminary findings on long-term effects of fMRI neurofeedback training on functional networks involved in sustained attention.

Details

Ressource 1Download: 37594145_BIB_5CB94B51B441.pdf (1925.07 [Ko])
State: Public
Version: Final published version
License: CC BY 4.0
Serval ID
serval:BIB_5CB94B51B441
Type
Article: article from journal or magazin.
Collection
Publications
Institution
Title
Preliminary findings on long-term effects of fMRI neurofeedback training on functional networks involved in sustained attention.
Journal
Brain and behavior
Author(s)
Pamplona GSP, Heldner J., Langner R., Koush Y., Michels L., Ionta S., Salmon CEG, Scharnowski F.
ISSN
2162-3279 (Electronic)
Publication state
Published
Issued date
10/2023
Peer-reviewed
Oui
Volume
13
Number
10
Pages
e3217
Language
english
Notes
Publication types: Journal Article
Publication Status: ppublish
Abstract
Neurofeedback based on functional magnetic resonance imaging allows for learning voluntary control over one's own brain activity, aiming to enhance cognition and clinical symptoms. We previously reported improved sustained attention temporarily by training healthy participants to up-regulate the differential activity of the sustained attention network minus the default mode network (DMN). However, the long-term brain and behavioral effects of this training have not yet been studied. In general, despite their relevance, long-term learning effects of neurofeedback training remain under-explored.
Here, we complement our previously reported results by evaluating the neurofeedback training effects on functional networks involved in sustained attention and by assessing behavioral and brain measures before, after, and 2 months after training. The behavioral measures include task as well as questionnaire scores, and the brain measures include activity and connectivity during self-regulation runs without feedback (i.e., transfer runs) and during resting-state runs from 15 healthy individuals.
Neurally, we found that participants maintained their ability to control the differential activity during follow-up sessions. Further, exploratory analyses showed that the training increased the functional connectivity between the DMN and the occipital gyrus, which was maintained during follow-up transfer runs but not during follow-up resting-state runs. Behaviorally, we found that enhanced sustained attention right after training returned to baseline level during follow-up.
The discrepancy between lasting regulation-related brain changes but transient behavioral and resting-state effects raises the question of how neural changes induced by neurofeedback training translate to potential behavioral improvements. Since neurofeedback directly targets brain measures to indirectly improve behavior in the long term, a better understanding of the brain-behavior associations during and after neurofeedback training is needed to develop its full potential as a promising scientific and clinical tool.
Keywords
fMRI-neurofeedback, follow-up, functional connectivity, sustained attention
Pubmed
Web of science
Open Access
Yes
Create date
22/08/2023 8:58
Last modification date
25/01/2024 8:28
Usage data