Evaluation of the incident directional dependence of radiochromic film by use of Monte Carlo simulation and measurement

In high-precision radiotherapy, absolute and relative doses are evaluated for patient-specific intensity-modulated radiation therapy (IMRT) quality assurance (QA). In our institution, we use GAFCHROMIC EBT3 (EBT3) for relative dose evaluation in IMRT QA. We usually use two directional film configura...

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Published inRadiological physics and technology Vol. 9; no. 2; pp. 227 - 232
Main Authors Yuasa, Yuki, Kawamura, Shinji, Shiinoki, Takehiro, Uehara, Takuya, Koike, Masahiro, Kanzaki, Ryuji, Hanazawa, Hideki, Takahashi, Shotaro, Shibuya, Keiko
Format Journal Article
LanguageEnglish
Published Tokyo Springer Japan 01.07.2016
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Abstract In high-precision radiotherapy, absolute and relative doses are evaluated for patient-specific intensity-modulated radiation therapy (IMRT) quality assurance (QA). In our institution, we use GAFCHROMIC EBT3 (EBT3) for relative dose evaluation in IMRT QA. We usually use two directional film configurations, which are in the axial and sagittal planes. The QA in our institution shows some differences between the gamma pass rates in the axial and sagittal directions. The purpose of this study was to evaluate the incident directional dependence of EBT3 by using the percent depth dose (PDD) and the off-center ratio (OCR) between EBT3 films positioned perpendicular to the beam axis and along the beam axis. Furthermore, we compared the PDD in EBT3 films positioned perpendicular to the beam axis and the PDD by using an ionization chamber. In addition, PDDs in water phantoms with and without EBT3 films were calculated by Monte Carlo simulation. The results showed that the PDD in EBT3 films positioned perpendicular to the beam axis increased with the depth from the phantom surface. Monte Carlo simulation showed the same trend as did the film measurements. The OCR results were slightly different at dose levels below 20 %. The OCR in EBT3 films positioned along the beam axis was higher than that perpendicular to the beam axis. Thus, we conclude that EBT3 film has incident directional dependence. In IMRT QA, the gamma analysis results may be affected by the incident directional dependence of EBT3 film.
AbstractList In high-precision radiotherapy, absolute and relative doses are evaluated for patient-specific intensity-modulated radiation therapy (IMRT) quality assurance (QA). In our institution, we use GAFCHROMIC EBT3 (EBT3) for relative dose evaluation in IMRT QA. We usually use two directional film configurations, which are in the axial and sagittal planes. The QA in our institution shows some differences between the gamma pass rates in the axial and sagittal directions. The purpose of this study was to evaluate the incident directional dependence of EBT3 by using the percent depth dose (PDD) and the off-center ratio (OCR) between EBT3 films positioned perpendicular to the beam axis and along the beam axis. Furthermore, we compared the PDD in EBT3 films positioned perpendicular to the beam axis and the PDD by using an ionization chamber. In addition, PDDs in water phantoms with and without EBT3 films were calculated by Monte Carlo simulation. The results showed that the PDD in EBT3 films positioned perpendicular to the beam axis increased with the depth from the phantom surface. Monte Carlo simulation showed the same trend as did the film measurements. The OCR results were slightly different at dose levels below 20 %. The OCR in EBT3 films positioned along the beam axis was higher than that perpendicular to the beam axis. Thus, we conclude that EBT3 film has incident directional dependence. In IMRT QA, the gamma analysis results may be affected by the incident directional dependence of EBT3 film.
Author Shiinoki, Takehiro
Kawamura, Shinji
Shibuya, Keiko
Yuasa, Yuki
Koike, Masahiro
Kanzaki, Ryuji
Takahashi, Shotaro
Uehara, Takuya
Hanazawa, Hideki
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  surname: Yuasa
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  organization: Department of Radiological Technology, Yamaguchi University Hospital
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  surname: Shibuya
  fullname: Shibuya, Keiko
  organization: Department of Therapeutic Radiology, Graduate School of Medicine, Yamaguchi University
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CitedBy_id crossref_primary_10_6009_jjrt_2020_JSRT_76_10_1074
crossref_primary_10_1007_s13246_019_00736_7
crossref_primary_10_1016_j_ejmp_2020_04_025
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Keywords Radiochromic film
Directional dependence
Quality assurance
IMRT
Language English
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Snippet In high-precision radiotherapy, absolute and relative doses are evaluated for patient-specific intensity-modulated radiation therapy (IMRT) quality assurance...
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SubjectTerms Film Dosimetry
Imaging
Medical and Radiation Physics
Medicine
Medicine & Public Health
Monte Carlo Method
Nuclear Medicine
Radiology
Radiotherapy
Radiotherapy Dosage
Radiotherapy, Intensity-Modulated
Title Evaluation of the incident directional dependence of radiochromic film by use of Monte Carlo simulation and measurement
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