• Title of article

    Feasibility study of multi-purpose quality assurance phantom for pretreatment verification of volumetric modulated arc therapy

  • Author/Authors

    Won, H.S. Department of Radiation Oncology - Seoul National University Bungdang Hospital, Seongnam, Korea , Chung, J.B. Department of Radiation Oncology - Seoul National University Bungdang Hospital, Seongnam, Korea , Eom, K.Y. Department of Radiation Oncology - Seoul National University Bungdang Hospital, Seongnam, Korea , Hwang, D.G. Department of Biomedical Engineering - Sangji University, Wonju, Korea , Kang, S.W. Department of Biomedical Engineering and Research Institute of Biomedical Engineering - College of Medicine - The Catholic University of Korea, Korea , Suh, T. S. Department of Biomedical Engineering and Research Institute of Biomedical Engineering - College of Medicine - The Catholic University of Korea, Korea

  • Pages
    9
  • From page
    279
  • To page
    287
  • Abstract
    Background: The purpose of this study was to evaluate the feasibility of a multi-purpose quality assurance (QA) phantom for pretreatment verification of volumetric modulated arc therapy (VMAT). Materials and Methods: The QA phantom was constructed with polymethyl methacrylate (PMMA) to perform relative dosimetry using EBT3 film and MapCHECK, as well as absolute dosimetry using an ionization chamber. The QA phantom was constructed to perform relative dosimetry using EBT3 film and MapCHECK, as well as the absolute dosimetry using ionization chamber. In order to verify the pretreatment plans, 25 patients treated with VMAT were selected. The pretreatment plans were calculated in the Eclipse treatment planning system using the Acuros XB dose calculation algorithm and CT images for the QA phantom, with the same beam setup and monitor units (MUs) as those for patient treatment. All plans were delivered to the Varian TrueBeam accelerator equipped with a high-definition multi-leaf collimator. Results: The multi-purpose QA phantom is developed for convenient VMAT dose verification. By using the QA phantom, all 25 cases passed ±3% acceptability criteria in absolute dosimetry with an ionization chamber for pretreatment verification. The relative dosimetry using EBT3 film and MapCHECK system also showed high agreement of more than 90% for 2%/2-mm and 3%/3-mm criteria. Conclusion: The results of this study demonstrated the good multi-purpose capabilities of the phantom for the absolute and relative dosimetry. Therefore, the developed multi-purpose QA phantom was applied in our institution for routine VMRT dose verification.
  • Keywords
    Volumetric modulated arc therapy , phantom , absolute dosimetry , relative dosimetry
  • Journal title
    Astroparticle Physics
  • Serial Year
    2018
  • Record number

    2482761