• DocumentCode
    1143494
  • Title

    Gamma shielding materials for MR-compatible PET

  • Author

    Strul, D. ; Cash, D. ; Keevil, S.F. ; Halsted, P. ; Williams, S.C.R. ; Marsden, P.K.

  • Author_Institution
    St. Thomas´´ Sch. of Med., King´´s Coll. London, UK
  • Volume
    50
  • Issue
    1
  • fYear
    2003
  • fDate
    2/1/2003 12:00:00 AM
  • Firstpage
    60
  • Lastpage
    69
  • Abstract
    As for standard positron emission tomography (PET) scanners, MR-compatible PET scanners will require gamma shielding to suppress the influence of activity outside the PET field of view (FOV). Suitable materials must have very specific properties, including magnetic properties close to those of water, high density, high atomic number, and ideally a low conductivity. In order to identify potential suitable materials, we have selected several heavy-metal-based candidates based on the available data for magnetic and shielding properties. These materials include several nonferromagnetic metals and metal oxides, two scintillating crystals (bismuth germanate and lead tungstate) and two metal/epoxy compounds. The magnetic resonance imaging (MRI) compatibility of these materials was assessed under various conditions, both on a human and a small-animal MRI scanner. In parallel, we assessed the shielding efficiency at 661 keV of the most promising candidates. These experiments showed that there is a range of possibilities for the design of MR-compatible gamma shields. Lead has acceptable magnetic compatibility but can induce significant conductivity-related artefacts. Heavy-metal-based minerals are fully insulating and hot-pressed lead monoxide showed good MR compatibility combined with good shielding properties. Other possibilities include the use of lead based powders and heavy-metal oxide composites.
  • Keywords
    biomedical MRI; positron emission tomography; shielding; 661 keV; Bi4Ge3O12; MR-compatible PET; PbO; PbWO4; field of view; gamma shielding materials; metal oxides; nonferromagnetic metals; scintillating crystals; shielding efficiency; Conducting materials; Conductivity; Crystalline materials; Lead compounds; Magnetic materials; Magnetic properties; Magnetic resonance imaging; Magnetic shielding; Positron emission tomography; Water;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2002.807939
  • Filename
    1178691