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Accepted for/Published in: JMIR Medical Education

Date Submitted: Jun 11, 2026
Date Accepted: Sep 3, 2026

The final, peer-reviewed published version of this preprint can be found here:

Development and Educational Evaluation of a Radiation Visualization System in a Virtual Reality Training Module for Radiopharmaceutical Administration: Mixed Methods Study of Students’ Learning Experiences

Kakimoto A, Fujise D, Watanabe S, Otaka Y, Minemoto S, Yasumatsu A, Hasegawa S

Development and Educational Evaluation of a Radiation Visualization System in a Virtual Reality Training Module for Radiopharmaceutical Administration: Mixed Methods Study of Students’ Learning Experiences

JMIR Med Educ 2026;12:e104397

DOI: 10.2196/104397

PMID: 42813833

Development and Educational Evaluation of a Radiation Visualization System in a Virtual Reality Training Module for Radiopharmaceutical Administration: A Mixed-Methods Study of Students’ Learning Experiences

  • Akihiro Kakimoto; 
  • Daisuke Fujise; 
  • Shota Watanabe; 
  • Yutaka Otaka; 
  • Sakura Minemoto; 
  • Ayaka Yasumatsu; 
  • Shin Hasegawa

ABSTRACT

Background:

Our research group had previously developed a virtual reality (VR) training module for radiopharmaceutical administration focusing on procedural skills and patient interactions. The module’s educational effectiveness was validated using objective measures such as electroencephalography and mood assessment.

Objective:

We aimed to extend the module by integrating a radiation visualization system that renders otherwise invisible radiation fields within an immersive VR environment and to compare students’ learning experiences associated with the module with those associated with conventional hands-on training.

Methods:

Twenty students enrolled in a radiological technician training program participated in this study. Students’ learning experiences were evaluated using Likert-scale-based questionnaires together with qualitative analysis of open-ended responses.

Results:

VR-based training was associated with significantly higher ratings for students’ conceptual understanding of radiation behavior, radiation safety awareness, learning satisfaction, and self-assessed competency than conventional training. Conversely, perceived realism and immersion were rated significantly higher following conventional training. No significant differences were observed for operational understanding, technical skills, or system usability.

Conclusions:

These findings suggest that the developed VR module offers a safe and repeatable training platform that may support positive perceived learning experiences in radiopharmaceutical administration and radiation safety education.


 Citation

Please cite as:

Kakimoto A, Fujise D, Watanabe S, Otaka Y, Minemoto S, Yasumatsu A, Hasegawa S

Development and Educational Evaluation of a Radiation Visualization System in a Virtual Reality Training Module for Radiopharmaceutical Administration: Mixed Methods Study of Students’ Learning Experiences

JMIR Med Educ 2026;12:e104397

DOI: 10.2196/104397

PMID: 42813833

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