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A new segmentation algorithm for measuring CBCT images of nasal airway: a pilot study

机译:一种用于测量鼻气道CBCT图像的新分割算法:试验研究

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摘要

Background Three-dimensional (3D) modeling of the nasal airway space is becoming increasingly important for assessment in breathing disorders. Processing cone beam computed tomography (CBCT) scans of this region is complicated, however, by the intricate anatomy of the sinuses compared to the simpler nasopharynx. A gold standard for these measures also is lacking. Previous work has shown that software programs can vary in accuracy and reproducibility outcomes of these measurements. This study reports the reproducibility and accuracy of an algorithm, airway segmentor (AS), designed for nasal airway space analysis using a 3D printed anthropomorphic nasal airway model. Methods To test reproducibility, two examiners independently used AS to edit and segment 10 nasal airway CBCT scans. The intra- and inter-examiner reproducibility of the nasal airway volume was evaluated using paired t-tests and intraclass correlation coefficients. For accuracy testing, the CBCT data for pairs of nasal cavities were 3D printed to form hollow shell models. The water-equivalent method was used to calculate the inner volume as the gold standard, and the models were then embedded into a dry human skull as a phantom and subjected to CBCT. AS, along with the software programs MIMICS 19.0 and INVIVO 5, was applied to calculate the inner volume of the models from the CBCT scan of the phantom. The accuracy was reported as a percentage of the gold standard. Results The intra-examiner reproducibility was high, and the inter-examiner reproducibility was clinically acceptable. AS and MIMICS presented accurate volume calculations, while INVIVO 5 significantly overestimated the mockup of the nasal airway volume. Conclusion With the aid of a 3D printing technique, the new algorithm AS was found to be a clinically reliable and accurate tool for the segmentation and reconstruction of the nasal airway space.
机译:背景技术鼻气道空间的三维(3D)建模对于呼吸障碍评估越来越重要。处理锥形光束计算机断层扫描(CBCT)扫描的扫描是复杂的,然而,与鼻咽的复杂解剖学相比,与鼻咽相比。这些措施的黄金标准也缺乏。以前的工作表明,软件程序可以在这些测量的准确性和再现性结果中变化。本研究报告了算法,气道分部(AS)的再现性和准确性,用于使用3D印刷的拟人鼻道模型设计用于鼻气气道空间分析的鼻气空间分析。方法测试再现性,两位审查员独立用作编辑和分段10纳斯航空公司CBCT扫描。使用配对的T检验和腹部相关系数评估鼻气气道体积的鼻间和检查的内部互相重复性。为了测试精度测试,对鼻腔对的CBCT数据是3D印刷以形成空心壳模型。水当量法用于计算内部体积作为金标准,然后将模型嵌入干燥的人体颅骨中作为幻影并进行CBCT。与软件程序一样模拟19.0和Invivo 5,应用于从幻象的CBCT扫描计算模型的内部体积。准确性报告为黄金标准的百分比。结果检查局内再现性高,临床上可接受的检查际再现性。 AS和MIMICS提出了精确的体积计算,而Invivo 5显着高估了鼻气道体积的样机。结论借助于3D打印技术,新算法被发现是临床上可靠和准确的鼻气气道空间的分割和重建的临床可靠和准确的工具。

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