• DocumentCode
    1542381
  • Title

    Numerical simulation design study of a positron camera for heavy-ion radiotherapy

  • Author

    Iseki, Yasushi ; Futami, Yasuyuki ; Tomitani, Takehiro ; Koda, Shigeru ; Nishio, Teiji ; Kanai, Tatsuaki ; Kanazawa, Mitsutaka ; Kitagawa, Atsushi ; Mizuno, Hideyuki ; Murakami, Takeshi ; Shimbo, Munefumi ; Suda, Mitsuru ; Urakabe, Eriko

  • Author_Institution
    Ind. Syst. Res. & Dev. Center, Toshiba Corp., Kawasaki, Japan
  • Volume
    48
  • Issue
    4
  • fYear
    2001
  • fDate
    8/1/2001 12:00:00 AM
  • Firstpage
    1550
  • Lastpage
    1560
  • Abstract
    The positron camera system has been designed to measure heavy-ion ranges in patients´ bodies. The pencil-like beam of positron emitters, such as 11C, is used to check the range directly and precisely by detecting pairs of annihilation gamma-rays emitted from the end point of the beam trajectory. The positron camera consists of a pair of Anger-type scintillation cameras. The efficiency and the spatial resolution are modeled and simulated by a Monte Carlo method and a numerical calculation so that the positron camera has a high position accuracy for a small amount of irradiation dose. The simulation shows that the optimum effective diameter of the camera crystal is 500 mm and its thickness is 30 mm. The crystal diameter is concluded to be 600 mm by taking the outermost photomultiplier mounting into account. The simulation moreover, indicates that the range can be measured within an accuracy of 1 mm under the limitation that the irradiation dose has to be less than a few percent of the therapeutic one
  • Keywords
    Monte Carlo methods; numerical analysis; radiation therapy; radioisotope imaging; solid scintillation detectors; Anger-type scintillation cameras; Monte Carlo method; annihilation gamma-rays; efficiency; heavy-ion radiotherapy; irradiation dose; numerical simulation design study; optimum effective diameter; pencil-like beam; photomultiplier mounting; positron camera; positron emitters; spatial resolution; Cameras; Cancer; Gamma ray detection; Gamma ray detectors; Ion accelerators; Numerical simulation; Physics; Positron emission tomography; Radiology; Solid scintillation detectors;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/23.958395
  • Filename
    958395