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A nonparametric-based rib suppression method for chest radiographs

机译:基于非参数的胸部X光片肋骨抑制方法

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This paper presents an automated and comprehensive system for eliminating rib shadows in chest radiographs, which integrates lung field identification, rib segmentation, rib intensity estimation, and suppression. We designed a region of interest (ROI)-based method to estimate a suitable initial lung boundary for active shape model (ASM) deformation by determining the translation and scaling parameters from the lung ROI. By considering the anatomical structure of the rib cage, we developed a locale sampling scheme to achieve nonparametric rib modeling. This scheme integrates knowledge-based generalized Hough transform (GHT) for accurate rib segmentation. We subsequently estimated rib intensity using the real-coded genetic algorithm (RCGA). Experimental results indicate that the relative conspicuity of the nodules increased after rib suppression, compared to the original image. Additionally, the proposed system uses only one standard chest radiograph, and the dual-energy subtraction technique is not required. Thus, this system is suitable for radiologists and computer-aided diagnosis (CAD) schemes for detecting lung nodules in chest radiographs.
机译:本文提出了一种自动,全面的系统,用于消除胸部X光片中的肋骨阴影,该系统集成了肺野识别,肋骨分割,肋骨强度估计和抑制。我们设计了一种基于感兴趣区域(ROI)的方法,通过确定肺ROI的平移和缩放参数来估计适合活动形状模型(ASM)变形的初始肺边界。通过考虑肋骨解剖结构,我们开发了一种局部采样方案以实现非参数肋骨建模。该方案集成了基于知识的广义霍夫变换(GHT),可进行精确的肋骨分割。随后,我们使用实时编码遗传算法(RCGA)估算了肋骨强度。实验结果表明,与原始图像相比,肋骨压抑后结节的相对显着性增加了。此外,建议的系统仅使用一张标准的胸部X光片,并且不需要双能量减法技术。因此,该系统适用于放射线医师和计算机辅助诊断(CAD)方案,以检测胸部X光片中的肺结节。

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