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将增强现实技术融入当代医学院课程中的解剖学教育。

Incorporating Augmented Reality Into Anatomy Education in a Contemporary Medical School Curriculum.

作者信息

Boyanovsky Boris B, Belghasem Mostafa, White Brett A, Kadavakollu Samuel

机构信息

Department of Biomedical Sciences, Rocky Vista University, Ivins, USA.

Department of Biomedical Sciences, Kaiser Permanente Bernard J. Tyson School of Medicine, Pasadena, USA.

出版信息

Cureus. 2024 Apr 2;16(4):e57443. doi: 10.7759/cureus.57443. eCollection 2024 Apr.

Abstract

Anatomy education in the medical school curriculum has encountered considerable challenges during the last decade. The exponential growth of medical science has necessitated a review of the classical ways to teach anatomy to shorten the time students spend dissecting, allowing them to acquire critical, new knowledge in other disciplines. Augmented and mixed reality technologies have developed tremendously during the last few years, offering a wide variety of possibilities to deliver anatomy education to medical students. Here, we provide a methodology to develop, deliver, and assess an anatomy laboratory course using augmented reality applications. We suggest a novel approach, based on Microsoft HoloLens II, to develop systematic sequences of holograms to reproduce human dissection. The laboratory sessions are prepared before classes and include a series of holograms revealing sequential layers of the human body, isolated structures, or a combination of structures forming a system or a functional unit. The in-class activities are conducted either as one group of students ( = 8-9) with a leading facilitator or small groups of students ( = 4) with facilitators ( = 4) joining the groups for discussion. The same or different sessions may be used for the assessment of students' knowledge. Although currently in its infancy, the use of holograms will soon become a substantial part of medical education. Currently, several companies are offering a range of useful learning platforms, from anatomy education to patient encounters. By describing the holographic program at our institution, we hope to provide a roadmap for other institutions looking to implement a systematic approach to teaching anatomy through holographic dissection. This approach has several benefits, including a sequential 3D presentation of the human body with varying layers of dissection, demonstrations of facilitator-selected three-dimensional (3D) anatomical regions or specific body units, and the option for classroom or remote facilitation, with the ability for students to review each session individually.

摘要

在过去十年中,医学院课程中的解剖学教育面临着诸多挑战。医学科学的指数级增长使得有必要对传统的解剖学教学方法进行审视,以缩短学生用于解剖的时间,使他们能够获取其他学科的关键新知识。在过去几年里,增强现实和混合现实技术取得了巨大发展,为向医学生提供解剖学教育提供了广泛的可能性。在此,我们提供一种利用增强现实应用来开发、讲授和评估解剖学实验室课程的方法。我们建议采用一种基于微软HoloLens II的新颖方法,来开发用于重现人体解剖的系统化全息图序列。实验课程在课前准备,包括一系列揭示人体连续层次、孤立结构或构成一个系统或功能单元的结构组合的全息图。课堂活动可以由一名主导协调员带领一组学生(8 - 9人)进行,也可以分成小组(每组4人),由4名协调员加入各小组进行讨论。可以使用相同或不同的课程来评估学生的知识。虽然全息图目前尚处于起步阶段,但它很快将成为医学教育的重要组成部分。目前,几家公司正在提供一系列有用的学习平台,从解剖学教育到患者诊疗。通过描述我们机构的全息课程,我们希望为其他希望通过全息解剖实施系统解剖学教学方法的机构提供一份路线图。这种方法有几个优点,包括对人体进行不同解剖层次的连续3D展示、协调员选择的三维(3D)解剖区域或特定身体单元的演示,以及课堂或远程指导的选项,学生能够单独复习每一节课。

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