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Face and content validity of a novel, web-based otoscopy simulator for medical education.

机译:用于医学教育的新型基于网络的耳镜模拟器的面部和内容有效性。

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摘要

BACKGROUND: Despite the fact that otoscopy is a widely used and taught diagnostic tool during medical training, errors in diagnosis are common. Physical otoscopy simulators have high fidelity, but they can be expensive and only a limited number of students can use them at a given time.OBJECTIVES: 1) To develop a purely web-based otoscopy simulator that can easily be distributed to students over the internet. 2) To assess face and content validity of the simulator by surveying experts in otoscopy.METHODS: An otoscopy simulator, OtoTrain™, was developed at Western University using web-based programming and Unity 3D. Eleven experts from academic institutions in North America were recruited to test the simulator and respond to an online questionnaire. A 7-point Likert scale was used to answer questions related to face validity (realism of the simulator), content validity (expert evaluation of subject matter and test items), and applicability to medical training.RESULTS: The mean responses for the face validity, content validity, and applicability to medical training portions of the questionnaire were all ≤3, falling between the \u22Agree\u22, \u22Mostly Agree\u22, and \u22Strongly Agree\u22 categories. The responses suggest good face and content validity of the simulator. Open-ended questions revealed that the primary drawbacks of the simulator were the lack of a haptic arm for force feedback, a need for increased focus on pneumatic otoscopy, and few rare disorders shown on otoscopy.CONCLUSION: OtoTrain™ is a novel, web-based otoscopy simulator that can be easily distributed and used by students on a variety of platforms. Initial face and content validity was encouraging, and a skills transference study is planned following further modifications and improvements to the simulator.
机译:背景:尽管耳镜是医学培训期间被广泛使用和教授的诊断工具,但诊断错误仍然很普遍。物理耳镜模拟器具有很高的保真度,但价格昂贵,并且在一定时间内只能使用有限的学生。目标:1)开发纯基于网络的耳镜模拟器,可以轻松地将其分发给学生。 2)由耳镜检查专家评估模拟器的面部和内容有效性。方法:西方大学的耳镜模拟器OtoTrain™是使用基于Web的编程和Unity 3D开发的。招募了来自北美学术机构的11名专家来测试模拟器并回答在线问卷。使用7点李克特量表来回答与面部有效性(模拟器的真实性),内容有效性(主题和测试项目的专家评估)以及医学培训的适用性有关的问题。结果:面部有效性的平均响应,调查问卷的内容有效性和对医学培训部分的适用性均≤3,介于\ u22Agree \ u22,\ u22Mostly Agree \ u22和\ u22Strongly Agree \ u22类别之间。响应表明模拟器具有良好的面孔和内容有效性。开放式问题表明,模拟器的主要缺点是缺少用于力反馈的触觉臂,需要更多地关注气动耳镜检查以及耳镜检查中很少出现的罕见疾病。结论:OtoTrain™是一种新颖的网络基于耳镜的模拟器,可以方便学生在各种平台上分发和使用。最初的面孔和内容有效性令人鼓舞,并且在对模拟器进行进一步修改和改进之后,计划进行技能迁移研究。

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