• DocumentCode
    1262514
  • Title

    Design Study of the Absorber Detector of a Compton Camera for On-Line Control in Ion Beam Therapy

  • Author

    Richard, M.-H. ; Dahoumane, M. ; Dauvergne, D. ; De Rydt, M. ; Dedes, G. ; Freud, N. ; Krimmer, J. ; Létang, J.M. ; Lojacono, X. ; Maxim, V. ; Montarou, G. ; Ray, C. ; Roellinghoff, F. ; Testa, E. ; Walenta, A.H.

  • Volume
    59
  • Issue
    5
  • fYear
    2012
  • Firstpage
    1850
  • Lastpage
    1855
  • Abstract
    The goal of this study is to tune the design of the absorber detector of a Compton camera for prompt γ-ray imaging during ion beam therapy. The response of the Compton camera to a photon point source with a realistic energy spectrum (corresponding to the prompt γ-ray spectrum emitted during the carbon irradiation of a water phantom) is studied by means of Geant4 simulations. Our Compton camera consists of a stack of 2 mm thick silicon strip detectors as a scatter detector and of a scintillator plate as an absorber detector. Four scintillators are considered: LYSO, NaI, LaBr3 and BGO. LYSO and BGO appear as the most suitable materials, due to their high photo-electric cross-sections, which leads to a high percentage of fully absorbed photons. Depth-of-interaction measurements are shown to have limited influence on the spatial resolution of the camera. In our case, the thickness which gives the best compromise between a high percentage of photons that are fully absorbed and a low parallax error is about 4 cm for the LYSO detector and 4.5 cm for the BGO detector. The influence of the width of the absorber detector on the spatial resolution is not very pronounced as long as it is lower than 30 cm.
  • Keywords
    Compton effect; elemental semiconductors; image sensors; radiation therapy; scintillation; scintillation counters; silicon; silicon radiation detectors; spatial variables measurement; BGO detector; Compton camera; Geant4 simulations; LYSO detector; Si; absorber detector; carbon irradiation; depth-of-interaction measurements; design study; fully absorbed photons; high photoelectric cross-sections; ion beam therapy; on-line control; parallax error; photon point source; prompt γ-ray imaging; realistic energy spectrum; scatter detector; scintillator plate; silicon strip detectors; spatial resolution; water phantom; Cameras; Detectors; Energy resolution; Ion beams; Photonics; Silicon; Spatial resolution; BGO; Compton camera; Geant4; LYSO; LaBr $_3$; NaI; hadrontherapy; ion beam therapy; prompt gamma-ray;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2012.2206053
  • Filename
    6265350