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A Fully Automatic Method for Lung Parenchyma Segmentation and Repairing

机译:全自动的肺实质分割与修复方法

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摘要

Considering that the traditional lung segmentation algorithms are not adaptive for the situations that most of the juxtapleural nodules, which are excluded as fat, and lung are not segmented perfectly. In this paper, several methods are comprehensively utilized including optimal iterative threshold, three-dimensional connectivity labeling, three-dimensional region growing for the initial segmentation of the lung parenchyma, based on improved chain code, and Bresenham algorithms to repair the lung parenchyma. The paper thus proposes a fully automatic method for lung parenchyma segmentation and repairing. Ninety-seven lung nodule thoracic computed tomography scans and 25 juxtapleural nodule scans are used to test the proposed method and compare with the most-cited rolling-ball method. Experimental results show that the algorithm can segment lung parenchyma region automatically and accurately. The sensitivity of juxtapleural nodule inclusion is 100 %, the segmentation accuracy of juxtapleural nodule regions is 98.6 %, segmentation accuracy of lung parenchyma is more than 95.2 %, and the average segmentation time is 0.67 s/frame. The algorithm can achieve good results for lung parenchyma segmentation and repairing in various cases that nodules/tumors adhere to lung wall.
机译:考虑到传统的肺部分割算法不适用于大多数的胸膜结节(被排除为脂肪)和肺部未完美分割的情况。在本文中,综合利用了多种方法,包括最佳迭代阈值,三维连通性标记,基于肺链实质的三维分割的三维区域增长(基于改进的链码)和Bresenham算法以修复肺实质。因此,本文提出了一种全自动的肺实质分割和修复方法。九十七个肺结节胸腔计算机断层扫描和25个颈胸结节扫描被用来测试该方法,并与最常用的滚球法进行比较。实验结果表明,该算法可以自动,准确地分割肺实质区域。胸膜结节包含的敏感性为100%,胸膜结节区域的分割精度为98.6%,肺实质的分割精度超过95.2%,平均分割时间为0.67秒/帧。该算法在结节/肿瘤粘附于肺壁的各种情况下,对于肺实质的分割和修复均能取得良好的效果。

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