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首页> 外文期刊>Journal of applied clinical medical physics / >Comparison of TG‐43 dosimetric parameters of brachytherapy sources obtained by three different versions of MCNP codes
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Comparison of TG‐43 dosimetric parameters of brachytherapy sources obtained by three different versions of MCNP codes

机译:三种不同版本的MCNP代码获得的近距离放射治疗源TG‐43剂量参数的比较

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Monte Carlo simulations are widely used for calculation of the dosimetric parameters of brachytherapy sources. MCNP4C2, MCNP5, MCNPX, EGS4, EGSnrc, PTRAN, and GEANT4 are among the most commonly used codes in this field. Each of these codes utilizes a cross-sectional library for the purpose of simulating different elements and materials with complex chemical compositions. The accuracies of the final outcomes of these simulations are very sensitive to the accuracies of the cross-sectional libraries. Several investigators have shown that inaccuracies of some of the cross section files have led to errors in 125 I and 103 Pd parameters. The purpose of this study is to compare the dosimetric parameters of sample brachytherapy sources, calculated with three different versions of the MCNP code — MCNP4C, MCNP5, and MCNPX. In these simulations for each source type, the source and phantom geometries, as well as the number of the photons, were kept identical, thus eliminating the possible uncertainties. The results of these investigations indicate that for low-energy sources such as 125 I and 103 Pd there are discrepancies in g L ( r ) values. Discrepancies up to 21.7% and 28% are observed between MCNP4C and other codes at a distance of 6 cm for 103 Pd and 10 cm for 125 I from the source, respectively. However, for higher energy sources, the discrepancies in g L ( r ) values are less than 1.1% for 192 Ir and less than 1.2% for 137 Cs between the three codes.PACS number(s): 87.56.bg
机译:蒙特卡洛模拟被广泛用于近距离放射治疗源剂量参数的计算。 MCNP4C2,MCNP5,MCNPX,EGS4,EGSnrc,PTRAN和GEANT4是该领域中最常用的代码。这些代码中的每一个都利用横截面库来模拟具有复杂化学成分的不同元素和材料。这些模拟的最终结果的精度对截面库的精度非常敏感。几位研究人员表明,某些横截面文件的不正确导致了125 I和103 Pd参数的错误。本研究的目的是比较使用三种不同版本的MCNP代码(MCNP4C,MCNP5和MCNPX)计算的近距离放射治疗样品来源的剂量参数。在每种源类型的这些模拟中,源和幻像的几何形状以及光子的数量保持相同,从而消除了可能的不确定性。这些调查的结果表明,对于低能量源(例如125 I和103 Pd),g L(r)值存在差异。 MCNP4C与其他代码之间的差异最大,分别为距源103 Pd的6厘米和距125 I的10厘米,分别达到21.7%和28%。但是,对于更高的能源,三个代码之间的192 Ir的g L(r)值小于1.1%,对于137 Cs的g L(r)小于1.2%.PACS数:87.56.bg

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