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Performance evaluation of carbon-interspaced antiscatter grids in mammography: Empirical formula and Monte Carlo simulation studies

机译:乳房X线照相术中碳三角形防眩网格的性能评估:经验公式和蒙特卡罗模拟研究

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Anti-scatter grids show various performances depending on the complicated design parameters. However, it takes long time and cost to fabricate grids and perform experiments to evaluate the performance of grids. Therefore, to replace actual measurements, we performed Monte Carlo simulation study and obtained Tp (transmission of primary radiation) and Tt (transmission of total radiation) values which represent grid performance. Beam quality check was done to validate our simulation results. Although the simulation lowers the cost, it is still time consuming work. To solve those problems, empirical formulae for Tp and Tt were derived by analyzing the results of the simulation. Design parameters for grids were setup in order to derive the empirical formulae. The derived empirical formulae helped us estimate Tp and Tt values of an arbitrary grid without a complicated experiment or a tedious simulation, and easily obtain contrast improvement factor (CIF) and Bucky factor (BF) which are commonly used to evaluate the performance of a grid. The design parameters of a grid for the minimum patient’s dose can be proposed with maintaining the image quality within the designable range using the derived empirical formulae.
机译:反散射网格根据复杂的设计参数显示各种性能。然而,制造网格需要很长时间和成本,并执行实验以评估网格的性能。因此,为了更换实际测量,我们进行了Monte Carlo仿真研究并获得了代表网格性能的TP(初级辐射传输)和TT(总辐射的传输)。梁质量检查已完成以验证我们的仿真结果。虽然模拟降低了成本,但它仍然耗时的工作。为了解决这些问题,通过分析模拟结果来导出TP和TT的经验公式。建立网格的设计参数,以获得经验公式。衍生的经验性公式帮助美国估计任意网格的TP和TT值,而无需复杂的实验或繁琐的模拟,并且易于获得常用的对比度改善因子(CIF)和抗皱因子(BF),这些因子(CIF)和抗皱因子(BF)通常用于评估网格的性能。可以提出使用衍生的经验公式在可设计范围内的图像质量来提出用于最小患者剂量的网格的设计参数。

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