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基于虚拟现实的医学教育评估框架及应用路径研究。

Research on virtual reality-based assessment framework and application path in medical education.

机构信息

Faculty of Military Health Service, Naval Medical University, Shanghai, China.

International Exchange Center for Military Medicine, Naval Medical University, Shanghai, China.

出版信息

PLoS One. 2024 Nov 7;19(11):e0310782. doi: 10.1371/journal.pone.0310782. eCollection 2024.

DOI:10.1371/journal.pone.0310782
PMID:39509405
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11542797/
Abstract

While virtual reality(VR) technology enhances learning, it also places new demands on medical learning evaluation. Verifying the occurrence of learning is a primary issue. To design and implement practical and feasible VR-based learning evaluation based on the immersive learning evaluation framework, the Substitution-Augmentation-Modification-Redefinition (SAMR) model, a VR-based learning evaluation framework, was constructed. This framework included competency, learning objectives, assessment tasks, evaluation data, criteria, and feedback. A comprehensive application pathway was developed, utilizing technological integration frameworks. This pathway includes the selection and implementation processes to offer teachers theoretical direction on evaluating medical learning using VR. Finally, this study performed a learning evaluation utilizing VR. The findings revealed that using VR for evaluation can create a deeply engaging and interactive environment. Participants reported feeling a strong sense of being present in the virtual environment and expressed high acceptance and satisfaction with the VR evaluation process. Furthermore, they believed that VR evaluation offers a comprehensive and practical means of assessing cognitive abilities and receiving feedback. These findings establish that VR evaluation optimise learning assessment and showcase the feasibility of the assessment framework and application path.

摘要

虽然虚拟现实 (VR) 技术增强了学习效果,但它也对医学学习评估提出了新的要求。验证学习的发生是首要问题。为了设计和实施基于沉浸感学习评估框架的实用且可行的基于 VR 的学习评估,构建了基于 VR 的学习评估框架——替代-增强-修改-再定义 (SAMR) 模型。该框架包括能力、学习目标、评估任务、评估数据、标准和反馈。开发了一条全面的应用途径,利用技术集成框架。该途径包括选择和实施过程,为教师提供使用 VR 评估医学学习的理论指导。最后,本研究利用 VR 进行了学习评估。研究结果表明,使用 VR 进行评估可以创造一个沉浸式和互动性强的环境。参与者报告说,他们在虚拟环境中有一种强烈的存在感,并对 VR 评估过程表示高度接受和满意。此外,他们认为 VR 评估提供了一种全面且实用的评估认知能力的方法,并能提供反馈。这些发现证实了 VR 评估可以优化学习评估,并展示了评估框架和应用途径的可行性。

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2
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GMS J Med Educ. 2023 Sep 15;40(5):Doc65. doi: 10.3205/zma001647. eCollection 2023.
3
A scoping review to assess the effects of virtual reality in medical education and clinical care.
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Digit Health. 2023 Feb 26;9:20552076231158022. doi: 10.1177/20552076231158022. eCollection 2023 Jan-Dec.
4
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JMIR Med Educ. 2023 Feb 14;9:e41090. doi: 10.2196/41090.
5
Making sense of competency-based medical education (CBME) literary conversations: A BEME scoping review: BEME Guide No. 78.理解基于能力的医学教育(CBME)文献对话:BEME 范围综述:BEME 指南第 78 号。
Med Teach. 2023 Aug;45(8):802-815. doi: 10.1080/0142159X.2023.2168525. Epub 2023 Jan 20.
6
Perceptions and factors affecting the adoption of digital games for engineering education: a mixed-method research.影响工程教育中数字游戏采用的认知与因素:一项混合方法研究。
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7
Assessment and feedback methods in competency-based medical education.基于能力的医学教育中的评估和反馈方法。
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8
Virtual reality in medical students' education: a scoping review protocol.虚拟现实在医学生教育中的应用:系统评价方案
BMJ Open. 2021 May 26;11(5):e046986. doi: 10.1136/bmjopen-2020-046986.
9
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J Am Acad Dermatol. 2021 Mar;84(3):e179-e180. doi: 10.1016/j.jaad.2020.10.088. Epub 2020 Nov 7.
10
A systematic review and taxonomy of tools for evaluating evidence-based medicine teaching in medical education.系统评价和分类学工具评估医学教育中循证医学教学的方法。
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