全息增强现实在额窦外部入路中的应用。

Application of holographic augmented reality for external approaches to the frontal sinus.

机构信息

Department of Otolaryngology-Head & Neck Surgery, Stanford University School of Medicine, Stanford, CA.

Faculty of Medicine, University of Brasília, Brasilia, Brazil.

出版信息

Int Forum Allergy Rhinol. 2020 Jul;10(7):920-925. doi: 10.1002/alr.22546. Epub 2020 May 3.

Abstract

BACKGROUND

External approaches to the frontal sinus such as osteoplastic flaps are challenging because they require blind entry into the sinus, posing risks of injury to the brain or orbit. Intraoperative computed tomography (CT)-based navigation is the current standard for planning the approach, but still necessitates blind entry into the sinus. The aim of this work was to describe a novel technique for external approaches to the frontal sinus using a holographic augmented reality (AR) application.

METHODS

Our team developed an AR system to create a 3-dimensional (3D) hologram of key anatomical structures, based on CT scans images. Using Magic Leap AR goggles for visualization, the frontal sinus hologram was aligned to the surface anatomy in 6 fresh cadaveric heads' anatomic boundaries, and the boundaries of the frontal sinus were demarcated based on the margins of the fused image. Trephinations and osteoplastic flap approaches were performed. The specimens were re-scanned to assess the accuracy of the osteotomy with respect to the actual frontal sinus perimeter.

RESULTS

Registration and surgery were completed successfully in all specimens. Registration required an average of 2 minutes. The postprocedure CT showed a mean difference of 1.4 ± 4.1 mm between the contour of the osteotomy and the contour of the frontal sinus. One surgical complication (posterior table perforation) occurred (16%).

CONCLUSION

We describe proof of concept of a novel technique utilizing AR to enhance external approaches to the frontal sinus. Holographic AR-enhanced surgical navigation holds promise for enhanced visualization of target structures during surgical approaches to the sinuses.

摘要

背景

额窦的外部入路,如骨成形皮瓣,具有挑战性,因为它们需要盲目进入窦腔,存在损伤大脑或眼眶的风险。术中基于计算机断层扫描 (CT) 的导航是目前规划入路的标准,但仍需要盲目进入窦腔。本研究旨在描述一种使用全息增强现实 (AR) 应用程序进行额窦外部入路的新方法。

方法

我们的团队开发了一种 AR 系统,该系统基于 CT 扫描图像创建关键解剖结构的 3 维 (3D) 全息图。使用 Magic Leap AR 护目镜进行可视化,将额窦全息图与 6 个新鲜尸体头部解剖边界的表面解剖结构对齐,并根据融合图像的边缘划定额窦的边界。进行颅骨切开术和骨成形皮瓣入路。对标本进行重新扫描,以评估截骨术相对于实际额窦周长的准确性。

结果

所有标本均成功完成注册和手术。注册平均需要 2 分钟。术后 CT 显示截骨术轮廓与额窦轮廓之间的平均差异为 1.4±4.1mm。发生 1 例手术并发症(后板穿孔)(16%)。

结论

我们描述了一种利用 AR 增强额窦外部入路的新技术的概念验证。全息 AR 增强手术导航有望在鼻窦手术入路中增强目标结构的可视化。

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