• DocumentCode
    2513221
  • Title

    Signal to Noise Ratio of Monolithic Scintillator Detectors for High Resolution PET

  • Author

    Maas, Marnix C. ; Van der Laan, D. J Jan ; Schaart, Dennis R. ; Bruyndonckx, Peter ; Lemaitre, Cedric ; Van Eijk, Carel W E

  • Author_Institution
    Delft Univ. of Technol.
  • Volume
    5
  • fYear
    2006
  • fDate
    Oct. 29 2006-Nov. 1 2006
  • Firstpage
    3027
  • Lastpage
    3031
  • Abstract
    Monolithic scintillator detectors, consisting of several cm3 of scintillating material coupled to one or more Hamamatsu S8550 avalanche photodiode (APD) arrays, have been proposed as detectors for high resolution positron emission tomography (PET). These detectors eliminate the dead space caused by reflective material between crystal pixels, and provide good depth of interaction (DOI) information. The entry point of impinging annihilation photons on the front surface of the detector is derived from the scintillation light distribution on the APD array(s). In this work, the various contributions to the energy and timing resolutions were analysed, as well as the influence of several contributions to the spatial resolution. Energy resolutions of around 11.5% FWHM at 511 keV were measured, the major part of which was found to be due to the intrinsic photon variance of the scintillator. A timing resolution of 1.6 ns FWHM was measured against a BaF2-PMT detector. The timing resolution was found to be strongly gain dependent. Spatial resolutions of around 1.75 mm FWHM were measured, fairly independent of the APD gain. This figure still needs to be corrected for the ~0.9 mm FWHM measurement beam.
  • Keywords
    avalanche photodiodes; image resolution; photomultipliers; positron emission tomography; scintillation counters; 511 keV; APD arrays; BaF2-PMT detector; Hamamatsu S8550 avalanche photodiode; dead space elimination; depth of interaction; high resolution PET; impinging annihilation photons; intrinsic photon variance; monolithic scintillator detector; positron emission tomography; scintillation light distribution; signal to noise ratio; spatial resolution; timing resolution; Avalanche photodiodes; Crystalline materials; Energy resolution; Positron emission tomography; Sensor arrays; Signal resolution; Signal to noise ratio; Solid scintillation detectors; Spatial resolution; Timing; Monolithic scintillator detectors; avalanche photodiode; positron emission tomography; signal to noise ratio;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nuclear Science Symposium Conference Record, 2006. IEEE
  • Conference_Location
    San Diego, CA
  • ISSN
    1095-7863
  • Print_ISBN
    1-4244-0560-2
  • Electronic_ISBN
    1095-7863
  • Type

    conf

  • DOI
    10.1109/NSSMIC.2006.356512
  • Filename
    4179669