Structure From Motion Reconstruction of the Pediatric Larynx: A Clinical Case Series.

IF 2.6 3区 医学 Q1 OTORHINOLARYNGOLOGY
Michael C Barbour, Shaunak N Amin, Hannah F Case, Seth D Friedman, Francisco A Perez, Randall A Bly, Kaalan E Johnson, Sanjay R Parikh, Clare M Richardson, John P Dahl, Alberto Aliseda
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引用次数: 0

Abstract

Objective: Endoscopy is the gold-standard diagnostic modality for many pediatric airway disorders but does not enable quantitative assessment of airway morphology. In a series of pediatric patients, we aim to demonstrate that structure from motion (SfM) photogrammetry, a computer-vision algorithm, can accurately reconstruct three-dimensional (3D) models of laryngeal anatomy directly from bronchoscopy videos.

Study design: Prospective case series.

Setting: Tertiary academic pediatric hospital.

Methods: Pediatric patients undergoing direct laryngoscopy/bronchoscopy and same-day neck and chest computed tomography (CT) as a part of clinical care were recruited. Optical calibration of the imaging system occurred after each bronchoscopy. SfM was used to reconstruct 3D surfaces from bronchoscopy videos. SfM-reconstructed surfaces were compared against CT-derived geometries to determine reconstruction accuracy at glottic and subglottic levels.

Results: SfM reconstruction was successfully completed for all four patients. Circular equivalent diameter (DCE) of cross-sectional area slices measured from SfM-reconstructed airways was highly accurate compared to DCE measured from the gold-standard CT scans, with root mean squared error of 0.1, 0.375, and 0.225 mm at the glottis, proximal subglottis, and distal subglottis subsites, respectively. This represents average percent errors of 2%, 4%, and 4%, for each site, respectively.

Conclusion: We demonstrate the feasibility of reconstructing laryngeal anatomy with high fidelity from SfM photogrammetry in a clinical series of pediatric patients. This reproducible method provides highly accurate anatomic models directly from endoscopy, enabling quantitative assessment without CT scanning and radiation exposure. This approach has the potential to impact many areas of otolaryngology, including virtual surgical planning, simulation, and family counseling.

儿童喉部的运动重建结构:一个临床病例系列。
目的:内镜检查是许多儿童气道疾病的金标准诊断方式,但不能定量评估气道形态。在一系列儿科患者中,我们的目标是证明运动结构(SfM)摄影测量,一种计算机视觉算法,可以直接从支气管镜检查视频中准确地重建喉解剖的三维(3D)模型。研究设计:前瞻性病例系列。单位:三级专科儿科医院。方法:招募接受直接喉镜/支气管镜检查和当日颈部和胸部计算机断层扫描(CT)作为临床护理一部分的儿科患者。每次支气管镜检查后对成像系统进行光学校准。SfM用于重建支气管镜视频的三维表面。将sfm重建的表面与ct导出的几何形状进行比较,以确定声门和声门下水平的重建精度。结果:4例患者均成功完成SfM重建。与金标准CT扫描测量的DCE相比,sfm重建气道横截面积切片的圆形等效直径(DCE)非常准确,声门、声门下近端和声门下远端亚位的均方根误差分别为0.1、0.375和0.225 mm。这表示每个站点的平均错误率分别为2%、4%和4%。结论:我们证明了用SfM摄影测量在一系列儿科患者的临床中重建高保真喉解剖的可行性。这种可重复的方法直接从内窥镜中提供高度精确的解剖模型,无需CT扫描和辐射暴露即可进行定量评估。这种方法有可能影响耳鼻喉科的许多领域,包括虚拟手术计划、模拟和家庭咨询。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Otolaryngology- Head and Neck Surgery
Otolaryngology- Head and Neck Surgery 医学-耳鼻喉科学
CiteScore
6.70
自引率
2.90%
发文量
250
审稿时长
2-4 weeks
期刊介绍: Otolaryngology–Head and Neck Surgery (OTO-HNS) is the official peer-reviewed publication of the American Academy of Otolaryngology–Head and Neck Surgery Foundation. The mission of Otolaryngology–Head and Neck Surgery is to publish contemporary, ethical, clinically relevant information in otolaryngology, head and neck surgery (ear, nose, throat, head, and neck disorders) that can be used by otolaryngologists, clinicians, scientists, and specialists to improve patient care and public health.
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