Alpha Neurofeedback Training in Elite Soccer Players Trained in Groups
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Published:2024-08-10
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ISSN:1090-0586
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Container-title:Applied Psychophysiology and Biofeedback
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language:en
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Short-container-title:Appl Psychophysiol Biofeedback
Author:
van Boxtel Geert J. M.ORCID, Denissen Ad J. J. M., de Groot Joep A., Neleman Marjolein S., Vellema Jur, Hart de Ruijter Evelijne M.
Abstract
AbstractNeurofeedback training is applied in the world of sports as a means to improve athletes’ performance. Training sessions are usually organized on an individual basis, one at a time. Here we investigated if the training could also be organized in groups. Forty-one national-level football (soccer) players (26 females, 15 males) carried out training sessions simultaneously in groups of up to 13, using a wearable device with Bluetooth connection, during their regular training hours at the club. It was possible to obtain good EEG measurements using this setup, albeit with a somewhat higher data loss than usual in standard laboratory sessions. The brain’s alpha activity was trained using music-based neurofeedback in a crossover design. A training session consisted of alternating periods of neurofeedback and execution of cognitive tasks. EEG alpha (8–12 Hz) activity was higher in the neurofeedback periods compared to the cognitive task periods, and the reverse was true for beta (13–30 Hz) activity. The training program resulted in an increase of 34% in alpha activity associated with the training, and improved the athletes’ performance on task switching and mental rotation tasks. In addition, self-reported sleep duration, as well as scores on the Being in Shape questionnaire (Feeling of Control and Flow) also improved. This study shows that neurofeedback training is feasible in groups of athletes, which can stimulate its application in team sports.
Publisher
Springer Science and Business Media LLC
Reference21 articles.
1. Brito, M. A. D., Fernandes, J. R., Esteves, N. S. A., Müller, V. T., Alexandria, D. B., Pérez, D. I. V., Slimani, M., Brito, C. J., Bragazzi, N. L., & Miarka, B. (2022). The effect of neurofeedback on the reaction time and cognitive performance of athletes: A systematic review and meta-analysis. Frontiers in Human Neuroscience, 16, 868450. 2. Cho, M. K., Jang, H. S., Jeong, S. H., Jang, I. S., Choi, B. J., & Lee, M. G. T. (2008). Alpha neurofeedback improves the maintaining ability of alpha activity. NeuroReport, 19(3), 315–317. 3. Cohen, S., Kamarck, T., & Mermelstein, R. (1983). A global measure of perceived stress. Journal of Health and Social Behavior, 24(4), 385–396. 4. Dekker, M. K. J., Van den Berg, B. R., Denissen, A. J. M., Sitskoorn, M. M., & Van Boxtel, G. J. M. (2014). Feasibility of eyes open alpha power training for mental enhancement in elite gymnasts. Journal of Sports Sciences, 32(16), 1550–1560. 5. Del Percio, C., Iacoboni, M., Lizio, R., Marzano, N., Infarinato, F., Vecchio, F., Bertollo, M., Robazza, C., Comani, S., Limatola, C., & Babiloni, C. (2011). Functional coupling of parietal alpha rhythms is enhanced in athletes before visuomotor performance: A coherence electroencephalographic study. Neuroscience, 175, 198–211.
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