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Dosimetric evaluation of Acuros XB Advanced Dose Calculation algorithm in heterogeneous media

BACKGROUND: A study was realised to evaluate and determine relative figures of merit of a new algorithm for photon dose calculation when applied to inhomogeneous media. METHODS: The new Acuros XB algorithm implemented in the Varian Eclipse treatment planning system was compared against a Monte Carlo...

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Autores principales: Fogliata, Antonella, Nicolini, Giorgia, Clivio, Alessandro, Vanetti, Eugenio, Cozzi, Luca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: BioMed Central 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3168411/
https://www.ncbi.nlm.nih.gov/pubmed/21771317
http://dx.doi.org/10.1186/1748-717X-6-82
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author Fogliata, Antonella
Nicolini, Giorgia
Clivio, Alessandro
Vanetti, Eugenio
Cozzi, Luca
author_facet Fogliata, Antonella
Nicolini, Giorgia
Clivio, Alessandro
Vanetti, Eugenio
Cozzi, Luca
author_sort Fogliata, Antonella
collection PubMed
description BACKGROUND: A study was realised to evaluate and determine relative figures of merit of a new algorithm for photon dose calculation when applied to inhomogeneous media. METHODS: The new Acuros XB algorithm implemented in the Varian Eclipse treatment planning system was compared against a Monte Carlo method (VMC++), and the Analytical Anisotropic Algorithm (AAA). The study was carried out in virtual phantoms characterized by simple geometrical structures. An insert of different material and density was included in a phantom built of skeletal-muscle and HU = 0 (setting "A"): Normal Lung (lung, 0.198 g/cm(3)); Light Lung (lung, 0.035 g/cm(3)); Bone (bone, 1.798 g/cm(3)); another phantom (setting "B") was built of adipose material and including thin layers of bone (1.85 g/cm(3)), adipose (0.92 g/cm(3)), cartilage (1.4745 g/cm(3)), air (0.0012 g/cm(3)). Investigations were performed for 6 and 15 MV photon beams, and for a large (13 × 13 cm(2)) and a small (2.8 × 13 cm(2)) field. RESULTS: Results are provided in terms of depth dose curves, transverse profiles and Gamma analysis (3 mm/3% and 2 mm/2% distance to agreement/dose difference criteria) in planes parallel to the beam central axis; Monte Carlo simulations were assumed as reference. Acuros XB gave an average gamma agreement, with a 3 mm/3% criteria, of 100%, 86% and 100% for Normal Lung, Light Lung and Bone settings, respectively, and dose to medium calculations. The same figures were 86%, 11% and 100% for AAA, where only dose rescaled to water calculations are possible. CONCLUSIONS: In conclusion, Acuros XB algorithm provides a valid and accurate alternative to Monte Carlo calculations for heterogeneity management.
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spelling pubmed-31684112011-09-08 Dosimetric evaluation of Acuros XB Advanced Dose Calculation algorithm in heterogeneous media Fogliata, Antonella Nicolini, Giorgia Clivio, Alessandro Vanetti, Eugenio Cozzi, Luca Radiat Oncol Research BACKGROUND: A study was realised to evaluate and determine relative figures of merit of a new algorithm for photon dose calculation when applied to inhomogeneous media. METHODS: The new Acuros XB algorithm implemented in the Varian Eclipse treatment planning system was compared against a Monte Carlo method (VMC++), and the Analytical Anisotropic Algorithm (AAA). The study was carried out in virtual phantoms characterized by simple geometrical structures. An insert of different material and density was included in a phantom built of skeletal-muscle and HU = 0 (setting "A"): Normal Lung (lung, 0.198 g/cm(3)); Light Lung (lung, 0.035 g/cm(3)); Bone (bone, 1.798 g/cm(3)); another phantom (setting "B") was built of adipose material and including thin layers of bone (1.85 g/cm(3)), adipose (0.92 g/cm(3)), cartilage (1.4745 g/cm(3)), air (0.0012 g/cm(3)). Investigations were performed for 6 and 15 MV photon beams, and for a large (13 × 13 cm(2)) and a small (2.8 × 13 cm(2)) field. RESULTS: Results are provided in terms of depth dose curves, transverse profiles and Gamma analysis (3 mm/3% and 2 mm/2% distance to agreement/dose difference criteria) in planes parallel to the beam central axis; Monte Carlo simulations were assumed as reference. Acuros XB gave an average gamma agreement, with a 3 mm/3% criteria, of 100%, 86% and 100% for Normal Lung, Light Lung and Bone settings, respectively, and dose to medium calculations. The same figures were 86%, 11% and 100% for AAA, where only dose rescaled to water calculations are possible. CONCLUSIONS: In conclusion, Acuros XB algorithm provides a valid and accurate alternative to Monte Carlo calculations for heterogeneity management. BioMed Central 2011-07-19 /pmc/articles/PMC3168411/ /pubmed/21771317 http://dx.doi.org/10.1186/1748-717X-6-82 Text en Copyright ©2011 Fogliata et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/2.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Fogliata, Antonella
Nicolini, Giorgia
Clivio, Alessandro
Vanetti, Eugenio
Cozzi, Luca
Dosimetric evaluation of Acuros XB Advanced Dose Calculation algorithm in heterogeneous media
title Dosimetric evaluation of Acuros XB Advanced Dose Calculation algorithm in heterogeneous media
title_full Dosimetric evaluation of Acuros XB Advanced Dose Calculation algorithm in heterogeneous media
title_fullStr Dosimetric evaluation of Acuros XB Advanced Dose Calculation algorithm in heterogeneous media
title_full_unstemmed Dosimetric evaluation of Acuros XB Advanced Dose Calculation algorithm in heterogeneous media
title_short Dosimetric evaluation of Acuros XB Advanced Dose Calculation algorithm in heterogeneous media
title_sort dosimetric evaluation of acuros xb advanced dose calculation algorithm in heterogeneous media
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3168411/
https://www.ncbi.nlm.nih.gov/pubmed/21771317
http://dx.doi.org/10.1186/1748-717X-6-82
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