Memorial University of Newfoundland, St. John's, NL, Canada.
Can Assoc Radiol J. 2024 Aug;75(3):479-487. doi: 10.1177/08465371241230278. Epub 2024 Feb 16.
Virtual reality (VR) and augmented reality (AR) technology hold potential across many disciplines in medicine to expand the delivery of education and healthcare. VR-AR applications in radiology, in particular, have gained prominence and have demonstrated advantages in many areas within the field. Recently, VR software has emerged to redesign the physical radiology workstation (ie, reading room) to expand the possibilities of diagnostic interpretation. Given the novelty of this technology, there is limited research investigating the potential applications of a simulated radiology workstation. In this review article, we explore VR-simulated reading room technology in its current form and illustrate the practical applications this technology will bring to future radiologists and learners. We also discuss the limitations and barriers to adopting this technology that must be overcome to truly understand its potential benefits. VR reading room technology offers great potential in radiology, but further research is needed to appreciate its benefits and identify areas for improvement. The findings and insights presented in this review contribute to the ongoing discourse on future technological advancements in radiology and healthcare, offering valuable recommendations for further research and practical implementation.
虚拟现实 (VR) 和增强现实 (AR) 技术在医学的许多学科中都具有潜力,可以扩展教育和医疗保健的提供方式。特别是在放射学中,VR-AR 应用已经得到了重视,并在该领域的许多领域展示了优势。最近,出现了 VR 软件来重新设计物理放射学工作站(即阅读室),以扩大诊断解释的可能性。鉴于这项技术的新颖性,关于模拟放射学工作站的潜在应用的研究有限。在这篇综述文章中,我们探讨了 VR 模拟阅读室技术的当前形式,并说明了这项技术将为未来的放射科医生和学习者带来的实际应用。我们还讨论了采用这项技术必须克服的局限性和障碍,以真正了解其潜在的好处。VR 阅读室技术在放射学中有很大的潜力,但需要进一步的研究来了解其好处并确定需要改进的领域。本综述中提出的发现和见解有助于推动放射学和医疗保健领域未来技术进步的持续讨论,为进一步的研究和实际实施提供了有价值的建议。