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Developing a Treatment Planning Software Based on TG-43U1 Formalism for Cs-137 LDR Brachytherapy

BACKGROUND: The old Treatment Planning Systems (TPSs) used for intracavitary brachytherapy with Cs-137 Selectron source utilize traditional dose calculation methods, considering each source as a point source. Using such methods introduces significant errors in dose estimation. As of 1995, TG-43 is u...

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Autores principales: Sina, Sedigheh, Faghihi, Reza, Soleimani Meigooni, Ali, Siavashpour, Zahra, Mosleh-Shirazi, Mohammad Amin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Kowsar 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3918197/
https://www.ncbi.nlm.nih.gov/pubmed/24578840
http://dx.doi.org/10.5812/ircmj.4938
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author Sina, Sedigheh
Faghihi, Reza
Soleimani Meigooni, Ali
Siavashpour, Zahra
Mosleh-Shirazi, Mohammad Amin
author_facet Sina, Sedigheh
Faghihi, Reza
Soleimani Meigooni, Ali
Siavashpour, Zahra
Mosleh-Shirazi, Mohammad Amin
author_sort Sina, Sedigheh
collection PubMed
description BACKGROUND: The old Treatment Planning Systems (TPSs) used for intracavitary brachytherapy with Cs-137 Selectron source utilize traditional dose calculation methods, considering each source as a point source. Using such methods introduces significant errors in dose estimation. As of 1995, TG-43 is used as the main dose calculation formalism in treatment TPSs. OBJECTIVES: The purpose of this study is to design and establish a treatment planning software for Cs-137 Solectron brachytherapy source, based on TG-43U1 formalism by applying the effects of the applicator and dummy spacers. MATERIALS AND METHODS: Two softwares used for treatment planning of Cs-137 sources in Iran (STPS and PLATO), are based on old formalisms. The purpose of this work is to establish and develop a TPS for Selectron source based on TG-43 formalism. In this planning system, the dosimetry parameters of each pellet in different places inside applicators were obtained by MCNP4c code. Then the dose distribution around every combination of active and inactive pellets was obtained by summing the doses. The accuracy of this algorithm was checked by comparing its results for special combination of active and inactive pellets with MC simulations. Finally, the uncertainty of old dose calculation formalism was investigated by comparing the results of STPS and PLATO softwares with those obtained by the new algorithm. RESULTS: For a typical arrangement of 10 active pellets in the applicator, the percentage difference between doses obtained by the new algorithm at 1cm distance from the tip of the applicator and those obtained by old formalisms is about 30%, while the difference between the results of MCNP and the new algorithm is less than 5%. CONCLUSIONS: According to the results, the old dosimetry formalisms, overestimate the dose especially towards the applicator’s tip. While the TG-43U1 based software perform the calculations more accurately.
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spelling pubmed-39181972014-02-27 Developing a Treatment Planning Software Based on TG-43U1 Formalism for Cs-137 LDR Brachytherapy Sina, Sedigheh Faghihi, Reza Soleimani Meigooni, Ali Siavashpour, Zahra Mosleh-Shirazi, Mohammad Amin Iran Red Crescent Med J Research Article BACKGROUND: The old Treatment Planning Systems (TPSs) used for intracavitary brachytherapy with Cs-137 Selectron source utilize traditional dose calculation methods, considering each source as a point source. Using such methods introduces significant errors in dose estimation. As of 1995, TG-43 is used as the main dose calculation formalism in treatment TPSs. OBJECTIVES: The purpose of this study is to design and establish a treatment planning software for Cs-137 Solectron brachytherapy source, based on TG-43U1 formalism by applying the effects of the applicator and dummy spacers. MATERIALS AND METHODS: Two softwares used for treatment planning of Cs-137 sources in Iran (STPS and PLATO), are based on old formalisms. The purpose of this work is to establish and develop a TPS for Selectron source based on TG-43 formalism. In this planning system, the dosimetry parameters of each pellet in different places inside applicators were obtained by MCNP4c code. Then the dose distribution around every combination of active and inactive pellets was obtained by summing the doses. The accuracy of this algorithm was checked by comparing its results for special combination of active and inactive pellets with MC simulations. Finally, the uncertainty of old dose calculation formalism was investigated by comparing the results of STPS and PLATO softwares with those obtained by the new algorithm. RESULTS: For a typical arrangement of 10 active pellets in the applicator, the percentage difference between doses obtained by the new algorithm at 1cm distance from the tip of the applicator and those obtained by old formalisms is about 30%, while the difference between the results of MCNP and the new algorithm is less than 5%. CONCLUSIONS: According to the results, the old dosimetry formalisms, overestimate the dose especially towards the applicator’s tip. While the TG-43U1 based software perform the calculations more accurately. Kowsar 2013-08-05 2013-08 /pmc/articles/PMC3918197/ /pubmed/24578840 http://dx.doi.org/10.5812/ircmj.4938 Text en Copyright © 2013, Iranian Red Crescent Medical Journal; Licensee Kowsar Ltd http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Sina, Sedigheh
Faghihi, Reza
Soleimani Meigooni, Ali
Siavashpour, Zahra
Mosleh-Shirazi, Mohammad Amin
Developing a Treatment Planning Software Based on TG-43U1 Formalism for Cs-137 LDR Brachytherapy
title Developing a Treatment Planning Software Based on TG-43U1 Formalism for Cs-137 LDR Brachytherapy
title_full Developing a Treatment Planning Software Based on TG-43U1 Formalism for Cs-137 LDR Brachytherapy
title_fullStr Developing a Treatment Planning Software Based on TG-43U1 Formalism for Cs-137 LDR Brachytherapy
title_full_unstemmed Developing a Treatment Planning Software Based on TG-43U1 Formalism for Cs-137 LDR Brachytherapy
title_short Developing a Treatment Planning Software Based on TG-43U1 Formalism for Cs-137 LDR Brachytherapy
title_sort developing a treatment planning software based on tg-43u1 formalism for cs-137 ldr brachytherapy
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3918197/
https://www.ncbi.nlm.nih.gov/pubmed/24578840
http://dx.doi.org/10.5812/ircmj.4938
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