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用于改善胸部X光片中结节检测的全自动肺部分割和肋骨抑制方法。

Fully automatic lung segmentation and rib suppression methods to improve nodule detection in chest radiographs.

作者信息

Soleymanpour Elaheh, Pourreza Hamid Reza, Ansaripour Emad, Yazdi Mehri Sadooghi

机构信息

Machine Vision Research Laboratory, Computer Engineering Department, Ferdowsi University of Mashhad, Iran (E-mail:

出版信息

J Med Signals Sens. 2011 Jul;1(3):191-9.

Abstract

Computer-aided Diagnosis (CAD) systems can assist radiologists in several diagnostic tasks. Lung segmentation is one of the mandatory steps for initial detection of lung cancer in Posterior-Anterior chest radiographs. On the other hand, many CAD schemes in projection chest radiography may benefit from the suppression of the bony structures that overlay the lung fields, e.g. ribs. The original images are enhanced by an adaptive contrast equalization and non-linear filtering. Then an initial estimation of lung area is obtained based on morphological operations and then it is improved by growing this region to find the accurate final contour, then for rib suppression, we use oriented spatial Gabor filter. The proposed method was tested on a publicly available database of 247 chest radiographs. Results show that this method outperformed greatly with accuracy of 96.25% for lung segmentation, also we will show improving the conspicuity of lung nodules by rib suppression with local nodule contrast measures. Because there is no additional radiation exposure or specialized equipment required, it could also be applied to bedside portable chest x-rays. In addition to simplicity of these fully automatic methods, lung segmentation and rib suppression algorithms are performed accurately with low computation time and robustness to noise because of the suitable enhancement procedure.

摘要

计算机辅助诊断(CAD)系统可以在多项诊断任务中协助放射科医生。肺部分割是在后前位胸部X光片中初步检测肺癌的必要步骤之一。另一方面,投影式胸部X光摄影中的许多CAD方案可能会受益于对覆盖肺野的骨骼结构(如肋骨)的抑制。原始图像通过自适应对比度均衡和非线性滤波进行增强。然后基于形态学操作获得肺面积的初始估计,接着通过扩展该区域来改进,以找到准确的最终轮廓。然后,对于肋骨抑制,我们使用定向空间伽柏滤波器。所提出的方法在一个包含247张胸部X光片的公开数据库上进行了测试。结果表明,该方法在肺部分割方面表现出色,准确率达到96.25%,而且我们还将通过使用局部结节对比度测量方法进行肋骨抑制来展示提高肺结节的可见性。由于无需额外的辐射暴露或专用设备,它也可应用于床边便携式胸部X光检查。除了这些全自动方法的简单性之外,由于合适的增强程序,肺部分割和肋骨抑制算法能够以较低的计算时间准确执行,并且对噪声具有鲁棒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f28c/3347229/1c1d70b3641b/JMSS-1-191-g001.jpg

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