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Updated: Jan 15, 2026

Assessing the Multiple Dimensions of Engagement to Characterize Learning: A Neurophysiological Perspective
Published on: July 1, 2015
EEG-based functional connectivity patterns during boredom in an educational context
Rajamanickam Yuvaraj1, N P Guhan Seshadri2, Sampathraman Samyuktha3
1Science of Learning in Education Centre (SoLEC), National Institute of Education, Nanyang Technological University, 1 Nanyang Walk, Singapore, 637616, Singapore. yuvaraj.rajamanickam@nie.edu.sg.
None:
Boredom is a common yet understudied emotional state that can adversely impact cognitive performance, motivation, and mental well-being. Gaining insight into its neural basis is crucial for developing strategies to manage or reduce its impact across various settings, including education contexts. The present study investigated brain functional connectivity during boredom in an educational context using electroencephalography (EEG). It was hypothesized that the brain exhibits distinct connections during the experience of boredom. Eighty-four healthy adults (mean age = 26.90 ± 5.29 years) were asked to watch two educational videos designed to induce boredom or neutral states while their EEG signals were captured. Functional connectivity matrices were constructed using coherence in traditional EEG frequency bands. Clustering coefficient [Formula: see text], characteristic path length [Formula: see text], global efficiency [Formula: see text], local efficiency [Formula: see text], and node strength [Formula: see text] were calculated to compare scalp-level network characteristics between boredom and neutral states. The results showed significant differences in functional connectivity in the alpha, beta, and gamma bands. Boredom was characterized as having significantly higher [Formula: see text] and lower [Formula: see text]in the alpha, beta, and gamma bands, relative to the neutral condition. Gamma band [Formula: see text]and [Formula: see text] were also found to be higher during boredom. The study findings suggest that boredom is associated with distinct patterns of brain functional connectivity, potentially reflecting increased internal processing. The study findings contribute to the broader field of affective neuroscience by highlighting how boredom can influence functional brain network activity in educational contexts.
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