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首页> 外文期刊>Physics in medicine and biology. >Design of linear anti-scatter grid geometry with optimum performance for screen-film and digital mammography systems
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Design of linear anti-scatter grid geometry with optimum performance for screen-film and digital mammography systems

机译:线性防散射网格几何结构的设计,可为银幕胶片和数字乳腺摄影系统提供最佳性能

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摘要

A detailed 3D Monte Carlo simulation of the grid geometrical parameters in screen-film mammography (SFM) and digital mammography (DM) systems has been performed. A combination of IEC 60627:2013 international standard conditions and other more clinically relevant parameters were used for this simulation. Accuracy of our results has been benchmarked with previously published data and good agreement has been obtained. Calculations in a wide range of linear anti-scatter grid geometries have been carried out. The evaluated parameters for the SFM system were the Bucky factor (BF) and contrast improvement factor (CIF) and for the DM system it was signal difference-to-noise ratio improvement factor (SIF). The CIF parameter was chosen to be nearly the same as the commercial grade, the BF and SIF were significantly improved compared to commercial grids in use today. Our optimized grid parameters for the SFM system were lead strip thickness d = 12 mu m, grid ratio r = 5 and strip density N = 65 lines/cm. And for the DM system these parameters were d = 5 mu m, r = 3 and N = 100 lines/cm. Both optimized grid sets have thinner d and higher N compared to the commercial grids.
机译:已经对屏幕胶片X线摄影(SFM)和数字X线摄影(DM)系统中的网格几何参数进行了详细的3D蒙特卡洛模拟。模拟使用了IEC 60627:2013国际标准条件和其他与临床相关的参数的组合。我们的结果的准确性已用以前发布的数据作为基准,并获得了良好的共识。已经进行了各种线性反散射网格几何形状的计算。 SFM系统的评估参数为Bucky因子(BF)和对比度改善因子(CIF),而DM系统的评估参数为信号差噪比改善因子(SIF)。选择的CIF参数几乎与商业等级相同,与目前使用的商业电网相比,BF和SIF有了显着提高。我们为SFM系统优化的网格参数为:铅带厚度d = 12微米,网格比r = 5,带密度N = 65线/ cm。对于DM系统,这些参数为d = 5微米,r = 3和N = 100线/ cm。与商用网格相比,两个优化的网格集都具有更薄的d和更高的N。

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