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首页> 外文期刊>Journal of applied clinical medical physics / >Technical Note: Monte Carlo calculations of the AAPM TG‐43 brachytherapy dosimetry parameters for a new titanium‐encapsulated Yb‐169 source
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Technical Note: Monte Carlo calculations of the AAPM TG‐43 brachytherapy dosimetry parameters for a new titanium‐encapsulated Yb‐169 source

机译:技术说明:针对新型钛封装的Yb-169放射源的AAPM TG-43近距离放射治疗剂量参数的Monte Carlo计算

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Due to a number of distinct advantages resulting from the relatively low energy gamma ray spectrum of Yb-169, various designs of Yb-169 sources have been developed over the years for brachytherapy applications. Lately, Yb-169 has also been suggested as an effective and practical radioisotope option for a novel radiation treatment approach often known as gold nanoparticle-aided radiation therapy (GNRT). In a recently published study, the current investigators used the Monte Carlo N-Particle Version 5 (MCNP5) code to design a novel titanium-encapsulated Yb-169 source optimized for GNRT applications. In this study, the original MC source model was modified to accurately match the specifications of the manufactured Yb-169 source. The modified MC model was then used to obtain a complete set of the AAPM TG-43 parameters for the new titanium-encapsulated Yb-169 source. The MC-calculated dose rate constant for this titanium-encapsulated Yb-169 source was 1.19 ± 0.03 c G y · h ? 1 · U ? 1 , indicating no significant change from the values reported for stainless steel-encapsulated Yb-169 sources. The source anisotropy and radial dose function for the new source were also found similar to those reported for the stainless steel-encapsulated Yb-169 sources. The current results suggest that the use of titanium, instead of stainless steel, to encapsulate the Yb-169 core would not lead to any major change in the dosimetric characteristics of the Yb-169 source. The results also show that the titanium encapsulation of the Yb-169 source could be accomplished while meeting the design goals as described in the current investigators’ published MC optimization study for GNRT applications.
机译:由于Yb-169的相对较低能量的伽玛射线谱具有许多明显的优势,多年来为近距离放射治疗应用开发了各种设计的Yb-169光源。最近,Yb-169也被建议作为一种新颖的放射治疗方法的有效和实用的放射性同位素选择,通常被称为金纳米粒子辅助放射治疗(GNRT)。在最近发表的一项研究中,当前的研究人员使用蒙特卡罗N粒子第5版(MCNP5)代码设计了一种针对GNRT应用进行了优化的新型钛封装Yb-169光源。在这项研究中,对原始MC源模型进行了修改,以准确匹配制造的Yb-169源的规格。然后,使用修改后的MC模型为新的钛封装Yb-169源获得完整的AAPM TG-43参数集。该钛封装的Yb-169光源的MC计算剂量率常数为1.19±0.03 c G y·h? 1·U?图1表示与报道的不锈钢封装Yb-169来源的值相比没有明显变化。还发现新源的源各向异性和径向剂量函数与报道的不锈钢封装Yb-169源相似。目前的结果表明,使用钛代替不锈钢来封装Yb-169磁芯不会导致Yb-169光源的剂量特性发生任何重大变化。结果还表明,Yb-169源的钛封装可以实现,同时满足当前研究者针对GNRT应用发布的MC优化研究中所述的设计目标。

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