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Multiscale quantification of tissue spiculation and distortion for detection of architectural distortion and spiculated mass in mammography

机译:多尺度定量分析组织乳化和畸变,以检测乳腺X线摄影中的结构畸变和毛刺质量

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This paper proposes a multiscale method to quantify tissue spiculation and distortion in mammography CAD systems that aims at improving the sensitivity in detecting architectural distortion and spiculated mass. This approach addresses the difficulty of predetermining the neighborhood size for feature extraction in characterizing lesions demonstrating spiculated mass/architectural distortion that may appear in different sizes. The quantification is based on the recognition of tissue spiculation and distortion pattern using multiscale first-order phase portrait model in texture orientation field generated by Gabor filter bank. A feature map is generated based on the multiscale quantification for each mammogram and two features are then extracted from the feature map. These two features will be combined with other mass features to provide enhanced discriminate ability in detecting lesions demonstrating spiculated mass and architectural distortion. The efficiency and efficacy of the proposed method are demonstrated with results obtained by applying the method to over 500 cancer cases and over 1000 normal cases.
机译:本文提出了一种多尺度方法来量化乳腺X射线摄影CAD系统中的组织针刺和变形,旨在提高检测建筑变形和针刺质量的灵敏度。该方法解决了在表征病变时预先确定特征提取的邻域大小的困难,该病变表现出可能以不同大小出现的尖锐的肿块/建筑畸变。量化是基于在Gabor滤波器组生成的纹理定向字段中使用多尺度一阶相位肖像模型识别组织喷溅和扭曲模式的结果。基于每个乳房X射线照片的多尺度量化生成特征图,然后从特征图中提取两个特征。这两个特征将与其他质量特征相结合,以提供增强的辨别能力,以检测出显示出弥散性质量和建筑变形的病变。通过将该方法应用于500多个癌症病例和1000多个正常病例的结果证明了该方法的有效性和有效性。

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