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The Effectiveness of an Interactive 3-Dimensional Computer Graphics Model for Medical Education

机译:交互式三维计算机图形学模型对医学教育的有效性

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Background Medical students often have difficulty achieving a conceptual understanding of 3-dimensional (3D) anatomy, such as bone alignment, muscles, and complex movements, from 2-dimensional (2D) images. To this end, animated and interactive 3-dimensional computer graphics (3DCG) can provide better visual information to users. In medical fields, research on the advantages of 3DCG in medical education is relatively new. Objective To determine the educational effectiveness of interactive 3DCG. Methods We divided 100 participants (27 men, mean (SD) age 17.9 (0.6) years, and 73 women, mean (SD) age 18.1 (1.1) years) from the Health Sciences University of Mongolia (HSUM) into 3DCG (n = 50) and textbook-only (control) (n = 50) groups. The control group used a textbook and 2D images, while the 3DCG group was trained to use the interactive 3DCG shoulder model in addition to a textbook. We conducted a questionnaire survey via an encrypted satellite network between HSUM and Tokushima University. The questionnaire was scored on a 5-point Likert scale from strongly disagree (score 1) to strongly agree (score 5). Results Interactive 3DCG was effective in undergraduate medical education. Specifically, there was a significant difference in mean (SD) scores between the 3DCG and control groups in their response to questionnaire items regarding content (4.26 (0.69) vs 3.85 (0.68), P = .001) and teaching methods (4.33 (0.65) vs 3.74 (0.79), P < .001), but no significant difference in the Web category. Participants also provided meaningful comments on the advantages of interactive 3DCG. Conclusions Interactive 3DCG materials have positive effects on medical education when properly integrated into conventional education. In particular, our results suggest that interactive 3DCG is more efficient than textbooks alone in medical education and can motivate students to understand complex anatomical structures.
机译:背景技术医学专业的学生通常很难从2维(2D)图像获得3维(3D)解剖结构的概念性理解,例如骨骼对齐,肌肉和复杂的运动。为此,动画和交互式3维计算机图形(3DCG)可以为用户提供更好的视觉信息。在医学领域,对3DCG在医学教育中的优势的研究相对较新。目的确定交互式3DCG的教学效果。方法我们将来自蒙古健康科学大学(HSUM)的100名参与者(27名男性,平均(SD)年龄17.9(0.6)岁,73名女性,平均(SD)年龄18.1(1.1)岁)分为3DCG(n = 50)和仅教科书(对照组)(n = 50)组。对照组使用教科书和2D图像,而3DCG组则经过培训,除了使用教科书外,还使用交互式3DCG肩部模型。我们通过HSUM和德岛大学之间的加密卫星网络进行了问卷调查。从极不同意(评分1)到强烈同意(评分5),以5点Likert量表对问卷进行评分。结果交互式3DCG在本科医学教育中非常有效。具体而言,在3DCG和对照组对问卷内容的回答(4.26(0.69)vs 3.85(0.68),P = .001)和教学方法(4.33(0.65)方面,平均(SD)得分存在显着差异。 )vs 3.74(0.79),P <.001),但网络类别没有显着差异。与会者还就交互式3DCG的优势提供了有意义的评论。结论交互式3DCG资料正确整合到常规教育中后,对医学教育会产生积极影响。特别是,我们的研究结果表明,交互式3DCG在医学教育中比单独使用教科书更为有效,并且可以激发学生理解复杂的解剖结构。

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