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Systematic Review

Augmented Reality Technologies for Radiation Safety Training: A Systematic Review of Sensor Integration and Visualization Approaches

1
Idaho National Laboratory, Idaho Falls, ID 83415, USA
2
Department of Health Physics, Idaho State University, Pocatello, ID 83209, USA
*
Author to whom correspondence should be addressed.
Future Internet 2026, 18(3), 161; https://doi.org/10.3390/fi18030161
Submission received: 2 February 2026 / Revised: 4 March 2026 / Accepted: 11 March 2026 / Published: 19 March 2026
(This article belongs to the Special Issue Human-Computer Interaction and Virtual Reality (VR))

Abstract

This paper presents a comprehensive systematic review examining the application of augmented reality (AR) and sensor technologies for visualizing ionizing radiation in virtual training environments. The review methodology involved systematic identification and analysis of the relevant literature based on predetermined criteria including publication type, year of publication, application domain, and technological approach. The literature search encompassed publications from 2011 to 2021 across four major academic databases: Web of Science, Google Scholar, IEEE Xplore, and Scopus. Through rigorous screening following PRISMA 2020 guidelines, 23 research articles met the inclusion criteria for detailed analysis. From 404 initial database records, 360 were excluded during title/abstract screening (primarily for lacking AR components, radiation focus, or training applications) and 4 during full-text assessment (all for lacking sensor integration). The findings reveal that AR-based ionizing radiation visualization has been successfully implemented across diverse domains, including nuclear facility operations, medical procedures, CERN research activities, and educational and monitoring applications. The analysis identified multiple dimensions of impact, encompassing distinct benefits, emerging opportunities, and implementation challenges associated with AR deployment for ionizing radiation training. Each of these dimensions is comprehensively examined and documented within this review. Additionally, this study identifies critical research gaps that currently limit the full potential of AR technology in supporting ionizing radiation training programs. These gaps are systematically analyzed and discussed to establish clear directions for future research endeavors in this emerging field.
Keywords: augmented reality; sensor; virtual training; ionizing radiation; radiation safety; visualization augmented reality; sensor; virtual training; ionizing radiation; radiation safety; visualization

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MDPI and ACS Style

Khadka, R.; Yang, X.; Dunker, J.; Koudelka, J. Augmented Reality Technologies for Radiation Safety Training: A Systematic Review of Sensor Integration and Visualization Approaches. Future Internet 2026, 18, 161. https://doi.org/10.3390/fi18030161

AMA Style

Khadka R, Yang X, Dunker J, Koudelka J. Augmented Reality Technologies for Radiation Safety Training: A Systematic Review of Sensor Integration and Visualization Approaches. Future Internet. 2026; 18(3):161. https://doi.org/10.3390/fi18030161

Chicago/Turabian Style

Khadka, Rajiv, Xingyue Yang, Jack Dunker, and John Koudelka. 2026. "Augmented Reality Technologies for Radiation Safety Training: A Systematic Review of Sensor Integration and Visualization Approaches" Future Internet 18, no. 3: 161. https://doi.org/10.3390/fi18030161

APA Style

Khadka, R., Yang, X., Dunker, J., & Koudelka, J. (2026). Augmented Reality Technologies for Radiation Safety Training: A Systematic Review of Sensor Integration and Visualization Approaches. Future Internet, 18(3), 161. https://doi.org/10.3390/fi18030161

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