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An automated lung nodule detection system for CT images using synthetic minority oversampling

机译:使用合成少数过采样的CT图像自动肺结节检测系统

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Pulmonary nodules are a potential manifestation of lung cancer, and their early detection can remarkably enhance the survival rate of patients. This paper presents an automated pulmonary nodule detection algorithm for lung CT images. The algorithm utilizes a two-stage approach comprising nodule candidate detection followed by reduction of false positives. The nodule candidate detection involves thresholding, followed by morphological opening. The geometrical features at this stage are selected from properties of nodule size and compactness, and lead to reduced number of false positives. An SVM classifier is used with a radial basis function kernel. The data imbalance, due to uneven distribution of nodules and non-nodules as a result of the candidate detection stage, is proposed to be addressed by oversampling of minority class using Synthetic Minority Over-sampling Technique (SMOTE), and over-imposition of its misclassification penalty. Experiments were performed on 97 CT scans of a publically-available (LIDC-IDRI) database. Performance is evaluated in terms of sensitivity and false positives per scan (FP/scan). Results indicate noteworthy performance of the proposed approach (nodule detection sensitivity after 4-fold cross-validation is 92.91% with 3 FP/scan). Comparative analysis also reflects a comparable and often better performance of the proposed setup over some of the existing techniques.
机译:肺结节是肺癌的潜在表现,早期发现可显着提高患者的生存率。本文提出了一种用于肺部CT图像的自动肺结节检测算法。该算法利用了两阶段方法,该方法包括检测结节候选者,然后减少误报。结节候选检测包括阈值化,然后进行形态学开放。此阶段的几何特征是从结节大小和紧密度的属性中选择的,并导致假阳性的数量减少。 SVM分类器与径向基函数内核一起使用。提出由于候选检测阶段的结节和非结节分布不均而导致的数据不平衡,建议通过使用合成少数族裔过采样技术(SMOTE)对少数族裔进行过采样,以及对其过度叠加来解决分类错误的罚款。实验是在公开(LIDC-IDRI)数据库的97次CT扫描上进行的。根据灵敏度和每次扫描的误报(FP /扫描)评估性能。结果表明,该方法具有显着的性能(4次交叉验证后,每次3 FP扫描,结节检测灵敏度为92.91%)。比较分析还反映了与某些现有技术相比拟议的设置具有可比性,并且通常具有更好的性能。

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