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Development and Implementation of a Three-dimensional Printed Knee Joint Simulation Model Using the Consolidated Framework for Implementation Research: Addressing Local Simulation Needs

机译:使用合并框架进行实施研究的三维打印膝关节仿真模型的开发和实现:满足本地仿真需求

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Background Knee joint injections and aspirations are essential procedures for medical students, residents, and primary care physicians?to master. Simulation-based training has been shown to improve learner confidence and performance scores in knee joint injections. Current knee joint simulators are expensive, ranging from hundreds to thousands of dollars. Using three-dimensional (3D) printing and gel layering technology, we designed and manufactured an inexpensive simulator. The aim of this implementation study was to gather the opinions of local simulation specialists and administrators regarding the simulator's curricular implementation. Methods Using the Consolidated Framework for Implementation Research (CFIR), we developed a 31-item?implementation survey.?It was administered to local simulation specialists and administrators. The purpose of the survey was to identify the aspects of the simulator that they deemed important to the implementation process, as well as obtain their qualitative feedback about the design. Results In total, three participants?completed the survey. There were 16 survey items that were rated as very important,?including?local manufacturing, appropriate planning, internal development, evidence-based development,?and reasonable costs. Another nine items were deemed important, including the adaptability of the product and ability to test the product. The simulation specialists also expressed some concerns they had with the design of the simulator?and made suggestions about how we could address these concerns. Conclusions Local development and manufacturing, coupled with appropriate pre-implementation planning and efficacy evidence, were selected as factors that would potentially contribute to the success of the implementation of the simulator in the?local curriculum.
机译:背景技术膝关节注射和抽吸是医学生,住院医师和初级保健医生掌握的基本程序。基于模拟的训练已显示可以提高学习者在膝关节注射中的自信心和表现得分。当前的膝关节模拟器价格昂贵,从数百美元到数千美元不等。使用三维(3D)打印和凝胶分层技术,我们设计并制造了一种廉价的模拟器。这项实施研究的目的是收集本地模拟专家和管理员对模拟器的课程实施的意见。方法我们使用实施研究综合框架(CFIR),开发了31个项目的实施调查。调查由本地仿真专家和管理人员完成。该调查的目的是确定模拟器对实施过程至关重要的方面,并获得有关设计的定性反馈。结果总共有3名参与者完成了调查。被评定为非常重要的16个调查项目包括本地制造,适当的计划,内部开发,基于证据的开发以及合理的成本。认为另外九项重要,包括产品的适应性和测试产品的能力。模拟专家还表达了他们对模拟器设计的一些担忧,并就如何解决这些担忧提出了建议。结论选择本地开发和制造,加上适当的实施前计划和有效性证据,作为可能有助于在本地课程中成功实施模拟器的因素。

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