• DocumentCode
    1762625
  • Title

    PET/MR Synchronization by Detection of Switching Gradients

  • Author

    Weissler, Bjoern ; Gebhardt, Pierre ; Lerche, Christoph W. ; Soultanidis, Georgios M. ; Wehner, Jakob ; Heberling, Dirk ; Schulz, Volkmar

  • Author_Institution
    Clinical Applic. Res. Dept., Philips Res., Aachen, Germany
  • Volume
    62
  • Issue
    3
  • fYear
    2015
  • fDate
    42156
  • Firstpage
    650
  • Lastpage
    657
  • Abstract
    The full potential of simultaneous Positron Emission Tomography (PET) and Magnetic Resonance Imaging (MRI) acquisition, such as dynamic studies or motion compensation, can only be explored if the data of both modalities is temporally synchronized. As such hybrid imaging systems are commonly realized as custom-made PET inserts for commercially available MRI scanner, a synchronization solution has to be implemented (depending on the vendor of the MRI system). In contrast, we demonstrate a simple method for temporal synchronization, which does not require a connection to the MRI. It uses the normally undesired effect of induced voltages on the PET electronics from switching MRI gradients. The electronic circuit needs very few components and the gradient pick-up coils are made from PCB traces and vias on the PET detector boards. Neither programming the MRI nor any physical connection to the MR scanner is needed, thus avoiding electromagnetic compatibility problems. This method works inherently with most MRI sequences and is a vendor- independent solution. A characterization of the sensors in an MRI scanner showed that the MRI gradients are detected with a precision of 120 μs (with the current implementation). Using different trigger thresholds, it is possible to trigger selectively on certain MRI sequences, depending on their gradient slew rate settings. Timings and pulse diagrams of MRI sequences can be recognized from the generated data. The method was successfully used for temporal alignment between PET and MRI in an MRI-based PET-motion-compensation application.
  • Keywords
    magnetic resonance imaging; positron emission tomography; synchronisation; MRI scanner; MRI-based PET-motion-compensation application; PCB traces; PET detector boards; PET/MR synchronization; custom-made PET; electromagnetic compatibility problems; gradient pick-up coils; gradient slew rate settings; hybrid imaging systems; magnetic resonance imaging; positron emission tomography; switching gradients; synchronization solution; temporal synchronization; vendor-independent solution; Coils; Magnetic resonance imaging; Positron emission tomography; Sensors; Switches; Synchronization; Threshold voltage; Magnetic resonance imaging; PET-MR; molecular imaging; positron emission tomography; synchronization;
  • fLanguage
    English
  • Journal_Title
    Nuclear Science, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9499
  • Type

    jour

  • DOI
    10.1109/TNS.2015.2427995
  • Filename
    7123013