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Classification of breast microcalcifications using Spectral Mammography

机译:使用光谱乳房X线检查分类乳房微钙化

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Purpose: To investigate the potential of spectral mammography to distinguish between type I calcifications, consisting of calcium oxalate dihydrate or weddellite compounds that are more often associated with benign lesions, and type II calcifications containing hydroxyapatite which are predominantly associated with malignant tumors. Methods: Using a ray tracing algorithm, we simulated the total number of x-ray photons recorded by the detector at one pixel from a single pencil-beam projection through a breast of 50/50 (adipose/glandular) tissues with inserted microcalcifications of different types and sizes. Material decomposition using two energy bins was then applied to characterize the simulated calcifications into hydroxyapatite and weddellite using maximum-likelihood estimation, taking into account the polychromatic source, the detector response function and the energy dependent attenuation. Results: Simulation tests were carried out for different doses and calcification sizes for multiple realizations. The results were summarized using receiver operating characteristic (ROC) analysis with the area under the curve (AUC) taken as an overall indicator of discrimination performance and showing high AUC values up to 0.99. Conclusion: Our simulation results obtained for a uniform breast imaging phantom indicate that spectral mammography using two energy bins has the potential to be used as a non-invasive method for discrimination between type I and type II microcalcifications to improve early breast cancer diagnosis and reduce the number of unnecessary breast biopsies.
机译:目的:研究光谱乳房X线摄影的潜力,以区分I钙,由草酸钙或婚姻化合物组成,这些化合物更常见于良性病变,以及含有羟基磷灰石的II型钙化,主要与恶性肿瘤相关。方法:采用光线跟踪算法,我们通过50/50(脂肪/腺体)组织的乳房,从单个铅笔射线投影中的一个像素模拟了检测器记录的X射线光子的总数。类型和尺寸。然后应用使用两个能量箱的材料分解,以使用最大似然估计来表征模拟钙化到羟基磷灰石和楔形物中,考虑到多色来源,检测器响应函数和能量依赖性衰减。结果:为多种实现的不同剂量和钙化尺寸进行仿真试验。使用作为曲线下的区域(AUC)的接收器操作特性(ROC)分析总结了结果,作为辨别性能的总体指示器,并显示高达0.99的高AUC值。结论:我们对均匀乳房成像模拟的模拟结果表明,使用两个能量箱的光谱乳房X线摄影具有用作I型和II型微钙质之间的歧视的非侵入性方法,以改善早期乳腺癌诊断和减少不必要的乳房活组织检查数量。

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