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首页> 外文期刊>Iranian journal of radiation research : >TG-60 dosimetry parameters calculation for the beta-emitter ~(153)Sm brachytherapy source using MCNP
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TG-60 dosimetry parameters calculation for the beta-emitter ~(153)Sm brachytherapy source using MCNP

机译:使用MCNP的β-发射极〜(153)Sm近距离放射源的TG-60剂量学参数计算

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摘要

Background: The formalism recommended by Task Group 60 (TG-60) of the American Association of Physicists in Medicine (AAPM) is applicable for beta sources. Radioactive biocompatible and biodegradable ~(153)Sm glass seed without encapsulation is a beta-emitter with a short half life and delivers a high dose rate to the tumor in the millimeter range. In this work the dosimetry parameters of the seed for brachytherapy were evaluated. Materials and Methods: Using MCNP4C code data, the Dosimetric parameters of AAPM TG-60 recommendations including the reference dose rate, the radial dose function and the anisotropy function were obtained. Two dimensional dose distributions were also calculated. Results: The dose rate at reference point was estimated to be 9.41 cGy.h~(-1).muCi~(-1) for ~(153)Sm. ~(153)Sm with its relatively low energy beta component falls off the most rapidly of the other beta emitters. The calculated data was compared with that of several beta and photon emitting seeds. Conclusion: The results showed the advantage of the beta emitting ~(153)Sm source in comparison with the other beta emitting sources, Because of its rapid dose fall-off of beta-ray and high dose rate at the short distances of the seed. The results would be helpful in development of the radioactive implants using ~(153)Sm seeds for the brachytherapy treatment.
机译:背景:美国医学物理学会(AAPM)的第60任务组(TG-60)建议的形式适用于beta来源。无需包封的放射性生物相容性和可生物降解的〜(153)Sm玻璃种子是具有短半衰期的β-发射体,可在毫米范围内为肿瘤提供高剂量率。在这项工作中,评估了近距离放射治疗种子的剂量参数。材料和方法:使用MCNP4C代码数据,获得AAPM TG-60建议的剂量参数,包括参考剂量率,径向剂量函数和各向异性函数。还计算了二维剂量分布。结果:对于〜(153)Sm,参考点的剂量率估计为9.41 cGy.h〜(-1).muCi〜(-1)。 〜(153)Sm具有相对较低的能量β组分,是其他β发射体中下降最快的部分。将计算的数据与几个发射β和光子的种子的数据进行比较。结论:结果表明,与其他β发射源相比,β发射〜(153)Sm源具有优势,因为它的β射线剂量迅速下降,并且在短距离种子中具有高剂量率。该结果将有助于开发使用〜(153)Sm种子进行近距离放射治疗的放射性植入物。

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