医学教育管理 ›› 2025, Vol. 11 ›› Issue (5): 516-522.doi: 10.3969/j.issn.2096-045X.2025.05.004

• 专题研究 • 上一篇    下一篇

元宇宙5G虚拟座舱RSA在磁共振检查技术课程教学中的应用研究

郁佳琦1,  唐辉1,  马伟伟1,  朱莉1,  陆敏达2,  冯琦1,  周滟1,  彭文献3,  所世腾1,  王嵇1*   

  1. 1.上海交通大学医学院附属仁济医院放射科,上海 200127; 2.西门子数字医疗科技(上海)有限公司,上海 200131; 3.上海健康医学院医学影像学院,上海 201318
  • 收稿日期:2025-07-23 修回日期:2025-09-16 出版日期:2025-10-20 发布日期:2025-11-07
  • 通讯作者: 王嵇 E-mail:jeff1885@126.com
  • 基金资助:
    1.上海交通大学“数智课程”专业课程项目;2.上海申康医院发展中心技术规范化管理和推广项目(SHDC22023202)

Application of Metaverse 5G remote scanning assistant in the teaching of magnetic resonance imaging technology courses

Yu Jiaqi1, Tang Hui1, Ma Weiwei1, Zhu Li1, Lu Minda2, Feng Qi1, Zhou Yan1, Peng Wenxian3, Suo Shiteng1, Wang Ji1*   

  1. 1. Department of Radiology, Ren Ji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai 200127,China; 2. Siemens Healthineers Digital Technology (Shanghai) Co., Ltd., Shanghai 200131,China; 3. School of Medical Imaging, Shanghai University of Medicine & Health Sciences, Shanghai 201318,China
  • Received:2025-07-23 Revised:2025-09-16 Online:2025-10-20 Published:2025-11-07

摘要: 目的 探讨元宇宙5G虚拟座舱远程扫描助手(remote scanning assistant,RSA)对提升磁共振检查技术课程教学效果的影响与价值。方法 以上海健康医学院医学影像学院2021级医学影像技术专业的2个班级共60名学生作为研究对象,在磁共振检查技术课程中,A班30人为试验组,采用5G虚拟座舱RSA技术辅助教学方法;B班30人为对照组,采用传统理论教学方法。以调查问卷形式收集两组学生对于课堂教学效果的评价,并比较其课后的理论考核成绩。结果 调查问卷结果显示在涵盖头颈部、胸腹部、脊柱与四肢关节MRI检查技术的三部分教学内容中,试验组学生在课堂内容的掌握度、临床实践的了解度、学习兴趣的提高度、团队协作的培养度、课堂氛围的活跃度、课堂学习的参与度以及自主能动性的激发度7个方面皆优于对照组,差异有统计学意义(P<0.05)。试验组学生的理论考核成绩也高于对照组[(92.0±3.6)分vs(88.0±6.2)分],差异有统计学意义(P=0.004)。结论 基于元宇宙5G虚拟座舱RSA在磁共振检查技术课程教学中的应用可革新传统授课模式,将磁共振设备引入课堂,打破时空限制,开展沉浸式教学,有效提升学生的学习兴趣与课堂的教学质量。

关键词: 元宇宙, 5G虚拟座舱远程扫描助手, 磁共振成像, 医学影像技术, 沉浸式教学, 课程改革

Abstract: Objective To explore the impact and value of the Metaverse 5G remote scanning assistant (RSA) in enhancing the teaching effectiveness of magnetic resonance imaging (MRI) technology courses.Methods A total of 60 students from two classes of the 2021 Medical Imaging Technology major in the School of Medical Imaging, Shanghai University of Medicine & Health Sciences were selected as the research subjects. Class A (30 students) served as the experimental group and was taught using the 5G RSA auxiliary teaching method, while Class B (30 students) served as the control group and received traditional theoretical teaching method. A questionnaire was used to collect feedback from both groups on teaching effectiveness, and post-course theoretical exam scores were compared. Results The questionnaire results indicated that across the three teaching modules covering MRI examination techniques for the head and neck, chest and abdomen, and spine and joints of the extremities, the experimental group outperformed the control group in seven aspects : mastery of course content, understanding of clinical practice, improvement of learning interest, cultivation of teamwork, vitality of classroom atmosphere, participation in learning activities, and stimulation of autonomous learning ability, with statistically significant differences (P<0.05). The theoretical exam scores of the experimental group were also higher than those of the control group [(92.0±3.6) points vs (88.0±6.2) points], with a statistically significant difference (P=0.004).Conclusion The application of the 5G RSA in MRI technology teaching innovates traditional teaching pattern by bringing advanced MRI equipment into the classroom, breaking time and space limitations, and enabling dynamic immersion teaching that combines theory and practice. This approach effectively enhances students' learning interest and teaching quality, demonstrating broad prospects for future higher education reform.

Key words: Metaverse, 5G remote scanning assistant, magnetic resonance imaging, medical imaging technology, dynamic immersion teaching, curriculum reform

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