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32P 玻璃微球经动脉内近距离放疗的剂量率分布。

Dose-rate distribution of 32P-glass microspheres for intra-arterial brachytherapy.

机构信息

Centro de Ciência e Tecnologia de Materiais, IPEN, Av. Lineu Prestes 2242, Sao Paulo, Sao Paulo 05508-000, Brazil.

出版信息

Med Phys. 2010 Feb;37(2):532-9. doi: 10.1118/1.3284210.

Abstract

PURPOSE

The intra-arterial administration of radioactive glass microspheres is an alternative therapy option for treating primary hepatocellular carcinoma, the main cause of liver cancer death, and metastatic liver cancer, another important kind of cancer induced in the liver. The technique involves the administration of radioactive microspheres in the hepatic artery, which are trapped preferentially in the tumor.

METHODS

In this work the GEANT4 toolkit was used to calculate the radial dose-rate distributions in water from 32P-loaded glass microspheres and also from 90Y-loaded glass microspheres. To validate the toolkit for this application, the authors compared the dose-rate distribution of 32P and 90Y point sources in water with data from the International Commission on Radiation Units and Measurements report 72.

RESULTS

Tables of radial dose-rate distributions are provided for practical use in brachytherapy planning with these microspheres.

CONCLUSIONS

The simulations with the microspheres show that the shape of the beta ray energy spectra with respect to the 32P and 90Y sources is significantly modified by the glass matrix.

摘要

目的

放射性玻璃微球的动脉内给药是治疗原发性肝细胞癌(肝癌死亡的主要原因)和转移性肝癌(另一种在肝脏中发生的重要癌症)的替代治疗选择。该技术涉及将放射性微球注入肝动脉,这些微球优先被肿瘤捕获。

方法

在这项工作中,GEANT4 工具包用于计算水中 32P 负载玻璃微球和 90Y 负载玻璃微球的径向剂量率分布。为了验证该工具包在该应用中的适用性,作者将 32P 和 90Y 点源在水中的剂量率分布与国际辐射单位和测量委员会报告 72 中的数据进行了比较。

结果

提供了表格形式的径向剂量率分布,以供使用这些微球进行近距离放射治疗计划。

结论

对微球的模拟表明,玻璃基质显著改变了相对于 32P 和 90Y 源的β射线能谱的形状。

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