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三维(3D)气道建模和虚拟现实技术在复杂气道狭窄诊断、沟通及手术规划中的应用

Use of Three-Dimensional (3D) Airway Modeling and Virtual Reality for Diagnosis, Communication, and Surgical Planning of Complex Airway Stenosis.

作者信息

Cho Youngjun, Spirou George, Decker Summer J, Ford Jonathan M, Mifsud Matthew, Sommers Eric, Bensoussan Yael

机构信息

Morsani College of Medicine, University of South Florida, Tampa, Florida, USA.

Department of Medical Engineering, University of South Florida, Tampa, Florida, USA.

出版信息

Head Neck. 2025 Apr;47(4):1162-1167. doi: 10.1002/hed.28019. Epub 2024 Dec 5.

Abstract

OBJECTIVE

We hypothesized that a method to segment human airways from clinical cases and import them into a case presentation environment in Virtual Reality (VR) could be developed to model and visualize complex airway stenosis for efficient surgical planning.

METHODS

One normal and two pathological airways modeled from CT scans at a slice thickness of 0.625 mm were processed. A multidisciplinary team composed of airway surgeons, VR engineers, educators, and radiologists collaborated to create a clinically relevant VR rendering and explanatory Narrations of the three clinical cases. Segmentation and postprocessing were completed in the Mimics Innovation Suite v24 from Materialize. Structures were segmented from the level of bifurcation of common carotid arteries to the level of bifurcation of the main bronchi, including cartilaginous and bony airway structures, vessels, and soft tissues. They were then postprocessed into 3D image volumes and imported into syGlass (IstoVisio Inc.), a VR software.

RESULTS

Direct visualization and free manipulation of these 3D airway models within the VR environment provided improved geometrical and anatomical details compared to traditional two-dimensional (2D) CT. Then, specialized presentation and active learning tools developed for scientific communication using the VR environment permitted the creation of VR Narrations to explain pathological cases.

CONCLUSION

The method to segment human airways from clinical cases used in this paper, combined with intuitive VR tools to overlay segmentation and image data in an active learning environment, shows potential in the use of 3D airway modeling and VR in clinical practice for the description and surgical planning of complex airways. Further work is needed to validate the use of these models in clinical practice and patient education.

LEVEL OF EVIDENCE

Level 4.

摘要

目的

我们假设可以开发一种从临床病例中分割出人类气道并将其导入虚拟现实(VR)病例展示环境的方法,以对复杂气道狭窄进行建模和可视化,从而实现高效的手术规划。

方法

对从层厚为0.625毫米的CT扫描中建模的一条正常气道和两条病理气道进行处理。由气道外科医生、VR工程师、教育工作者和放射科医生组成的多学科团队合作创建了这三个临床病例的具有临床相关性的VR渲染和解释性旁白。分割和后处理在Materialize公司的Mimics Innovation Suite v24中完成。从颈总动脉分叉水平到主支气管分叉水平对结构进行分割,包括软骨性和骨性气道结构、血管和软组织。然后将它们后处理成3D图像体积并导入到VR软件syGlass(IstoVisio公司)中。

结果

与传统的二维(2D)CT相比,在VR环境中对这些3D气道模型进行直接可视化和自由操作可提供更好的几何和解剖细节。然后,为使用VR环境进行科学交流而开发的专门展示和主动学习工具允许创建VR旁白来解释病理病例。

结论

本文中使用的从临床病例中分割人类气道的方法,结合直观的VR工具在主动学习环境中叠加分割和图像数据,在临床实践中使用3D气道建模和VR来描述和规划复杂气道手术方面显示出潜力。需要进一步开展工作以验证这些模型在临床实践和患者教育中的应用。

证据水平

4级。

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