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Development of augmented-reality applications in otolaryngology-head and neck surgery

机译:耳鼻喉头和颈部手术中增强现实应用的发展

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Objectives/Hypothesis Augmented reality (AR) allows for the addition of transparent virtual images and video to one's view of a physical environment. Our objective was to develop a head-worn, AR system for accurate, intraoperative localization of pathology and normal anatomic landmarks during open head and neck surgery. Study Design Face validity and case study. Methods A protocol was developed for the creation of three-dimensional (3D) virtual models based on computed tomography scans. Using the HoloLens AR platform, a novel system of registration and tracking was developed. Accuracy was determined in relation to actual physical landmarks. A face validity study was then performed in which otolaryngologists were asked to evaluate the technology and perform a simulated surgical task using AR image guidance. A case study highlighting the potential usefulness of the technology is also presented. Results An AR system was developed for intraoperative 3D visualization and localization. The average error in measurement of accuracy was 2.47 +/- 0.46 millimeters (1.99, 3.30). The face validity study supports the potential of this system to improve safety and efficiency in open head and neck surgical procedures. Conclusions An AR system for accurate localization of pathology and normal anatomic landmarks of the head and neck is feasible with current technology. A face validity study reveals the potential value of the system in intraoperative image guidance. This application of AR, among others in the field of otolaryngology-head and neck surgery, promises to improve surgical efficiency and patient safety in the operating room. Level of Evidence 2b Laryngoscope, 2019
机译:目标/假设增强现实(AR)允许将透明虚拟图像和视频添加到一个人的物理环境的视图。我们的目标是开发一个头部磨损的AR系统,用于在张开头和颈部手术期间进行治疗病理和正常解剖标志性的准确,术语本地化。研究设计面部有效性和案例研究。方法为基于计算机断层扫描扫描创建三维(3D)虚拟模型而开发了协议。使用Hololens AR平台,开发了一种新颖的注册和跟踪系统。准确性与实际物理地标相关。然后进行脸部有效性研究,其中耳鼻喉科医生被要求评估技术并使用AR图像引导进行模拟的外科手术。还提出了一个案例研究,突出了该技术的潜在有用性。结果开发了AR系统,用于术中3D可视化和本地化。测量精度的平均误差为2.47 +/- 0.46毫米(1.99,3.30)。面部有效性研究支持该系统的潜力,以提高开放式和颈部外科手术的安全性和效率。结论AR系统用于准确定位头部和颈部的病理学和正常解剖标签是可行的,目前的技术是可行的。面部有效性研究揭示了系统在术中图像引导中的潜在价值。 AR在耳鼻喉头和颈部手术领域的这种应用,包括提高手术室的手术效率和患者安全性。证据水平2b Laryngoscope,2019年

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