Do Miniature Eye Movements Affect Neurofeedback Training Performance? A Combined EEG-Eye Tracking Study

IF 2.2 3区 心理学 Q2 PSYCHOLOGY, CLINICAL
Silvia Erika Kober, Guilherme Wood, Sarah Schuster, Christof Körner
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Abstract

EEG-based neurofeedback is a prominent method to modulate one’s own brain activity in a desired direction. However, the EEG signal can be disturbed by artifacts, e.g., eye movements, which can consequently confound the neurofeedback performance. Involuntary miniature eye movements can be hardly detected by conventional EEG correction methods such as recording the electro-oculogram (EOG) and subtracting EOG activity from the EEG signal. However, such miniature eye movements can influence EEG activity, especially in the Gamma frequency range, enormously. In the present study, we investigated whether power in different EEG frequencies can be effectively modulated by self-control of brain signals during neurofeedback training and/or whether changes in EEG power are provoked by miniature eye movements during the training. To this end, 24 participants performed one session of SMR and one session of Gamma neurofeedback training. Additionally, in each training session sham feedback was performed. An eye tracker was used to detect miniature eye movements (< 1°) during neurofeedback training. About two thirds of the participants were able to increase their SMR power over the course of NF training, while one third was able to increase Gamma power. Generally, miniature eye movements induced a strong Gamma power increase. The number of eye movements also increased numerically over the course of the NF training. However, we did not find a significant relationship with the NF training performance. This is a first indication that miniature saccades do not affect NF training performance, but should not be neglected during NF training. Our results have to be confirmed in future studies.

Abstract Image

微型眼动会影响神经反馈训练的效果吗?脑电图-眼动追踪联合研究。
基于脑电图的神经反馈是一种将自身大脑活动调控到所需方向的重要方法。然而,脑电图信号可能会受到眼球运动等伪影的干扰,从而影响神经反馈的效果。传统的脑电图校正方法,如记录眼电图(EOG)并从脑电图信号中减去眼电活动,很难检测到非自主的眼球微小运动。然而,这种微小的眼球运动会极大地影响脑电活动,尤其是伽马频率范围内的脑电活动。在本研究中,我们探讨了在神经反馈训练过程中,不同脑电图频率的功率是否能通过自我控制大脑信号得到有效调节,以及/或在训练过程中,微型眼球运动是否会引起脑电图功率的变化。为此,24 名参与者分别进行了一次 SMR 和一次伽马神经反馈训练。此外,每个训练环节都进行了假反馈。使用眼动仪检测微型眼球运动 (
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来源期刊
CiteScore
5.30
自引率
13.30%
发文量
36
期刊介绍: Applied Psychophysiology and Biofeedback is an international, interdisciplinary journal devoted to study of the interrelationship of physiological systems, cognition, social and environmental parameters, and health. Priority is given to original research, basic and applied, which contributes to the theory, practice, and evaluation of applied psychophysiology and biofeedback. Submissions are also welcomed for consideration in several additional sections that appear in the journal. They consist of conceptual and theoretical articles; evaluative reviews; the Clinical Forum, which includes separate categories for innovative case studies, clinical replication series, extended treatment protocols, and clinical notes and observations; the Discussion Forum, which includes a series of papers centered around a topic of importance to the field; Innovations in Instrumentation; Letters to the Editor, commenting on issues raised in articles previously published in the journal; and select book reviews. Applied Psychophysiology and Biofeedback is the official publication of the Association for Applied Psychophysiology and Biofeedback.
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