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Signal-to-noise ratio and radiation dose as a function of photon energy in mammography

机译:信噪比和辐射剂量作为乳房X线照相术中的光子能量的函数

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This study investigated the signal to noise ratio (SNR) and radiation dose as a function of photon energy in screen-film mammography. An analytical expression was derived for the SNR for monoenergetic photons incident on simulated masses and microcalcifications embedded in uniform slabs of Lucite. The mean dose, D, was determined by dividing the total energy deposited in the Lucite phantom by the corresponding phantom mass. SNR and dose data for different photon energies were normalized to a constant value of energy absorbed by a 34 mg/cm$+2$/ Gd$-2$/O$-2$/S screen. A figure of merit (FOM), defined as SNR$+2$//D, permitted the optimum photon energy to be determined for each imaging task. For microcalcifications, the optimum energy was dependent on the size of the microcalcification, and increased from 19 keV for 100 micrometer to 22 keV for 500 micrometer imaged in a 4 cm Lucite phantom. The optimal photon energy for microcalcifications was 16 - 19 keV for a 2 cm phantom, increasing to 24 - 26 keV for an 8 cm phantom. For simulated masses of all diameters (2 mm to 10 mm) and thickness (0.15 to 0.6 mm), the optimal photon energy was approximately 17 keV for a 2 cm phantom, and increased to approximately 32 keV for an 8 cm phantom.
机译:本研究研究了作为光子能量在筛膜乳房X光检查中的信号到噪声比(SNR)和辐射剂量的信号。用于入射在模拟质量和微钙体上的单元素光子的SNR的分析表达,嵌入露晶均匀板。通过通过相应的体重物质将沉积在Lucite phantom中的总能量除以沉积的总能量来确定平均剂量D.不同光子能量的SNR和剂量数据被标准化为34 mg / cm $ + 2 $ / GD $ -2 $ / O $ -2 $ / S屏幕的恒定值。定义为SNR $ + 2 $ / d的优点(FOM),允许为每个成像任务确定最佳光子能量。对于微钙化,最佳能量取决于微钙化的尺寸,并从19keV增加到100μV,以在4cm的4cm Lucite Phantom中成像500微米。用于2cm的微钙化的最佳光子能量为16-19keV,对于8cm的模型,增加到24-26keV。对于所有直径(2mm至10mm)和厚度(0.15至0.6mm)的模拟质量,最佳光子能量为2cm致幻体积为约17keV,并且为8cm模型增加至约32keV。

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