• DocumentCode
    2628649
  • Title

    High spatial and energy resolution gamma imaging based on LaBr3(Ce) continuous crystals

  • Author

    Pani, R. ; Vittorini, F. ; Pellegrini, R. ; Bennati, P. ; Cinti, M.N. ; Mattioli, M. ; Scafe, R. ; Meo, S. Lo ; Navarria, F. ; Moschini, G. ; Boccaccio, P. ; Cencelli, V. Orsolini ; De Notaristefani, F.

  • Author_Institution
    Italian Institute of Nuclear Physics -INFN and the Department of Experimental Medicine, ¿Sapienza¿ University of Rome, Viale R. Elena 272 00161, Italy
  • fYear
    2008
  • fDate
    19-25 Oct. 2008
  • Firstpage
    1763
  • Lastpage
    1771
  • Abstract
    Recently scintillators with very high light yield and photodetectors with high quantum efficiency have been opening a new way to realize gamma cameras with superior performances based on continuous crystals. Pixilated imagers have a spatial resolution limited by pixel size, in contrast with continuous scintillation crystals, where spatial resolution is a statistical function depending on light distribution spread and on generated photoelectrons from scintillation light flash. Continuous LaBr3:Ce crystal, with a light yield almost two times higher than NaI:Tl ones and a lower intrinsic energy resolution, could be the best candidate to carry out a gamma imaging with sub-millimeter spatial resolution and very good energy resolution. Unfortunately standard Anger algorithm produces an intrinsic position non-linearity affecting spatial resolution for small size continuous crystal. In this work we propose a new method to calculate the position mean value by squaring the 2D collected charge distribution on a multi-anodes photomultiplier tube (MA-PMT). In this study we take into account four different detector configurations: three sample of LaBr3:Ce scintillation crystals, 49mm×49mm area, a couple of 4.0 with different surface treatment and a single 10 mm thick, with 3 mm glass window. Moreover a forth one with 5.0mm thickness which was integral assembled with an Hamamatsu H8500. We applied the new position algorithm to simulated data, obtained by Geant4 code and afterwards to the experimental data obtained scanning the different detectors with 0.4 mm Ø collimated Tc99m point source, at 1.5 mm step. The results obtained with the new algorithm show an improvement in position linearity and in spatial resolution of about a factor two. The best values in terms of spatial resolution were 0.9 mm, 1.1 mm and 1.8 mm for integral assembled, 4.0 mm thick and 10 mm thick LaBr3:Ce crystal respectively. These results demonstrat- - e the potential of LaBr crystal for molecular imaging application and more in general for gamma ray imaging
  • Keywords
    Assembly; Cameras; Crystals; Energy resolution; High-resolution imaging; Optical imaging; Photodetectors; Photomultipliers; Pixel; Spatial resolution;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nuclear Science Symposium Conference Record, 2008. NSS '08. IEEE
  • Conference_Location
    Dresden, Germany
  • ISSN
    1095-7863
  • Print_ISBN
    978-1-4244-2714-7
  • Electronic_ISBN
    1095-7863
  • Type

    conf

  • DOI
    10.1109/NSSMIC.2008.4775116
  • Filename
    4775116