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Monte Carlo and experimental high dose rate 192Ir brachytherapy dosimetry with microDiamond detectors.
Rossi, Giulio; Gainey, Mark; Thomann, Benedikt; Kollefrath, Michael; Würfel, Jan; Allgaier, Bernd; Baltas, Dimos.
Afiliación
  • Rossi G; Division of Medical Physics, Department of Radiation Oncology, Medical Center, Faculty of Medicine, University of Freiburg, German Cancer Consortium (DKTK) Partner Site Freiburg, German Cancer Research Center (DKFZ), Heidelberg, Germany. Electronic address: giulio.rossi@uniklinik-freiburg.de.
  • Gainey M; Division of Medical Physics, Department of Radiation Oncology, Medical Center, Faculty of Medicine, University of Freiburg, German Cancer Consortium (DKTK) Partner Site Freiburg, German Cancer Research Center (DKFZ), Heidelberg, Germany.
  • Thomann B; Division of Medical Physics, Department of Radiation Oncology, Medical Center, Faculty of Medicine, University of Freiburg, German Cancer Consortium (DKTK) Partner Site Freiburg, German Cancer Research Center (DKFZ), Heidelberg, Germany.
  • Kollefrath M; Division of Medical Physics, Department of Radiation Oncology, Medical Center, Faculty of Medicine, University of Freiburg, German Cancer Consortium (DKTK) Partner Site Freiburg, German Cancer Research Center (DKFZ), Heidelberg, Germany.
  • Würfel J; PTW-Freiburg GmbH, Freiburg, Germany.
  • Allgaier B; PTW-Freiburg GmbH, Freiburg, Germany.
  • Baltas D; Division of Medical Physics, Department of Radiation Oncology, Medical Center, Faculty of Medicine, University of Freiburg, German Cancer Consortium (DKTK) Partner Site Freiburg, German Cancer Research Center (DKFZ), Heidelberg, Germany.
Z Med Phys ; 29(3): 272-281, 2019 Aug.
Article en En | MEDLINE | ID: mdl-30340801
ABSTRACT
The purpose of this study was to investigate the suitability of the microDiamond detector (mDD) type 60019 (PTW-Freiburg, Germany) for radial dose function measurements with High Dose Rate (HDR) 192Ir brachytherapy sources. An HDR 192Ir source model mHDR v2r (Nucletron BV, an Elekta company, The Netherlands) was placed at the centre of a MP3 water phantom (PTW-Freiburg, Germany) within a 4F needle. Three mDDs were employed to measure the radial dose function of the source by acquiring profiles along the source transverse axis. Meanwhile, the experimental setup was simulated using the Monte Carlo (MC) code MCNP6.1™ (Los Alamos National Laboratory, USA) to calculate phantom-size, absorbed-dose energy dependence and volume averaging correction factors. After applying the correction factors, the radial dose function gL(r) for the line source approximation was calculated as defined in the TG-43 formalism at radial distances from 0.5cm to 10cm and compared to the consensus gL(r) (ESTRO and AAPM). The percentage differences to the consensus gL(r) for all the three mDDs were from -2.3% to +1.4% for distances r≤5cm and -6.2% to +2.6% for larger distances. These results indicate the suitability of the mDD for HDR brachytherapy measurements when all required corrections are applied.
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Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Radiometría / Braquiterapia / Radioisótopos de Iridio / Método de Montecarlo / Diamante / Microtecnología Tipo de estudio: Health_economic_evaluation / Prognostic_studies Idioma: En Revista: Z Med Phys Asunto de la revista: RADIOTERAPIA Año: 2019 Tipo del documento: Article

Texto completo: 1 Colección: 01-internacional Banco de datos: MEDLINE Asunto principal: Radiometría / Braquiterapia / Radioisótopos de Iridio / Método de Montecarlo / Diamante / Microtecnología Tipo de estudio: Health_economic_evaluation / Prognostic_studies Idioma: En Revista: Z Med Phys Asunto de la revista: RADIOTERAPIA Año: 2019 Tipo del documento: Article