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首页> 外文期刊>Medical Physics >Monte Carlo dose calculations of beta-emitting sources for intravascular brachytherapy: a comparison between EGS4, EGSnrc, and MCNP.
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Monte Carlo dose calculations of beta-emitting sources for intravascular brachytherapy: a comparison between EGS4, EGSnrc, and MCNP.

机译:血管内近距离放射治疗中β发射源的蒙特卡洛剂量计算:EGS4,EGSnrc和MCNP之间的比较。

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摘要

The dose parameters for the beta-particle emitting 90Sr/90Y source for intravascular brachytherapy (IVBT) have been calculated by different investigators. At a distant distance from the source, noticeable differences are seen in these parameters calculated using different Monte Carlo codes. The purpose of this work is to quantify as well as to understand these differences. We have compared a series of calculations using an EGS4, an EGSnrc, and the MCNP Monte Carlo codes. Data calculated and compared include the depth dose curve for a broad parallel beam of electrons, and radial dose distributions for point electron sources (monoenergetic or polyenergetic) and for a real 90Sr/90Y source. For the 90Sr/90Y source, the doses at the reference position (2 mm radial distance) calculated by the three code agree within 2%. However, the differences between the dose calculated by the three codes can be over 20% in the radial distance range interested in IVBT. The difference increases with radial distance from source, and reaches 30% at the tail of dose curve. These differences may be partially attributed to the different multiple scattering theories and Monte Carlo models for electron transport adopted in these three codes. Doses calculated by the EGSnrc code are more accurate than those by the EGS4. The two calculations agree within 5% for radial distance <6 mm.
机译:已经由不同的研究人员计算出了用于血管内近距离放射治疗(IVBT)的发射90Sr / 90Yβ粒子来源的剂量参数。在距源很远的距离处,使用不同的蒙特卡洛代码计算出的这些参数中会看到明显的差异。这项工作的目的是量化并了解这些差异。我们比较了使用EGS4,EGSnrc和MCNP蒙特卡洛代码的一系列计算。计算和比较的数据包括宽平行电子束的深度剂量曲线,以及点电子源(单能或多能)和实际90Sr / 90Y源的径向剂量分布。对于90Sr / 90Y源,由三个代码计算出的参考位置(径向距离2 mm)处的剂量在2%之内。但是,在对IVBT感兴趣的径向距离范围内,这三个代码计算的剂量之间的差异可能超过20%。差异随着距放射源的径向距离而增加,并在剂量曲线的尾部达到30%。这些差异可能部分归因于这三个代码中采用的不同的多重散射理论和电子传输的蒙特卡洛模型。由EGSnrc代码计算出的剂量比由EGS4计算出的剂量更准确。对于小于6 mm的径向距离,这两个计算结果相差5%以内。

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