首页> 美国卫生研究院文献>Journal of Radiation Research >A comparison of the dose distributions between the brachytherapy 125I source models STM1251 and Oncoseed 6711 in a geometry lacking radiation equilibrium scatter conditions
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A comparison of the dose distributions between the brachytherapy 125I source models STM1251 and Oncoseed 6711 in a geometry lacking radiation equilibrium scatter conditions

机译:在缺乏辐射平衡散射条件的几何结构中近距离放射治疗125I放射源模型STM1251和Oncoseed 6711之间的剂量分布比较

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摘要

The purpose of this study was to estimate the uncertainty in the dose distribution for the 125I source STM1251, as measured with a radiophotoluminescent glass rod dosimeter and calculated using the Monte Carlo code EGS5 in geometry that included the source structure reported by Kirov et al. This was performed at a range of positions in and on a water phantom 18 cm in diameter and 16 cm in length. Some dosimetry positions were so close to the surface that the backscatter margin was insufficient for photons. Consequently, the combined standard uncertainty (CSU) at the coverage factor k of 1 was 11.0–11.2% for the measurement and 1.8–3.6% for the calculation. The calculation successfully reproduced the measured dose distribution within 13%, with CSU at k ≤ 1.6 (P > 0.3). Dose distributions were then compared with those for the 125I source Oncoseed 6711. Our results supported the American Association of Physicists in Medicine Task Group No. 43 Updated Protocol (TG43U1) formalism, in which STM1251 dose distributions were more penetrating than those of Oncoseed 6711. This trend was also observed in the region near the phantom surface lacking the equilibrium radiation scatter conditions. In this region, the difference between the TG43U1 formalism and the measurement and calculation performed in the present study was not significant (P > 0.3) for either of the source models. Selection of the source model based on the treatment plans according to the TG43U1 formalism will be practical.
机译:这项研究的目的是估计 125 I光源STM1251的剂量分布的不确定性,该不确定性是用放射光致发光玻璃棒剂量计测量的,并使用包括该光源的几何形状的蒙特卡洛代码EGS5计算得出基洛夫等人报道的结构。这是在直径18厘米,长度16厘米的水模型中和水模型上的一系列位置上进行的。一些剂量学位置非常靠近表面,以至于反向散射裕量不足以容纳光子。因此,在覆盖因子k为1的情况下,测量的组合标准不确定度(CSU)为11.0-11.2%,计算为1.8-3.6%。计算成功地将测得的剂量分布重现在13%以内,CSU为k≤1.6(P> 0.3)。然后将剂量分布与 125 I来源Oncoseed 6711的剂量分布进行比较。我们的结果支持美国医学物理学会协会任务组第43号更新协议(TG43U1)形式主义,其中STM1251剂量分布为比Oncoseed 6711的穿透力更强。在没有平衡辐射散射条件的幻像表面附近的区域中也观察到了这种趋势。在该区域中,对于任何一种源模型,TG43U1形式主义与本研究中执行的测量和计算之间的差异均不显着(P> 0.3)。根据TG43U1形式,根据治疗计划选择源模型将是可行的。

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