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The use of an interactive software program for quantitative characterization of microcalcifications on digitized film-screen mammograms.

机译:使用交互式软件程序对数字化胶片屏幕乳房X线照片上的微钙化进行定量表征。

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RATIONALE AND OBJECTIVES: Mammography is relatively nonspecific for the early detection of breast cancer. This study evaluates the accuracy of mammographic interpretation using quantitative features characterizing microcalcifications, which are extracted by a computerized system. METHODS: A computer-aided diagnosis (CAD) system enabling digitization of film-screen mammograms and automatic feature extraction was developed. A classification scheme (discriminant analysis) based on these features was constructed and trained on 217 cases with known pathology. The diagnostic performance of the classification scheme was tested against the radiologist's conventional interpretation on 45 additional cases of microcalcifications, each analyzed independently by four radiologists. RESULTS: The sensitivity of the CAD system analysis (95.7%) was significantly better than that of conventional interpretation (84.8%). The positive predictive value of interpretation increased significantly, as did the area under the receiver operating characteristic curve. CONCLUSIONS: This classification scheme for microcalcifications, based on quantitative features characterizing the lesion, significantly improved the accuracy of mammographic interpretation.
机译:理由和目的:乳房X线照相术对乳腺癌的早期检测相对而言是非特异性的。这项研究使用表征微钙化的定量特征评估了乳腺X线摄影解释的准确性,这些定量特征是由计算机系统提取的。方法:开发了一种计算机辅助诊断(CAD)系统,该系统可以对胶片X线乳房X线照片进行数字化并自动提取特征。构建了基于这些特征的分类方案(判别分析),并针对217例已知病理的病例进行了培训。针对放射线医师对45例其他微钙化病例的常规解释,对分类方案的诊断性能进行了测试,每例均由四名放射线医师独立分析。结果:CAD系统分析的敏感性(95.7%)明显优于常规解释的敏感性(84.8%)。解释的阳性预测值显着增加,接收器工作特性曲线下方的面积也增加了。结论:基于钙化病变的定量特征,这种微钙化分类方案显着提高了乳腺X线摄影解释的准确性。

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