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Uncertainty quantification analysis and optimization for proton therapy beam lines

Since many years proton therapy is an effective treatment solution against deep-seated tumors. A precise quantification of sources of uncertainty in each proton therapy aspect (e.g. accelerator, beam lines, patient positioning, treatment planning) is of profound importance to increase the accuracy o...

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Detalles Bibliográficos
Autores principales: Rizzoglio, V, Adelmann, A, Gerbershagen, A, Meer, D, Nesteruk, K P, Schippers, J M
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.ejmp.2020.05.013
http://cds.cern.ch/record/2799887
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author Rizzoglio, V
Adelmann, A
Gerbershagen, A
Meer, D
Nesteruk, K P
Schippers, J M
author_facet Rizzoglio, V
Adelmann, A
Gerbershagen, A
Meer, D
Nesteruk, K P
Schippers, J M
author_sort Rizzoglio, V
collection CERN
description Since many years proton therapy is an effective treatment solution against deep-seated tumors. A precise quantification of sources of uncertainty in each proton therapy aspect (e.g. accelerator, beam lines, patient positioning, treatment planning) is of profound importance to increase the accuracy of the dose delivered to the patient. Together with Monte Carlo techniques, a new research field called Uncertainty Quantification (UQ) has been recently introduced to verify the robustness of the treatment planning. In this work we present the first application of UQ as a method to identify typical errors in the transport lines of a cyclotron-based proton therapy facility and analyze their impact on the properties of the therapeutic beams. We also demonstrate the potential of UQ methods in developing optimized beam optics solutions for high-dimensional problems. Sensitivity analysis and surrogate models offer a fast way to exclude unimportant parameters frcomplex optimization problems such as the design of a superconducting gantry performed at Paul Scherrer Institute in Switzerland.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
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spelling cern-27998872022-01-25T10:46:25Zdoi:10.1016/j.ejmp.2020.05.013http://cds.cern.ch/record/2799887engRizzoglio, VAdelmann, AGerbershagen, AMeer, DNesteruk, K PSchippers, J MUncertainty quantification analysis and optimization for proton therapy beam linesHealth Physics and Radiation EffectsSince many years proton therapy is an effective treatment solution against deep-seated tumors. A precise quantification of sources of uncertainty in each proton therapy aspect (e.g. accelerator, beam lines, patient positioning, treatment planning) is of profound importance to increase the accuracy of the dose delivered to the patient. Together with Monte Carlo techniques, a new research field called Uncertainty Quantification (UQ) has been recently introduced to verify the robustness of the treatment planning. In this work we present the first application of UQ as a method to identify typical errors in the transport lines of a cyclotron-based proton therapy facility and analyze their impact on the properties of the therapeutic beams. We also demonstrate the potential of UQ methods in developing optimized beam optics solutions for high-dimensional problems. Sensitivity analysis and surrogate models offer a fast way to exclude unimportant parameters frcomplex optimization problems such as the design of a superconducting gantry performed at Paul Scherrer Institute in Switzerland.oai:cds.cern.ch:27998872020
spellingShingle Health Physics and Radiation Effects
Rizzoglio, V
Adelmann, A
Gerbershagen, A
Meer, D
Nesteruk, K P
Schippers, J M
Uncertainty quantification analysis and optimization for proton therapy beam lines
title Uncertainty quantification analysis and optimization for proton therapy beam lines
title_full Uncertainty quantification analysis and optimization for proton therapy beam lines
title_fullStr Uncertainty quantification analysis and optimization for proton therapy beam lines
title_full_unstemmed Uncertainty quantification analysis and optimization for proton therapy beam lines
title_short Uncertainty quantification analysis and optimization for proton therapy beam lines
title_sort uncertainty quantification analysis and optimization for proton therapy beam lines
topic Health Physics and Radiation Effects
url https://dx.doi.org/10.1016/j.ejmp.2020.05.013
http://cds.cern.ch/record/2799887
work_keys_str_mv AT rizzogliov uncertaintyquantificationanalysisandoptimizationforprotontherapybeamlines
AT adelmanna uncertaintyquantificationanalysisandoptimizationforprotontherapybeamlines
AT gerbershagena uncertaintyquantificationanalysisandoptimizationforprotontherapybeamlines
AT meerd uncertaintyquantificationanalysisandoptimizationforprotontherapybeamlines
AT nesterukkp uncertaintyquantificationanalysisandoptimizationforprotontherapybeamlines
AT schippersjm uncertaintyquantificationanalysisandoptimizationforprotontherapybeamlines