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Classification of breast microcalcifications using dual-energy mammography

机译:使用双能乳房X线乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳乳沟分类

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Purpose: To investigate the potential of spectral mammography to distinguish between type Ⅰ microcalcifications, consisting of calcium oxalate dihydrate compounds typically associated with benign lesions, and type Ⅱ microcalcifications containing hydroxyapatite which are predominantly detected in malignant tumors. Methods: Simulation and phantom studies were carried out using polyenergetic spectra from a tungsten anode x-ray tube at low and high voltage (kVp) settings. Low- and high-energy attenuation ratios were calculated for microcalcifications of different types and thicknesses. Classification of type Ⅰ or Ⅱ calcifications was performed by using the attenuation ratio as a criterion. The results were evaluated using receiver operating characteristic (ROC) analysis. Results: In simulation studies, four combinations of dual (low and high kVp) energy exposure technique were investigated: 1) 30 kVp, 1 mm aluminum filtration and 50 kVp, 0.1 mm copper filtration; 2) 30 kVp. 1 mm Al and 50 kVp 0.2 mm Cu; 3) 30 kVp, 2 mm Al and 50 kVp, 0.1 mm Cu; and 4) 30 kVp 2 mm Al and 50 kVp, 0.2 mm Cu. In the ROC curve analysis, area under the curve (AUC) values were above 0.95 for all of the spectra with the exposure equivalent to 1.5 mGy of the mean glandular dose delivered to a 4 cm thick breast phantom. 30 kVp/2 mm Al and 50 kVp/0.1 mm Cu tube voltage/filter combinations demonstrated better performance compared to other combinations. In phantom studies, a 40 kVp setting paired with 1 mm Al filter and a 70 kVp setting paired with 0.1 mm Cu filter operated at 20 mAs technique were used. Obtained AUC value was also high (0.91), supporting the accuracy of the proposed classification method. Conclusion: The results of the current study suggest that dual energy mammography systems have potential to be used 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:探讨光谱乳房X线摄影的潜力,以区分Ⅰ型微钙化,由通常与良性病变相关的草酸钙二水合物化合物,以及含有羟基磷灰石的Ⅱ型微钙质,其主要检测在恶性肿瘤中。方法:在低温和高压(KVP)设置下,使用来自钨阳极X射线管的多能谱进行模拟和幻像研究。针对不同类型和厚度的微碳化计算低能量衰减比率。通过使用衰减比作为标准进行Ⅰ型或Ⅱ型钙化的分类。使用接收器操作特征(ROC)分析评估结果。结果:在仿真研究中,研究了四种(低kVP)能量曝光技术的组合:1)30 kVp,1mm铝过滤和50kVp,0.1mm铜过滤; 2)30 kVp。 1 mm和50 kVp 0.2 mm Cu; 3)30 kVp,2 mm Al和50 kVp,0.1mm Cu; 4)30 kVP 2 mm Al和50 kVp,0.2mm Cu。在ROC曲线分析中,对于所有光谱,曲线下的区域(AUC)值高于0.95,其曝光相当于递送至4厘米厚的乳房幻影的平均腺剂量的1.5 mgy。 30 KVP / 2 mm A1和50 kVP / 0.1 mm Cu管电压/滤波器组合与其他组合相比表现出更好的性能。在幻影研究中,使用与1mm Al滤波器配对的40kVP设置和与20MAS技术操作的0.1mm CU过滤器配对的70kVP设置。获得的AUC值也很高(0.91),支持所提出的分类方法的准确性。结论:目前的研究结果表明,双能乳房X线摄影系统具有Ⅰ型和Ⅱ型微钙化之间的歧视,以改善早期乳腺癌诊断,减少不必要的乳房活检的数量。

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