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Updated: May 28, 2026

Simultaneous Application of Transcranial Direct Current Stimulation during Virtual Reality Exposure
Published on: January 18, 2021
Virtual Reality-Based Training in Radiologic Technology for Contrast-Enhanced Computed Tomography Brain Imaging:
Jongwat Cheewakul1,2, Natee Ina1, Pichapat Kanpanluek1
1Department of Radiology, Faculty of Medicine, Prince of Songkla University, Hat Yai, Songkhla, Thailand.
Virtual reality (VR) training in radiologic technology (RT) shows comparable knowledge gains to traditional methods. The RTVR framework offers a scalable solution for procedural education, enhancing student learning without significant differences in outcomes.
Area of Science:
- Medical Education
- Radiologic Technology
- Virtual Reality
Background:
- Radiologic technology (RT) education struggles to bridge theory and practice due to limited clinical opportunities.
- Virtual reality (VR) offers a solution for safe and repeatable practice, but requires a systematic instructional design framework for scalable modules.
Purpose of the Study:
- To evaluate the Radiologic Technology Virtual Reality (RTVR) framework for delivering a contrast-enhanced computed tomography (CECT) brain scan module.
- To assess the RTVR framework's impact on declarative knowledge, technology acceptance, student satisfaction, and physiological responses.
Main Methods:
- An open-label, randomized controlled trial involving 36 RT students comparing a VR module (RTVR framework) with conventional instruction.
- The VR group used a 360-degree video-based module for 20 minutes; the control group used standard materials.
- Declarative knowledge gain was the primary outcome, assessed via multiple-choice tests; secondary outcomes included technology acceptance and physiological responses.
Main Results:
- Both VR and conventional methods yielded substantial declarative knowledge gains, with no statistically significant difference between groups.
- Students reported high technology acceptance and satisfaction with the VR module.
- Physiological monitoring indicated stable blood pressure and reduced heart rate during VR immersion; no adverse events were reported.
Conclusions:
- The RTVR framework provides a scalable and feasible approach to creating procedural VR content for radiologic technology education.
- The RTVR framework serves as an effective supplement to RT curricula for knowledge acquisition, with outcomes comparable to conventional instruction.
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