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Comparative power law analysis of structured breast phantom and patient images in digital mammography and breast tomosynthesis

机译:数字化乳腺摄影和乳房断层合成中结构化的乳房幻影和患者图像的比较幂律分析

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Purpose: This work characterizes three candidate mammography phantoms with structured background in terms of power law analysis in the low frequency region of the power spectrum for 2D (planar) mammography and digital breast tomosynthesis (DBT). Methods: The study was performed using three phantoms (spheres in water, Voxmam, and BR3D CIRS phantoms) on two DBT systems from two different vendors (Siemens Inspiration and Hologic Selenia Dimensions). Power spectra (PS) were calculated for planar projection, DBT projection, and reconstructed images and curve fitted in the low frequency region from 0.2 to 0.7 mm-1 with a power law function characterized by an exponent β and magnitude κ. The influence of acquisition dose and tube voltage on the power law parameters was first explored. Then power law parameters were calculated from images acquired with the same anode/filter combination and tube voltage for the three test objects, and compared with each other. Finally, PS curves for automatic exposure controlled acquisitions (anode/filter combination and tube voltages selected by the systems based on the breast equivalent thickness of the test objects) were compared against PS analysis performed on patient data (for Siemens 80 and for Hologic 48 mammograms and DBT series). Dosimetric aspects of the three test objects were also examined. Results: The power law exponent (β) was found to be independent of acquisition dose for planar mammography but varied more for DBT projections of the sphere-phantom. Systematic increase of tube voltage did not affect β but decreased κ, both in planar and DBT projection phantom images. Power spectra of the BR3D phantom were closer to those of the patients than these of the Voxmam phantom; the Voxmam phantom gave high values of κ compared to the other phantoms and the patient series. The magnitude of the PS curves of the BR3D phantom was within the patient range but β was lower than the average patient value. Finally, PS magnitude for the sphere-phantom coincided with the patient curves for Siemens but was lower for the Hologic system. Close agreement of doses for all three phantoms with patient doses was found. Conclusions: Power law parameters of the phantoms were close to those of the patients but no single phantom matched in terms of both magnitude (κ) and texture (β) for the x-ray systems in this work. PS analysis of structured phantoms is feasible and this methodology can be used to suggest improvements in phantom design.
机译:目的:根据二维(X线)乳房X线照相术和数字乳房X线断层合成术(DBT)的功率谱低频区域中的功率定律分析,这项工作描述了具有结构化背景的三种候选乳房X线照相模体。方法:使用来自两个不同供应商的两个DBT系统(Siemens Inspiration和Hologic Selenia Dimensions)上的三个体模(水中的球体,Voxmam和BR3D CIRS体模)进行了研究。计算平面投影,DBT投影的功率谱(PS),以及在0.2至0.7 mm-1的低频区域中拟合的重构图像和曲线,并具有以指数β和幅度κ为特征的幂律函数。首先探讨了采集剂量和电子管电压对功率定律参数的影响。然后,从使用相同的阳极/滤光片组合获取的图像以及三个测试对象的管电压计算出幂律参数,并将它们进行比较。最后,将自动曝光控制采集的PS曲线(阳极/过滤器组合以及系统根据测试对象的乳房等效厚度选择的管电压)与对患者数据进行的PS分析(针对Siemens 80和Hologic 48乳房X线照片)进行了比较和DBT系列)。还检查了三个测试对象的剂量方面。结果:发现幂律指数(β)与平面乳房X线照相术的采集剂量无关,但对于球体模型的DBT投影变化更大。在平面和DBT投影体模图像中,管电压的系统性增加都不会影响β,而会减小κ。 BR3D体模的功率谱比Voxmam体模的功率谱更接近患者。与其他体模和患者系列相比,Voxmam体模的κ值高。 BR3D体模的PS曲线的幅度在患者范围内,但β低于平均患者值。最后,球体模型的PS幅度与Siemens的患者曲线一致,但对于Hologic系统则更低。发现所有三个体模的剂量与患者剂量密切相关。结论:该体模的幂律参数与患者相近,但在这项工作中没有单个体模在X射线系统的大小(κ)和质构(β)方面匹配。结构化体模的PS分析是可行的,该方法可用于建议改进体模设计。

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