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

Producción científica: Articlerevisión exhaustiva

7 Citas (Scopus)

Resumen

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.

Idioma originalEnglish
Páginas (desde-hasta)170-178
Número de páginas9
PublicaciónRadiology and Oncology
Volumen46
N.º2
DOI
EstadoPublished - jun 1 2012

Financiación

The authors would like to thank Dr. Yasha Makhdoomi and Mr. Mojtaba Taheri for their valuable assistances in this study. This project was fully funded by Mashhad University of Medical Sciences (MUMS).

Financiadores
Mashhad University of Medical Sciences

    ASJC Scopus subject areas

    • Oncology
    • Radiology Nuclear Medicine and imaging

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