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Virtual reality myringotomy simulation with real-time deformation: Development and validity testing

机译:具有实时变形的虚拟现实心肌切开术模拟:开发和有效性测试

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Objectives/Hypothesis: Surgical simulation is becoming an increasingly common training tool in residency programs. The first objective was to implement real-time soft-tissue deformation and cutting into a virtual reality myringotomy simulator. The second objective was to test the various implemented incision algorithms to determine which most accurately represents the tympanic membrane during myringotomy. Study Design: Descriptive and face-validity testing. Methods: A deformable tympanic membrane was developed, and three soft-tissue cutting algorithms were successfully implemented into the virtual reality myringotomy simulator. The algorithms included element removal, direction prediction, and Delaunay cutting. The simulator was stable and capable of running in real time on inexpensive hardware. A face-validity study was then carried out using a validated questionnaire given to eight otolaryngologists and four senior otolaryngology residents. Each participant was given an adaptation period on the simulator, was blinded to the algorithm being used, and was presented the three algorithms in a randomized order. Results: A virtual reality myringotomy simulator with real-time soft-tissue deformation and cutting was successfully developed. The simulator was stable, ran in real time on inexpensive hardware, and incorporated haptic feedback and stereoscopic vision. The Delaunay cutting algorithm was found to be the most realistic algorithm representing the incision during myringotomy (P <.05). The Likert and visual analog scales had strong correlations, suggesting good internal reliability. Conclusions: The first virtual reality myringotomy simulator is being developed and now integrates a real-time deformable tympanic membrane that appears to have face validity. Further development and validation studies are necessary before the simulator can be studied with respect to training efficacy and clinical impact. Laryngoscope, 2012
机译:目标/假设:手术模拟正在成为住院医师计划中越来越普遍的培训工具。第一个目标是实现实时软组织变形并将其切入虚拟现实的切开血管的模拟器中。第二个目标是测试各种实施的切口算法,以确定在进行切开术时最准确地代表鼓膜的方法。研究设计:描述性和面部有效性测试。方法:开发出可变形的鼓膜,并成功地将三种软组织切割算法实现到虚拟现实皮瓣切开术模拟器中。该算法包括元素去除,方向预测和Delaunay切割。该模拟器稳定并且能够在廉价的硬件上实时运行。然后,使用经过验证的问卷对八名耳鼻喉科医生和四名高级耳鼻喉科住院医师进行了面部有效性研究。每个参与者在模拟器上都有一个适应期,对所使用的算法不了解,并以随机顺序展示了这三种算法。结果:成功开发了具有实时软组织变形和切割功能的虚拟现实颅骨切开术模拟器。该模拟器非常稳定,可以在廉价的硬件上实时运行,并集成了触觉反馈和立体视觉。发现Delaunay切割算法是最切合实际的算法,代表着在进行切开术时的切口(P <.05)。利克特量表和视觉模拟量表具有很强的相关性,表明内部可靠性良好。结论:第一个虚拟现实的皮肤切开术模拟器正在开发中,现在集成了一个实时的可变形鼓膜,该膜看起来具有面部有效性。在就模拟器的训练效果和临床影响进行研究之前,有必要进行进一步的开发和验证研究。喉镜,2012年

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