Frédéric Grouiller
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Recent Grants
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Advanced MRI for neuroscience of cognition and emotion: From brain circuits to clinical disorders and interventions
Open Date: 2021-12-01
Close Date: 2022-11-30
Grant: Close
Real-time multimodal imaging of functional brain networks using simultaneous EEG and fMRI acquisitions
Open Date: 2020-07-01
Close Date: 2023-06-30
Grant: Close
Understanding the Neural Substrates of Neurofeeback Modulations of Visual Attention: Multimodal Brain Imaging and Application to Hemispatial Neglect Syndrome
Open Date: 2020-06-01
Close Date: 2024-05-31
Grant: Close
Learn children with ADHD how to self-regulate their attention with Virtual Reality, EEG and fMRI
Open Date: 2019-01-01
Close Date: 2020-12-01
Grant: Close
The Idling Brain: The Temporal Structure of Resting State Networks Revealed by Electrical Neuroimaging
Open Date: 2010-11-01
Close Date: 2014-12-31
Articles (10)
Self-Regulation of Attention in Children in a Virtual Classroom Environment: A Feasibility Study
Attention is a crucial cognitive function that enables us to selectively focus on relevant information from the surrounding world to achieve our goals. Impairments in sustained attention pose challenges, particularly in children with attention deficit hyperactivity disorder, a neurodevelopmental disorder characterized by impulsive and inattentive behavior. While psychostimulant medications are the most effective ADHD treatment, they often yield unwanted side effects, making it crucial to explore non-pharmacological treatments. We propose a groundbreaking protocol that combines electroencephalography-based neurofeedback with virtual reality (VR) as an innovative approach to address attention deficits. By integrating a virtual classroom environment, we aim to enhance the transferability of attentional control skills while simultaneously increasing motivation and interest among children. The present study demonstrates the feasibility of this approach through an initial assessment involving a small group of healthy children, showcasing its potential for future evaluation in ADHD children. Preliminary results indicate high engagement and positive feedback. Pre- and post-protocol assessments via EEG and fMRI recordings suggest changes in attentional function. Further validation is required, but this protocol is a significant advancement in neurofeedback therapy for ADHD. The integration of EEG-NFB and VR presents a novel avenue for enhancing attentional control and addressing behavioral challenges in children with ADHD.
Year:
2023
Collaborators (5)
Daniel S. Scholz
Head of department / Professor
-
Jonathan Wirsich
University of Geneva
Colette Boëx
Lecturer
Université de Genève
Nathalie Mella
University of Geneva
Antoine Klauser
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