Development of Virtual Reality Educational Content on Magnetic Resonance Imaging: A Pilot Study.

IF 1.3 4区 医学 Q4 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
Hye Jin Yoo, Sang Min Kim
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引用次数: 0

Abstract

Through virtual reality technology, users experience challenging situations in a virtual world without physical experiences. This study aims to develop educational content using virtual reality to help patients undergoing magnetic resonance imaging and evaluate its usability. This pilot study developed virtual reality educational content using the ADDIE (analysis, design, development, implementation, and evaluation) model. An educational needs assessment targeted 20 experts and patients at a tertiary hospital. The content developed included pre-magnetic resonance imaging nursing, the magnetic resonance imaging process, and post-magnetic resonance imaging nursing. In pre-magnetic resonance imaging nursing, patients completed consent forms and received preparation instructions. The magnetic resonance imaging process included the environment, vision, and noise experienced during the examination. Post-magnetic resonance imaging nursing included precautions. An additional 12 experts and patients subsequently participated in virtual reality implementation and evaluation. Virtual reality evaluation included survey and semistructured face-to-face individual interviews. It scored 96.5 points out of 100 in usability, with little difference between experts' and patients' evaluations. In the qualitative evaluation, virtual reality educational content was revealed to be a useful approach, and the final virtual reality educational content was completed by reflecting the improvements suggested by participants. The findings offer tangible benefits for both healthcare professionals and patients by addressing the challenges associated with magnetic resonance imaging procedures through innovative educational interventions using virtual reality technology. Virtual reality educational content can be used as a practical training method in clinical settings.

磁共振成像虚拟现实教学内容的开发:初步研究。
通过虚拟现实技术,用户可以在没有物理体验的情况下体验虚拟世界中的挑战情况。本研究旨在利用虚拟实境发展教育内容,以协助接受核磁共振成像的病患,并评估其可用性。这项试点研究使用ADDIE(分析、设计、开发、实现和评估)模型开发了虚拟现实教育内容。教育需求评估的对象是一家三级医院的20名专家和病人。开发的内容包括磁共振成像前护理、磁共振成像过程和磁共振成像后护理。在磁共振成像前的护理中,患者填写同意表格并接受准备说明。磁共振成像过程包括检查过程中所经历的环境、视觉和噪声。磁共振成像后护理包括注意事项。随后又有12名专家和患者参与了虚拟现实的实施和评估。虚拟现实评估包括调查和半结构化的面对面个人访谈。它的可用性得分为96.5分(满分100分),专家和患者的评价几乎没有差别。在定性评价中,虚拟现实教育内容是一种有用的方法,最终的虚拟现实教育内容是通过反映参与者提出的改进意见来完成的。通过使用虚拟现实技术的创新教育干预,解决了与磁共振成像程序相关的挑战,这些发现为医疗保健专业人员和患者提供了切实的好处。虚拟现实教学内容可以作为一种实用的临床培训方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cin-Computers Informatics Nursing
Cin-Computers Informatics Nursing 工程技术-护理
CiteScore
2.00
自引率
15.40%
发文量
248
审稿时长
6-12 weeks
期刊介绍: For over 30 years, CIN: Computers, Informatics, Nursing has been at the interface of the science of information and the art of nursing, publishing articles on the latest developments in nursing informatics, research, education and administrative of health information technology. CIN connects you with colleagues as they share knowledge on implementation of electronic health records systems, design decision-support systems, incorporate evidence-based healthcare in practice, explore point-of-care computing in practice and education, and conceptually integrate nursing languages and standard data sets. Continuing education contact hours are available in every issue.
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