Department of Psychology, University of British Columbia, Vancouver, British Columbia, Canada.
Department of Foundational Medical Studies, Oakland University William Beaumont School of Medicine, Rochester, Michigan, United States of America.
PLoS One. 2021 Jan 14;16(1):e0245330. doi: 10.1371/journal.pone.0245330. eCollection 2021.
Nurses and surgeons must identify and handle specialized instruments with high temporal and spatial precision. It is crucial that they are trained effectively. Traditional training methods include supervised practices and text-based study, which may expose patients to undue risk during practice procedures and lack motor/haptic training respectively. Tablet-based simulations have been proposed to mediate some of these limitations. We implemented a learning task that simulates surgical instrumentation nomenclature encountered by novice perioperative nurses. Learning was assessed following training in three distinct conditions: tablet-based simulations, text-based study, and real-world practice. Immediately following a 30-minute training period, instrument identification was performed with comparable accuracy and response times following tablet-based versus text-based training, with both being inferior to real-world practice. Following a week without practice, response times were equivalent between real-world and tablet-based practice. While tablet-based training does not achieve equivalent results in instrument identification accuracy as real-world practice, more practice repetitions in simulated environments may help reduce performance decline. This project has established a technological framework to assess how we can implement simulated educational environments in a maximally beneficial manner.
护士和外科医生必须识别和处理具有高时空精度的专业仪器。对他们进行有效的培训至关重要。传统的培训方法包括监督实践和基于文本的学习,这可能会使患者在实践过程中面临不必要的风险,分别缺乏运动/触觉训练。已经提出了基于平板电脑的模拟来缓解其中的一些限制。我们实施了一项学习任务,模拟了新手围手术期护士遇到的手术仪器命名法。在三种不同条件下进行培训后评估学习效果:基于平板电脑的模拟、基于文本的学习和真实世界的实践。在 30 分钟的培训期后,基于平板电脑的训练与基于文本的训练在仪器识别的准确性和响应时间方面具有可比性,两者均低于真实世界的实践。在没有实践的一周后,真实世界和基于平板电脑的实践之间的响应时间相当。虽然基于平板电脑的培训在仪器识别准确性方面无法达到与真实世界实践相同的效果,但在模拟环境中进行更多的练习可能有助于减少性能下降。该项目建立了一个技术框架,以评估我们如何以最有益的方式实施模拟教育环境。