Department of Orthopaedic Surgery, Khoo Teck Puat Hospital, Yishun Central, Singapore.
Subject Matter Expert (Medical Education), MedEdTech, London, UK.
ANZ J Surg. 2022 Sep;92(9):2072-2081. doi: 10.1111/ans.17772. Epub 2022 May 17.
There have been reduced opportunities for surgical skill acquisition due to the COVID-19 pandemic and the regulated training hours. Despite these challenges, self-regulated learning allows trainees to learn continuously, and one form of this is through mental practice and motor imagery. The study aimed to design and develop an online basic micro suturing training module for skill acquisition for self-regulated learning using a low-fidelity rubber glove model.
This study utilized a design and developmental research framework and Mayer's multimedia theory guidelines. The primary author created an online instructional module on micro suturing based on the ADDIE instructional design model. This module was then evaluated in a pilot study comparing the new training model to traditional methods of learning using an experimental design.
This study describes the use of Design and Development Research to create a new model for surgical skill training and a tool for producing instructional materials and learning products for online learning. The product was evaluated using an experimental design and showed a significant effect on the quality of motor skill outcome and the richness of motor imagery using the resource developed in the research.
This study describes the methodological approach of a design and developmental framework to create an online training module for micro suturing which has significant utility in hand surgery.
由于 COVID-19 大流行和受规管的培训时间,外科技能的获取机会减少了。尽管面临这些挑战,自我调节学习仍允许学员持续学习,其中一种形式是通过心理练习和运动意象。本研究旨在设计和开发一种基于低保真橡胶手套模型的在线基本显微缝合技能获取自主学习训练模块。
本研究利用设计和发展研究框架以及 Mayer 的多媒体理论指南。主要作者根据 ADDIE 教学设计模型创建了一个在线显微缝合教学模块。然后,该模块在一项试点研究中进行了评估,该研究使用实验设计将新的培训模型与传统学习方法进行了比较。
本研究描述了使用设计和开发研究来创建一种新的手术技能培训模型以及用于在线学习的制作教学材料和学习产品的工具。该产品使用实验设计进行了评估,结果显示使用研究中开发的资源对运动技能结果的质量和运动意象的丰富度有显著影响。
本研究描述了一种设计和发展框架的方法学方法,用于创建一种用于显微缝合的在线培训模块,在手外科中具有重要的实用价值。