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首页> 外文期刊>International journal of pediatric otorhinolaryngology >Adding the third dimension--a new tool for constructing 3D models of the airway from 2D bronchoscopic video.
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Adding the third dimension--a new tool for constructing 3D models of the airway from 2D bronchoscopic video.

机译:增加三维空间-一种从2D支气管镜视频构建气道3D模型的新工具。

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OBJECTIVE: To develop a new method of using existing bronchoscopic video technology to generate a 3D model of the airway for clinical purposes. DESIGN: Prospective pilot study with clinical correlation. METHODS: A Storz 7200 bronchoscope was used to obtain video of a standardized tube. The images were then processed using "open source" tools which detected feature points. A three dimensional model was then constructed using these feature points. An in-house 3D image program was then used to compare the 3D model with the standardized tube. Video from a representative airway patient who had previously had a CT of the chest and a bronchoscopic examination was also analyzed using this technique. The 3D model was correlated with CT images to clinically validate this technique. SETTING: Tertiary care hospital. PATIENTS: One airway patient video was used for clinical validation. OUTCOME MEASURES: (1) Average diameters of the 3D video derived tube model were compared to the actual tube and (2) a cross section of the 3D video derived patient model was compared to the patient CT derived model. RESULTS: Repeated measures on standardized tubes demonstrated that is it possible to construct an airway model using this novel technique with a less than 5% error. Further, it is possible to construct a 3D model from patient video using existing bronchoscopic technology. CONCLUSIONS: It is possible to extract 3D data from a sequence of 2D images. Further, this 3D model can be used for the purposes of management and planning and is quantitatively accurate and reliable. Initial data suggests that these measurements correlate with actual airway size and may provide a better instrument with which to make surgical decisions.
机译:目的:开发一种使用现有支气管镜视频技术生成用于临床目的的气道3D模型的新方法。设计:具有临床相关性的前瞻性初步研究。方法:使用Storz 7200支气管镜获得标准化管的视频。然后使用检测特征点的“开源”工具处理图像。然后使用这些特征点构建三维模型。然后使用内部3D图像程序将3D模型与标准化管进行比较。使用该技术还分析了来自具有代表性的气道患者的视频,该患者以前曾进行过胸部CT检查和支气管镜检查。将3D模型与CT图像相关联以临床验证该技术。地点:三级医院。患者:一位气道患者视频用于临床验证。观察指标:(1)将3D视频衍生管模型的平均直径与实际管子进行比较,(2)将3D视频衍生患者模型的横截面与患者CT衍生模型进行比较。结果:对标准化试管的重复测量表明,使用这种新技术以小于5%的误差构建气道模型是可能的。此外,有可能使用现有的支气管镜技术从患者视频中构建3D模型。结论:可以从2D图像序列中提取3D数据。此外,此3D模型可用于管理和计划目的,并且在数量上准确且可靠。初始数据表明,这些测量值与实际气道大小相关,并可能提供更好的工具来做出手术决策。

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