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Dose Delivery Verification

This paper focuses on some dosimetry aspects of proton therapy and pencil beam scanning based on the experience accumulated at Paul Scherrer Institute(PSI). The basic formalism for absolute dosimetry in proton therapy is outlined and the two main techniques and equipment to perform the primary beam...

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Autor principal: Safai, S.
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.23730/CYRSP-2017-001.49
http://cds.cern.ch/record/2315175
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author Safai, S.
author_facet Safai, S.
author_sort Safai, S.
collection CERN
description This paper focuses on some dosimetry aspects of proton therapy and pencil beam scanning based on the experience accumulated at Paul Scherrer Institute(PSI). The basic formalism for absolute dosimetry in proton therapy is outlined and the two main techniques and equipment to perform the primary beam monitor chamber calibration are presented. Depth-dose curve and lateral beam width measurements are exposed and discussed in detail, with particular attention to the size of the ionization chamber and the characteristic of scintillating-CCD dosimetry systems, respectively. It is also explained how the angular-spatial distribution of individual pencil beams can be determined in practice. The equipment and the techniques for performing regularmachine-specific quality checks are focused on (i)output constancy checks, (ii)pencil beam position and size checks and (iii)beam energy checks. Finally, patient-specific verification is addressed.
id cern-2315175
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
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spelling cern-23151752023-03-14T17:25:34Zdoi:10.23730/CYRSP-2017-001.49http://cds.cern.ch/record/2315175engSafai, S.Dose Delivery Verificationphysics.med-phHealth Physics and Radiation Effects This paper focuses on some dosimetry aspects of proton therapy and pencil beam scanning based on the experience accumulated at Paul Scherrer Institute(PSI). The basic formalism for absolute dosimetry in proton therapy is outlined and the two main techniques and equipment to perform the primary beam monitor chamber calibration are presented. Depth-dose curve and lateral beam width measurements are exposed and discussed in detail, with particular attention to the size of the ionization chamber and the characteristic of scintillating-CCD dosimetry systems, respectively. It is also explained how the angular-spatial distribution of individual pencil beams can be determined in practice. The equipment and the techniques for performing regularmachine-specific quality checks are focused on (i)output constancy checks, (ii)pencil beam position and size checks and (iii)beam energy checks. Finally, patient-specific verification is addressed.arXiv:1804.08509oai:cds.cern.ch:23151752017
spellingShingle physics.med-ph
Health Physics and Radiation Effects
Safai, S.
Dose Delivery Verification
title Dose Delivery Verification
title_full Dose Delivery Verification
title_fullStr Dose Delivery Verification
title_full_unstemmed Dose Delivery Verification
title_short Dose Delivery Verification
title_sort dose delivery verification
topic physics.med-ph
Health Physics and Radiation Effects
url https://dx.doi.org/10.23730/CYRSP-2017-001.49
http://cds.cern.ch/record/2315175
work_keys_str_mv AT safais dosedeliveryverification