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Augmented Reality-Supported Learning During a Pediatric Neurology Rotation: A Cluster-Randomized Controlled Trial
Turgay Cokyaman1, Ufuk Polat2, Levent Çetinkaya3
1Division of Pediatric Neurology, Department of Pediatrics, Faculty of Medicine, Çanakkale Onsekiz Mart University, Çanakkale, Türkiye.
Journal of Child Neurology
|April 25, 2026
Summary
Augmented reality learning environments (ARLEs) significantly improved medical students' pediatric neurology knowledge compared to standard curricula. ARLEs offer a valuable supplement to traditional teaching methods for enhanced cognitive achievement.
Area of Science:
- Medical Education
- Neurology
- Educational Technology
Background:
- Pediatric neurology rotations face challenges with limited case exposure, potentially underrepresenting key clinical presentations.
- Variable case exposure can hinder comprehensive medical student learning in specialized rotations.
Purpose of the Study:
- To evaluate the impact of augmented reality learning environments (ARLEs) on medical students' cognitive achievement in pediatric neurology.
- To determine if ARLEs enhance learning outcomes beyond the standard pediatric neurology curriculum.
Main Methods:
- A prospective cluster-randomized controlled trial involving 102 medical students allocated to standard curriculum or standard curriculum plus ARLEs via a mobile app.
- Cognitive achievement was measured using a 30-item multiple-choice test, analyzed with mixed-design ANOVA and Welch t-test.
Main Results:
- No significant difference in baseline knowledge between the intervention (ARLEs) and control groups.
- Both groups showed improvement, but the ARLEs group achieved significantly higher posttest scores (P < .001, d = 1.12).
- A strong time × group interaction (P < .001, partial η² = 0.250) indicated greater learning gains with ARLE integration.
Conclusions:
- Augmented reality learning environments (ARLEs) show potential as a valuable short-term adjunct to traditional pediatric neurology education.
- ARLEs can effectively supplement face-to-face instruction, leading to improved cognitive achievement in medical students.
- Further integration of ARLEs may help address limitations in case exposure during pediatric neurology rotations.

