치료용 광자선의 전자오염에 대한 몬테카를로 시뮬레이션

Monte Carlo Simulation for Electron Contamination of Photon Beam

  • 정갑수 (서울보건대학 방사선과) ;
  • 고신관 (서울보건대학 방사선과) ;
  • 양한준 (서울보건대학 방사선과) ;
  • 한창열 (서울보건대학 방사선과)
  • Chung, Kap-Soo (Dept. of Radiologic Technology, Seoul Health College) ;
  • Ko, Shin-Kwan (Dept. of Radiologic Technology, Seoul Health College) ;
  • Yang, Han-Joon (Dept. of Radiologic Technology, Seoul Health College) ;
  • Han, Chang-Yul (Dept. of Radiologic Technology, Seoul Health College)
  • 발행 : 1999.12.30

초록

We calculated the energy distribution and the percentage depth-dose at 10 cm in a $10{\times}10\;cm^2$ with a photon beam at SSD of 100 cm by using a Monte Carlo Simulation. PDD is used as a beam-quality specifier for radiotherapy beams. It is better than the commonly used values of TPR or nominal accelerating potential. The presence of electron contamination affects the measurement of PDD, but can be removed by the use of a 0.1 cm lead filter. It reduces surface dose from contaminant electrons from the accelerator by more than 90% for radiotherapy beams. The filter performs best when it is placed immediately below the head. An electron-contamination correction factor is introduced to correct for electron contamination from the filter and air. It converts PDD which includes the electron contamination with the filter in place into PDD for the photons in the filtered beam. The correction factor can be used to determine stopping-power ratio. Calculations show that the values of water-to-air slopping power ratio in the unfiltered beam are related to PDD.

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