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如果您无法看到,我们如何向您展示?试用交互式三维 micro-CT 模型在医学教育中的应用。

How Can We Show You, If You Can't See It? Trialing the Use of an Interactive Three-Dimensional Micro-CT Model in Medical Education.

机构信息

Medical School, College of Health and Medicine, Australian National University, Canberra, Australian Capital Territory, Australia.

出版信息

Anat Sci Educ. 2020 Mar;13(2):206-217. doi: 10.1002/ase.1890. Epub 2019 May 21.

Abstract

Teaching internal structures obscured from direct view is a major challenge of anatomy education. High-fidelity interactive three-dimensional (3D) micro-computed tomography (CT) models with virtual dissection present a possible solution. However, their utility for teaching complex internal structures of the human body is unclear. The purpose of this study was to investigate the use of a realistic 3D micro-CT interactive visualization computer model to teach paranasal sinus anatomy in a laboratory setting during pre-clinical medical training. Year 1 (n = 79) and Year 2 (n = 59) medical students undertook self-directed activities focused on paranasal sinus anatomy in one of two laboratories (traditional laboratory and 3D model). All participants completed pre and posttests before and after the laboratory session. Results of regression analyses predicting post-laboratory knowledge indicate that, when students were inexperienced with the 3D computer technology, use of the model was detrimental to learning for students with greater prior knowledge of the relevant anatomy (P < 0.05). For participants experienced with the 3D computer technology, however, the use of the model was detrimental for students with less prior knowledge of the relevant anatomy (P < 0.001). These results emphasize that several factors need to be considered in the design and effective implementation of such models in the classroom. Under the right conditions, the 3D model is equal to traditional laboratory resources when used as a learning tool. This paper discusses the importance of preparatory training for students and the technical consideration necessary to successfully integrate such models into medical anatomical curricula.

摘要

从直接观察中隐藏的内部结构的教学是解剖学教育的主要挑战。高保真的交互式三维(3D)微计算机断层扫描(CT)模型与虚拟解剖提供了一种可能的解决方案。然而,它们在教授人体复杂内部结构方面的效用尚不清楚。本研究的目的是调查在临床前医学培训期间在实验室环境中使用真实的 3D 微 CT 交互式可视化计算机模型教授鼻窦解剖结构的情况。一年级(n=79)和二年级(n=59)医学生在两个实验室(传统实验室和 3D 模型)之一中进行了以鼻窦解剖结构为重点的自主活动。所有参与者都在实验室课程前后完成了预测试和后测试。预测实验室后知识的回归分析结果表明,当学生对 3D 计算机技术不熟悉时,对于具有相关解剖学先前知识的学生来说,使用模型对学习不利(P<0.05)。但是,对于熟悉 3D 计算机技术的参与者而言,对于具有较少相关解剖学先前知识的学生来说,使用模型对学习不利(P<0.001)。这些结果强调,在设计和在课堂中有效实施此类模型时,需要考虑几个因素。在适当的条件下,当将 3D 模型用作学习工具时,其与传统实验室资源相当。本文讨论了学生的预备培训的重要性,以及成功将此类模型整合到医学解剖课程中所需的技术考虑因素。

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