Rodriguez-Florido Miguel Angel, Maynar Manuel
University of Las Palmas de Gran Canaria, Las Palmas de Gran Canaria, Canary Islands, Spain.
MOTIVA Simulation and Education based on Technology Lab, Teaching Insular, Children's and Women's Hospital, Las Palmas de Gran Canaria, Spain.
MedEdPublish (2016). 2024 Oct 18;14:54. doi: 10.12688/mep.20445.2. eCollection 2024.
The metaverse is based on immersive technologies such as virtual and augmented reality, body tracking, tactile sensation, etc. A growing number of studies are demonstrating the potential of the metaverse as an attractive resource for learning medicine. However, in practice, medical teachers and students often encounter significant challenges when utilizing the underlying technologies, potentially leading to frustrating learning experiences. A significant part of the teaching time is often devoted to troubleshooting technical issues with the metaverse, and the medical content itself taking a backseat until students become proficient in navigating the metaverse environment. Therefore, it is essential to fit the metaverse's underlying technologies specifically for medical education, minimizing technical hurdles for both teachers and students. In this paper, we deal with this challenge and we present a collection of practical tips that serves as a guide for medical educators making decisions in this emerging field, where they may lack prior experience. Drawing on our observation with a cohort of 776 medical students, we conclude how to effectively identify, design, or implement educational applications tailored for efficient medical learning through the metaverse. Our work may support teachers considering metaverse learning platforms for their classrooms and it is a beneficial reference for the medical education community during the initial stages of implementing the metaverse for teaching.
元宇宙基于虚拟现实、增强现实、身体追踪、触觉等沉浸式技术。越来越多的研究表明,元宇宙作为一种引人注目的医学学习资源具有潜力。然而,在实践中,医学教师和学生在使用基础技术时常常遇到重大挑战,这可能导致令人沮丧的学习体验。教学时间的很大一部分往往用于解决元宇宙的技术问题,而医学内容本身则退居其次,直到学生熟练掌握在元宇宙环境中导航。因此,必须使元宇宙的基础技术专门适用于医学教育,最大限度地减少教师和学生面临的技术障碍。在本文中,我们应对这一挑战,并提供一系列实用技巧,为在这个他们可能缺乏先前经验的新兴领域做出决策的医学教育工作者提供指导。基于我们对776名医学生的观察,我们总结了如何通过元宇宙有效地识别、设计或实施为高效医学学习量身定制的教育应用程序。我们的工作可能会支持考虑在课堂上使用元宇宙学习平台的教师,并且在将元宇宙用于教学的初始阶段,它对医学教育界是一个有益的参考。