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TG-43 U1 based dosimetric characterization of model 67-6520 Cs-137 brachytherapy source

  • Ali S. Meigooni
  • , Clarissa Wright
  • , Rafiq A. Koona
  • , Shahid B. Awan
  • , Domingo Granero
  • , Jose Perez-Calatayud
  • , Facundo Ballester

Producción científica: Articlerevisión exhaustiva

14 Citas (Scopus)

Resumen

Purpose: Brachytherapy treatment has been a cornerstone for management of various cancer sites, particularly for the treatment of gynecological malignancies. In low dose rate brachytherapy treatments, 137Cs sources have been used for several decades. A new 137Cs source design has been introduced (model 67-6520, source B3-561) by Isotope Products Laboratories (IPL) for clinical application. The goal of the present work is to implement the TG-43 U1 protocol in the characterization of the aforementioned 137Cs source. Methods: The dosimetric characteristics of the IPL 137Cs source are measured using LiF thermoluminescent dosimeters in a Solid Water phantom material and calculated using Monte Carlo simulations with the GEANT4 code in Solid Water and liquid water. The dose rate constant, radial dose function, and two-dimensional anisotropy function of this source model were obtained following the TG-43 U1 recommendations. In addition, the primary and scatter dose separation (PSS) formalism that could be used in convolution/superposition methods to calculate dose distributions around brachytherapy sources in heterogeneous media was studied. Results: The measured and calculated dose rate constants of the IPL 137Cs source in Solid Water were found to be 0.930 (±7.3%) and 0.928 (±2.6%) cGy h -1 U-1, respectively. The agreement between these two methods was within our experimental uncertainties. The Monte Carlo calculated value in liquid water of the dose rate constant was =0.948 (±2.6%) cGy h-1 U-1. Similarly, the agreement between measured and calculated radial dose functions and the anisotropy functions was found to be within ±5%. In addition, the tabulated data that are required to characterize the source using the PSS formalism were derived. Conclusions: In this article the complete dosimetry of the newly designed 137Cs IPL source following the AAPM TG-43 U1 dosimetric protocol and the PSS formalism is provided.

Idioma originalEnglish
Páginas (desde-hasta)4711-4719
Número de páginas9
PublicaciónMedical Physics
Volumen36
N.º10
DOI
EstadoPublished - 2009

Financiación

One of the authors (A.S.M.) would like to thank Rebecca F. Duncan, Venkata Rachabatthula, and Curtis Baker for their valuable contributions during the TLD dosimetry procedures. This study was supported in part by Radiation Products and Design, Inc. and by the Generalitat Valencia (Project No. Prometeo/2008/114) and the Spanish Ministerio de Ciencia y Tecnología (Project Nos. FPA2007–65013-C02-01 and FPA2006-12120-C03-02).

FinanciadoresNúmero del financiador
Spanish Ministerio de Ciencia y TecnologíaFPA2007–65013-C02-01, FPA2006-12120-C03-02
Generalitat ValencianaPrometeo/2008/114

    ODS de las Naciones Unidas

    Este resultado contribuye a los siguientes Objetivos de Desarrollo Sostenible

    1. Good health and well being
      Good health and well being

    ASJC Scopus subject areas

    • Biophysics
    • Radiology Nuclear Medicine and imaging

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