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首页> 外文期刊>IEEE Transactions on Medical Imaging >Geometric Validation of Continuous, Finely Sampled 3-D Reconstructions From aOCT and CT in Upper Airway Models
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Geometric Validation of Continuous, Finely Sampled 3-D Reconstructions From aOCT and CT in Upper Airway Models

机译:上呼吸道模型中来自aOCT和CT的连续,精细采样的3D重建的几何验证

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摘要

Identification and treatment of obstructive air-ence tomography (aOCT) is a promising high-speed and minimally invasive endoscopic imaging modality for providing micrometer-resolution scans of the upper airway. Resistance to airflow in OADs is directly caused by the reduction in luminal cross-sectionalarea (CSA). It is hypothesized that aOCT can produce airway CSA measurementsas accurate as that from computed tomography (CT). Scans of machine hollowed cylindrical tubes were used to develop methods for segmentation and measurement of airway lumen in CT and aOCT. Simulated scans of virtual cones were used to validate 3-D resampling and reconstruction methods in aOCT. Then, measurements of two segments of a 3-D printed pediatric airway phantom from aOCT and CT independently were compared to ground truth CSA. In continuous unobstructed regions, the mean CSA difference for each phantom segment was 2.2 +/- 3.5 and 1.5 +/- 5.3 mm(2) for aOCT, and -3.4 +/- 4.3 and -1.9 +/- 1.2 mm(2) for CT. Because of the similar magnitude of these differences, these results support the hypotheses and underscore the potential for aOCT as a viable alternative to CT in airway imaging, while offering greater potential to capture respiratory dynamics.
机译:阻塞性空中断层扫描(aOCT)的识别和治疗是一种有前途的高速,微创内窥镜成像方法,可用于对上呼吸道进行微米分辨率的扫描。 OAD中的气流阻力直接是由于管腔横截面积(CSA)的减少而引起的。假设aOCT可以产生与计算机断层扫描(CT)一样准确的气道CSA测量值。使用机器空心圆柱管的扫描来开发在CT和aOCT中分割和测量气道腔的方法。虚拟视锥的模拟扫描用于验证aOCT中的3-D重采样和重构方法。然后,将分别来自aOCT和CT的3-D打印的儿科气道体模的两个部分的测量结果与地面真实CSA进行了比较。在连续的无障碍区域中,aOCT的每个幻影段的平均CSA差异为2.2 +/- 3.5和1.5 +/- 5.3 mm(2),以及-3.4 +/- 4.3和-1.9 +/- 1.2 mm(2)用于CT。由于这些差异的大小相似,因此这些结果支持了这一假设,并强调了aOCT在气道成像中作为CT可行替代方法的潜力,同时提供了捕获呼吸动力学的更大潜力。

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