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Better Instructions for Use to Improve Reusable Medical Equipment (RME) Sterility

机译:改善可重复使用医疗设备(RME)无菌性的更好使用说明

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Objective: The objective was to evaluate human-factors-based instructional aids on endoscope reprocessing. Background: The project stems from recent failures in reprocessing (cleaning) endoscopes,contributing to the spread of harmful bacterial and viral agents between patients. A previous study discovered three themes that represent a majority of problems: (1) lack of visibility (parts and tools were difficult to identify), (2) high memory demands, and (3) insufficient feedback. Method: In an effort to improve completion rate and reduce error, the authors designed instructional aids utilizing human factors principles that would replace existing manufacturer-provided visual aids. Then, they conducted a usability test, which compared the endoscope reprocessing performance of novices using the standard manufacturer-provided visual aids and the new instructional aids. Results: Participants in the experimental group successfully completed 87.1% of the reprocessing procedure with the use of the instructional aids, compared to 44.7% in the control group using only existing support materials. Of 60 subtasks, 27 showed significant improvement in completion rates. Conclusion: When given an instructional aid designed with human factors principles, participants were able to more successfully complete the reprocessing task. This resulted in an endoscope that was more likely to be safe for use on patients. Application: The human factors design elements utilized to create the instructional aids could be transferred to a dynamic electronic-based system to improve patient safety.
机译:目的:目的是评估基于人为因素的内窥镜后处理指导教学。背景:该项目源于内窥镜在后处理(清洁)方面的近期失败,导致有害细菌和病毒制剂在患者之间扩散。先前的研究发现了代表大多数问题的三个主题:(1)缺乏可见性(零件和工具难以识别),(2)较高的内存需求以及(3)反馈不足。方法:为了提高完成率和减少错误,作者使用人为因素原理设计了教学辅助设备,以取代现有制造商提供的视觉辅助设备。然后,他们进行了可用性测试,该测试使用制造商提供的标准视觉辅助工具和新的指导性辅助工具比较了新手的内窥镜再处理性能。结果:实验组的参与者使用指导性工具成功地完成了87.1%的后处理程序,而对照组仅使用现有的支持材料就达到了44.7%。在60个子任务中,有27个任务的完成率显着提高。结论:当获得了根据人为因素原理设计的教学帮助时,参与者能够更成功地完成后处理任务。这导致内窥镜更可能对患者安全使用。应用:用于创建教学辅助工具的人为因素设计元素可以转移到基于动态电子系统,以提高患者安全性。

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