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Comparison of Augmented Reality-Based and Conventional Training Methods for Radiographic Positioning in Second-Year
1Department of Radiological Technology, Faculty of Fukuoka Medical Technology, Teikyo University, Omuta, Fukuoka, Japan.
Introduction:
In Japanese training schools for radiologic technologists, improving students' practical skills presents an educational challenge. To address this issue, an augmented reality (AR)-based visual assistance tool for radiographic positioning training was developed. This study aimed to evaluate and compare the effectiveness of a previously developed AR tool with conventional training methods.
Methods:
Fifty-seven second-year radiologic technology students were randomly divided into two groups: an experimental group (n = 29) trained with AR and a control group (n = 28) trained with physical auxiliary tools. Both groups practised positioning the torso at 35° and 45° for 1.5 min each. The timeframe aligned with the typical time allocated to each student during traditional hands-on training. Proficiency tests were conducted 1 and 4 weeks after training to evaluate the accuracy of the angles.
Results:
In the test conducted 1 week after training, the experimental group demonstrated significantly smaller errors than the control group (p = 0.002). However, in the test administered 4 weeks after training, although the experimental group continued to show smaller errors, the difference was not statistically significant (p = 0.066).
Conclusion:
AR-based training can enhance radiographic positioning training. However, a single brief session is considered insufficient for maintaining long-term learning effects. Continuous use of AR is warranted for achieving long-term educational effectiveness. Future research is needed to optimise AR training methods and determine the impact on students' clinical training performance and postgraduate proficiency.

