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Modeling indirect detectors for performance optimization of a digital mammographic detector for dual energy applications

机译:用于双能应用数字乳房检测器性能优化的间接检测器建模

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Dual Energy imaging is a promising method for visualizing masses and microcalcifications in digital mammography. The advent of two X-ray energies (low and high) requires a suitable detector. The scope of this work is to determine optimum detector parameters for dual energy applications. The detector was modeled through the linear cascaded (LCS) theory. It was assumed that a phosphor material was coupled to a CMOS photodetector (indirect detection). The pixel size was 22.5 μm. The phosphor thickness was allowed to vary between 20mg/cm~2 and 160mg/cm~2. The phosphor materials examined where Gd_2O_2S:Tb and Gd_2O_2S:Eu. Two Tungsten (W) anode X-ray spectra at 35 kV (filtered with 100 μm Palladium (Pd)) and 70 kV (filtered with 800 μm Ytterbium (Yb)), corresponding to low and high energy respectively, were considered to be incident on the detector. For each combination the contrast-to-noise ratio (CNR) and the detector optical gain (DOG), showing the sensitivity of the detector, were calculated. The 40 mg/cm~2 and 70 mg/cm~2 Gd_2O_2S:Tb exhibited the higher DOG values for the low and high energy correspondingly. Higher CNR between microcalcification and mammary gland exhibited the 70mg/cm~2 and the 100mg/cm~2 Gd_2O_2S:Tb for the low and the high energy correspondingly.
机译:双能成像是用于在数字乳房X光检查中可视化质量和微钙化的有希望的方法。两个X射线能量(低和高)的出现需要合适的探测器。这项工作的范围是确定双能量应用的最佳探测器参数。检测器通过线性级联(LCS)理论建模。假设磷光体材料与CMOS光电探测器(间接检测)偶联。像素尺寸为22.5μm。允许磷光体厚度在20mg / cm〜2和160mg / cm〜2之间变化。检查磷光体材料,其中GD_2O_2S:TB和GD_2O_2S:EU。两种钨(W)阳极X射线光谱分别在35kV(用100μm钯(Pd))和70kV(用800μmytterbium(Yb)过滤),分别对应于低能量和高能量,被认为是入射的在探测器上。对于每个组合,计算对比度 - 噪声比(CNR)和检测器光学增益(狗),示出了检测器的灵敏度。 40mg / cm〜2和70 mg / cm〜2 gd_2O_2s:Tb相应地表现出低能量和高能量的高狗值。微钙和乳腺之间的较高的CNR显示器显示70mg / cm〜2和100mg / cm〜2 gd_2o_2s:Tb,对应于低位和高能量。

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