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Updated: May 9, 2026

Cortical Source Analysis of High-Density EEG Recordings in Children
Published on: June 30, 2014
Free play's effect on elementary students' neural activity, affect, and behavior: A randomized crossover study
Erin M Casey1, Brenna Arledge2, Farima Naghash2
1Instructional Leadership and Academic Curriculum, University of Oklahoma, Norman, OK, United States.
Abstract:
Free play, or self-directed play without adult prescription, may support neural and behavioral development during middle childhood; yet elementary-aged children have limited school-based play opportunities. This randomized crossover trial examined free play's effects on electroencephalography (EEG) and behavioral outcomes in 125 children (ages 5-12, grades 1-5) at a high-poverty urban school. Children were randomly assigned to receive 12 weeks of 45-minute weekly free play sessions in fall or spring semester, with the alternate semester serving as control. A subset (n = 52) completed resting EEG and an action observation task at baseline, midpoint, and end-of-year. Results showed significant desynchronization in mu (8-12 Hz) and low beta (13-20 Hz) during action observation, confirming mirror neuron engagement. Free play intervention enhanced the differentiation in alpha/mu and beta power responses between goal-directed and non-goal-directed actions, characterized by greater desynchronization (power decrease) during goal-directed action observation, consistent with increased mirror neuron system engagement. These effects were most pronounced in the fall group. Behavioral measures showed significant improvements in prosocial behaviors η2 = .02 and positive affect η2 = 0.07 during active intervention. Critically, neural changes in beta and gamma frequencies correlated with behavioral improvements, indicating a possible association between neural activity and behavior, though causal mechanisms remain to be determined by future experimental work (Warreyn et al., 2013). Neural effects were temporary, dissipating after intervention ended, while behavioral improvements persisted during active intervention periods. Findings demonstrate that regular free play enhances both sensorimotor neural processing and social-emotional behaviors in elementary children, with implications for school scheduling and educational policy.
