Study of the use of gel dosimetry in combination with 3D printing phantom for personalized pretreatment QA in radiotherapy

Abstract In modern radiotherapy, pretreatment patient-specific quality assurance (PSQA) generally consists in delivering the treatment plan to a phantom equipped with a detector and in comparing the measured dose and the dose calculated by the treatment planning system (TPS) in order to detect any g...

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Published inJournal of physics. Conference series Vol. 2167; no. 1; pp. 12017 - 12020
Main Authors Colnot, J, Chiavassa, S, Delpon, G, Huet, C
Format Journal Article
LanguageEnglish
Published Bristol IOP Publishing 01.01.2022
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Abstract Abstract In modern radiotherapy, pretreatment patient-specific quality assurance (PSQA) generally consists in delivering the treatment plan to a phantom equipped with a detector and in comparing the measured dose and the dose calculated by the treatment planning system (TPS) in order to detect any gap between both dose distributions. Dosimetric gels have interesting properties for QA. In this work, the use of gel dosimetry together with a patient-based 3D printed phantom for personalized PSQA is investigated. CT images of a patient with a right mesencephalic brain tumor were used to generate a 3D printed phantom. Then it was filled with water and a radiochromic gel jar and irradiated according to the patient intracranial stereotactic plan using a Novalis TrueBeam STX accelerator. Measured dose distributions agree well with the calculated ones. Regarding 3D gamma-index (1 mm – 2%) estimated within the central 85% of the jar volume, 96.3% of points pass the test. In addition, 86.5% of the points pass the local 2D 3 mm-3% gamma-index. Results are promising but further work is needed to improve the protocol and investigate the possibility to extend it to end-to-end tests.
AbstractList Abstract In modern radiotherapy, pretreatment patient-specific quality assurance (PSQA) generally consists in delivering the treatment plan to a phantom equipped with a detector and in comparing the measured dose and the dose calculated by the treatment planning system (TPS) in order to detect any gap between both dose distributions. Dosimetric gels have interesting properties for QA. In this work, the use of gel dosimetry together with a patient-based 3D printed phantom for personalized PSQA is investigated. CT images of a patient with a right mesencephalic brain tumor were used to generate a 3D printed phantom. Then it was filled with water and a radiochromic gel jar and irradiated according to the patient intracranial stereotactic plan using a Novalis TrueBeam STX accelerator. Measured dose distributions agree well with the calculated ones. Regarding 3D gamma-index (1 mm – 2%) estimated within the central 85% of the jar volume, 96.3% of points pass the test. In addition, 86.5% of the points pass the local 2D 3 mm-3% gamma-index. Results are promising but further work is needed to improve the protocol and investigate the possibility to extend it to end-to-end tests.
In modern radiotherapy, pretreatment patient-specific quality assurance (PSQA) generally consists in delivering the treatment plan to a phantom equipped with a detector and in comparing the measured dose and the dose calculated by the treatment planning system (TPS) in order to detect any gap between both dose distributions. Dosimetric gels have interesting properties for QA. In this work, the use of gel dosimetry together with a patient-based 3D printed phantom for personalized PSQA is investigated. CT images of a patient with a right mesencephalic brain tumor were used to generate a 3D printed phantom. Then it was filled with water and a radiochromic gel jar and irradiated according to the patient intracranial stereotactic plan using a Novalis TrueBeam STX accelerator. Measured dose distributions agree well with the calculated ones. Regarding 3D gamma-index (1 mm – 2%) estimated within the central 85% of the jar volume, 96.3% of points pass the test. In addition, 86.5% of the points pass the local 2D 3 mm-3% gamma-index. Results are promising but further work is needed to improve the protocol and investigate the possibility to extend it to end-to-end tests.
Author Colnot, J
Chiavassa, S
Delpon, G
Huet, C
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10.1016/j.ijrobp.2007.11.032
10.1088/0031-9155/59/19/5763
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References Babic (JPCS_2167_1_012017bib1) 2008; 70
Leborgne (JPCS_2167_1_012017bib3) 2018
Ehler (JPCS_2167_1_012017bib2) 2014; 59
Colnot (JPCS_2167_1_012017bib4) 2018; 52
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  publication-title: Phys Med
  doi: 10.1016/j.ejmp.2018.07.002
  contributor:
    fullname: Colnot
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  start-page: 1281
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  publication-title: Int J Radiat Oncol Biol Phys
  doi: 10.1016/j.ijrobp.2007.11.032
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    fullname: Babic
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  publication-title: Phys Med Biol
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Snippet Abstract In modern radiotherapy, pretreatment patient-specific quality assurance (PSQA) generally consists in delivering the treatment plan to a phantom...
In modern radiotherapy, pretreatment patient-specific quality assurance (PSQA) generally consists in delivering the treatment plan to a phantom equipped with a...
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StartPage 12017
SubjectTerms Brain cancer
Computed tomography
Customization
Dosimeters
Dosimetry
Gels
Mathematical analysis
Physics
Pretreatment
Quality assurance
Radiation therapy
Three dimensional printing
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Title Study of the use of gel dosimetry in combination with 3D printing phantom for personalized pretreatment QA in radiotherapy
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