...
首页> 外文期刊>Radiology and Oncology >Dosimetric characterizations of GZP6 60Co high dose rate brachytherapy sources: application of superimposition method
【24h】

Dosimetric characterizations of GZP6 60Co high dose rate brachytherapy sources: application of superimposition method

机译:GZP6 60 Co高剂量率近距离放射治疗源的剂量学表征:叠加方法的应用

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Background. Dosimetric characteristics of a high dose rate (HDR) GZP6 Co-60 brachytherapy source have been evaluated following American Association of Physicists in MedicineTask Group 43U1 (AAPM TG-43U1) recommendations for their clinical applications.Materials and methods. MCNP-4C and MCNPX Monte Carlo codes were utilized to calculate dose rate constant, two dimensional (2D) dose distribution, radial dose function and 2D anisotropy function of the source. These parameters of this source are compared with the available data for Ralstron 60Co and microSelectron192Ir sources. Besides, a superimposition method was developed to extend the obtained results for the GZP6 source No. 3 to other GZP6 sources.Results. The simulated value for dose rate constant for GZP6 source was 1.104?±0.03 cGyh-1U-1. The graphical and tabulated radial dose function and 2D anisotropy function of this source are presented here. The results of these investigations show that the dosimetric parameters of GZP6 source are comparable to those for the Ralstron source. While dose rate constant for the two 60Co sources are similar to that for the microSelectron192Ir source, there are differences between radial dose function and anisotropy functions. Radial dose function of the 192Ir source is less steep than both 60Co source models. In addition, the 60Co sources are showing more isotropic dose distribution than the 192Ir source.Conclusions. The superimposition method is applicable to produce dose distributions for other source arrangements from the dose distribution of a single source. The calculated dosimetric quantities of this new source can be introduced as input data to the GZP6 treatment planning system (TPS) and to validate the performance of the TPS.
机译:背景。高剂量率(HDR)GZP6 Co-60近距离放射治疗源的剂量学特征已根据美国医学物理学会第43U1任务组(AAPM TG-43U1)的临床应用建议进行了评估。材料和方法。 MCNP-4C和MCNPX蒙特卡洛代码用于计算源的剂量率常数,二维(2D)剂量分布,径向剂量函数和2D各向异性函数。将该光源的这些参数与Ralstron 60Co和microSelectron192Ir光源的可用数据进行比较。此外,还开发了一种叠加方法,将3号GZP6光源获得的结果扩展到其他GZP6光源。 GZP6源剂量率常数的模拟值为1.104?±0.03 cGyh-1U-1。此源的图形化和列表化的径向剂量函数和2D各向异性函数在此处显示。这些调查的结果表明,GZP6源的剂量参数与Ralstron源的剂量参数相当。尽管两个60Co离子源的剂量率常数与microSelectron192Ir离子源的剂量率常数相似,但径向剂量函数和各向异性函数之间存在差异。 192Ir源的径向剂量函数不如两个60Co源模型陡。此外,60Co离子源比192Ir离子源显示出更多的各向同性剂量分布。叠加方法适用于从单个源的剂量分布中生成其他源布置的剂量分布。可以将计算出的新来源的剂量学量作为输入数据引入GZP6治疗计划系统(TPS),并验证TPS的性能。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号