Raith Alexander, Kamp Christoph, Stoiber Christina, Jakl Andreas, Wagner Markus
Department of Health Sciences-Radiologic Technology FH Campus Wien, University of Applied Sciences, 1100 Wien, Austria.
Institute of Creative Media Technologies, St. Pölten University of Applied Sciences, 3100 St. Pölten, Austria.
Healthcare (Basel). 2022 Apr 2;10(4):672. doi: 10.3390/healthcare10040672.
Education is an important component of every healthcare system. Patients need to be educated about their planned procedures; healthcare professionals need to be trained in their respective profession. Both patient education and the training of healthcare professionals are often completed in person, which requires resources and is bound to certain times and places. Virtual educational environments can potentially save human and monetary resources, increase learner engagement, and enable users to learn according to their own schedules. This design study describes proofs of concept for two augmented reality-enabled (AR) educational tools, utilizing a Microsoft HoloLens head-mounted display. In the first use case, we demonstrate an AR application which could be used to educate cancer patients about their radiotherapy treatment and potentially reduce patient anxiety. The second use case demonstrates an AR training environment, which could complement the practical training of undergraduate radiography students. Two prototypes-VIPER, for patient education, and ARTUR for the training of radiography students-were developed and tested for viability and usability, both based on individual user tests. Both patient and student education were evaluated as viable and usable additions to conventional educational methods, despite being limited in terms of accessibility, usability, and fidelity. Suitable hardware is becoming more accessible and capable, and higher-fidelity holograms, better utilization of real-world objects, and more intuitive input methods could increase user immersion and acceptance of the technology.
教育是每个医疗保健系统的重要组成部分。需要对患者进行有关其计划手术的教育;医疗保健专业人员需要在各自的专业领域接受培训。患者教育和医疗保健专业人员的培训通常都是亲自完成的,这需要资源,并且受特定的时间和地点限制。虚拟教育环境有可能节省人力和财力资源,提高学习者的参与度,并使用户能够根据自己的时间表进行学习。这项设计研究描述了两种利用微软HoloLens头戴式显示器的增强现实(AR)教育工具的概念验证。在第一个用例中,我们展示了一个AR应用程序,可用于对癌症患者进行放射治疗教育,并有可能减轻患者的焦虑。第二个用例展示了一个AR培训环境,可作为本科放射学学生实践培训的补充。开发了两个原型——用于患者教育的VIPER和用于放射学学生培训的ARTUR,并基于个体用户测试对其可行性和可用性进行了测试。尽管在可访问性、可用性和逼真度方面存在限制,但患者和学生教育都被评估为传统教育方法的可行且可用的补充。合适的硬件正变得更容易获得且功能更强大,更高保真的全息图、对现实世界物体的更好利用以及更直观的输入方法可能会提高用户对该技术的沉浸感和接受度。