A study of the beam quality correction factor in clinical proton beam conditions using Monte Carlo simulations

被引:0
作者
Yong-Cheol Kwon
Sang-Il Pak
Hyon-Suk Jo
Seonghoon Jeong
Se Byeong Lee
In Jung Kim
Chul-Young Yi
Wook-Geun Shin
机构
[1] Kyungpook National University,Department of Physics
[2] National Cancer Center,Proton Therapy Center
[3] Korea Research Institute of Standards and Science,Ionizing Radiation Metrology Group
[4] Seoul National University Hospital,Department of Radiation Oncology
来源
Journal of the Korean Physical Society | 2022年 / 81卷
关键词
Radiation dosimetry; Proton therapy; Beam quality correction factors; Monte Carlo simulation;
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学科分类号
摘要
When measuring the absorbed dose from a proton beam, the beam quality correction factor provided by IAEA TRS-398 has been used. However, that factor calculates the absorbed dose by applying the same value to clinical dosimetry without considering the initial energy of the radiation particle or the energy spectrum at the measurement position. In this study, the beam quality correction factors for the PTW 30013 farmer chamber and the PTW Advanced Markus chamber are calculated by using the TOPAS Monte Carlo simulation program to implement various clinical proton beam conditions of the National Cancer Center. In both chamber simulations, the quality correction factor measured at the Spread-Out Bragg Peak (SOBP) region shows a good agreement with the quality correction factors suggested by TRS-398. However, the quality correction factor increases at a single Bragg Peak region by 2.4% for the PTW Advanced Markus chamber and 7.1% for the PTW 30013 farmer chamber in the clinical dosimetry scenarios. The precise measurement of beam quality correction factors for mono-energy proton beams using the Monte Carlo technique is required in future studies.
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页码:1128 / 1134
页数:6
相关论文
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