Literature DB >> 18383670

Design and evaluation of a HDR skin applicator with flattening filter.

D Granero1, J Pérez-Calatayud, J Gimeno, F Ballester, E Casal, V Crispín, R van der Laarse.   

Abstract

The purposes of this study are: (i) to design field flattening filters for the Leipzig applicators of 2 and 3 cm of inner diameter with the source traveling parallel to the applicator contact surface, which are accessories of the microSelectron-HDR afterloader (Nucletron, Veenendaal, The Netherlands). These filters, made of tungsten, aim to flatten the heterogeneous dose distribution obtained with the Leipzig applicators. (ii) To estimate the dose rate distributions for these Leipzig+filter applicators by means of the Monte Carlo (MC) method. (iii) To experimentally verify these distributions for prototypes of these new applicators, and (iv) to obtain the correspondence factors to measure the output of the applicators by the user using an insert into a well chamber. The MC GEANT4 code has been used to design the filters and to obtain the dose rate distributions in liquid water for the two Leipzig+filter applicators. In order to validate this specific application and to guarantee that realistic source-applicator geometry has been considered, an experimental verification procedure was implemented in this study, in accordance with the updated recommendations of the American Association of Physicists in Medicine Task Group No. 43 U1 Report. Thermoluminescent dosimeters, radiochromic film, and a pin-point ionization chamber in a plastic [polymethylmethacrylate (PMMA)] phantom were used to verify the MC results for the two applicators of a microSelectron-HDR afterloader with the mHDR-v2 source. To verify the output of the Leipzig +filter applicators, correspondence factors were deduced for the well chambers HDR100-plus (Standard Imaging, Inc., Middleton, WI) and TM33004 (PTW, Freiburg, Germany) using a specific insert for both applicators. The doses measured in the PMMA phantom agree within experimental uncertainties with the dose obtained by the MC calculations. Percentage depth dose and off-axis profiles were obtained normalized at a depth of 3 mm along the central applicator axis in a cylindrical 20 x 20 cm water phantom. A table of output factors, normalized to 1 U of source air kerma strength at this depth, is presented. Correspondence factors were obtained for the two well chambers considered. The matrix data obtained in the MC simulation with a grid separation of 0.5 mm has been used to build a data set in a convenient format to model these distributions for routine use with a brachytherapy treatment planning system.

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Year:  2008        PMID: 18383670     DOI: 10.1118/1.2825622

Source DB:  PubMed          Journal:  Med Phys        ISSN: 0094-2405            Impact factor:   4.071


  17 in total

1.  Recommendations of the Spanish brachytherapy group (GEB) of Spanish Society of Radiation Oncology (SEOR) and the Spanish Society of Medical Physics (SEFM) for high-dose rate (HDR) non melanoma skin cancer brachytherapy.

Authors:  S Rodríguez; M Arenas; C Gutierrez; J Richart; J Perez-Calatayud; F Celada; M Santos; A Rovirosa
Journal:  Clin Transl Oncol       Date:  2017-08-14       Impact factor: 3.405

2.  Dosimetric characterization and output verification for conical brachytherapy surface applicators. Part II. High dose rate 192Ir sources.

Authors:  Regina K Fulkerson; John A Micka; Larry A DeWerd
Journal:  Med Phys       Date:  2014-02       Impact factor: 4.071

3.  Dosimetric characterization and output verification for conical brachytherapy surface applicators. Part I. Electronic brachytherapy source.

Authors:  Regina K Fulkerson; John A Micka; Larry A DeWerd
Journal:  Med Phys       Date:  2014-02       Impact factor: 4.071

Review 4.  Clinical implementation of a new electronic brachytherapy system for skin brachytherapy.

Authors:  Olga Pons-Llanas; Rosa Ballester-Sánchez; Francisco Javier Celada-Álvarez; Cristian Candela-Juan; Teresa García-Martínez; Margarita Llavador-Ros; Rafael Botella-Estrada; Christopher A Barker; Antonio Ballesta; Alejandro Tormo-Micó; Silvia Rodríguez; Jose Perez-Calatayud
Journal:  J Contemp Brachytherapy       Date:  2014-12-31

5.  Dosimetric characteristics of a new unit for electronic skin brachytherapy.

Authors:  Teresa Garcia-Martinez; Jan-Pieter Chan; Jose Perez-Calatayud; Facundo Ballester
Journal:  J Contemp Brachytherapy       Date:  2014-02-19

6.  Depth determination of skin cancers treated with superficial brachytherapy: ultrasound vs. histopathology.

Authors:  Rosa Ballester-Sánchez; Olga Pons-Llanas; Margarita Llavador-Ros; Rafael Botella-Estrada; Antonio Ballester-Cuñat; Alejandro Tormo-Micó; Francisco Javier Celadá-Álvarez; Silvia Rodríguez-Villalba; Manuel Santos-Ortega; Facundo Ballester-Pallarés; Jose Perez-Calatayud
Journal:  J Contemp Brachytherapy       Date:  2014-12-31

Review 7.  Novel simple templates for reproducible positioning of skin applicators in brachytherapy.

Authors:  Silvia Rodríguez Villalba; Maria Jose Perez-Calatayud; Juan Antonio Bautista; Vicente Carmona; Francisco Celada; Alejandro Tormo; Teresa García-Martinez; José Richart; Manuel Santos Ortega; Magda Silla; Facundo Ballester; Jose Perez-Calatayud
Journal:  J Contemp Brachytherapy       Date:  2016-08-09

8.  Dosimetric evaluation of internal shielding in a high dose rate skin applicator.

Authors:  Françoise Lliso; Domingo Granero; Jose Perez-Calatayud; Vicente Carmona; M Carmen Pujades; Facundo Ballester
Journal:  J Contemp Brachytherapy       Date:  2011-03-31

9.  Non-melanoma skin cancer treated with HDR Valencia applicator: clinical outcomes.

Authors:  Alejandro Tormo; Francisco Celada; Silvia Rodriguez; Rafael Botella; Antonio Ballesta; Michael Kasper; Zoubir Ouhib; Manuel Santos; Jose Perez-Calatayud
Journal:  J Contemp Brachytherapy       Date:  2014-06-03

10.  Non-melanoma skin cancer treated with high-dose-rate brachytherapy and Valencia applicator in elderly patients: a retrospective case series.

Authors:  Durim Delishaj; Concetta Laliscia; Bruno Manfredi; Stefano Ursino; Francesco Pasqualetti; Ezio Lombardo; Franco Perrone; Riccardo Morganti; Fabiola Paiar; Maria Grazia Fabrini
Journal:  J Contemp Brachytherapy       Date:  2015-11-23
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