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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Characterizing the digital radiography system in terms of effective detective quantum efficiency and CDRAD measurement
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Characterizing the digital radiography system in terms of effective detective quantum efficiency and CDRAD measurement

机译:根据有效的探测量子效率和CDRAD测量来表征数字射线照相系统

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The aim of this study was to assess the performance of a digital radiography system in terms of effective detective quantum efficiency (eDQE) for different tube voltages, polymethyl methacrylate (PMMA) phantom thicknesses and different grid types. The image performance of the digital radiography system was also evaluated by using CDRAD measurements at the same conditions and the correlation of CDRAD results with eDQE was compared. The eDQE was calculated via measurement of effective modulation transfer function (eMTF), effective normalized noise power spectra (eNNPS), scatter fraction (SF) and transmission factors (TF). SFs and TFs were also calculated for different beam qualities by using MCNP4C Monte Carlo simulation code. The integrated eDQE (IeDQE) over the frequency range was used to find the correlation with the inverse image quality figure (IQFinv) obtained from CDRAD measurements. The highest eDQE was obtained with 60 lp/cm grid frequency and 10:1 grid ratio. No remarkable effect was observed on eDQE with different grid frequency, but eDQE decreased with increasing grid ratio. A significant correlation was found between IeDQE and IQFinv.
机译:这项研究的目的是根据不同管电压,聚甲基丙烯酸甲酯(PMMA)体模厚度和不同栅格类型的有效检测量子效率(eDQE)来评估数字放射成像系统的性能。还通过在相同条件下使用CDRAD测量来评估数字射线照相系统的图像性能,并比较了CDRAD结果与eDQE的相关性。通过测量有效调制传递函数(eMTF),有效归一化噪声功率谱(eNNPS),散射分数(SF)和传输因子(TF)来计算eDQE。还使用MCNP4C蒙特卡洛模拟代码针对不同的光束质量计算了SF和TF。使用该频率范围内的集成eDQE(IeDQE)来查找与从CDRAD测量获得的图像质量反比(IQFinv)的相关性。以60 lp / cm的网格频率和10:1的网格比获得最高的eDQE。在不同的电网频率下,对eDQE均未观察到明显的影响,但是eDQE随电网比率的增加而降低。发现IeDQE和IQFinv之间存在显着相关性。

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