4.7 Article

Performance of a PET Insert for High-Resolution Small-Animal PET/MRI at 7 Tesla

期刊

JOURNAL OF NUCLEAR MEDICINE
卷 59, 期 3, 页码 536-542

出版社

SOC NUCLEAR MEDICINE INC
DOI: 10.2967/jnumed.116.187666

关键词

animal imaging; image reconstruction; instrumentation; molecular imaging; PET/MRI; SiPM

资金

  1. Mitacs Accelerate Cluster [IT04494]
  2. Natural Sciences and Engineering Research Council of Canada Discovery Grants [36672, 341628, 240670]
  3. University of Manitoba Amalgamated Research Fund

向作者/读者索取更多资源

We characterize a compact MR-compatible PET insert for simultaneous preclinical PET/MRI. Although specifically designed with the strict size constraint to fit inside the 114-mm inner diameter of the BGA-12S gradient coil used in the BioSpec 70/20 and 94/20 series of small-animal MRI systems, the insert can easily be installed in any appropriate MRI scanner or used as a stand-alone PET system. Methods: The insert consists of a ring of 16 detector-blocks each made from depth-of-interaction-capable dual-layer-offset arrays of cerium-doped lutetium-yttrium oxyorthosilicate crystals read out by silicon photomultiplier arrays. Scintillator crystal arrays are made from 22 center dot 10 and 21 center dot 9 crystals in the bottom and top layers, respectively, with respective layer thicknesses of 6 and 4 mm, arranged with a 1.27-mm pitch, resulting in a useable field of view 28 mm long and about 55 mm wide. Results: Spatial resolution ranged from 1.17 to 1.86 mm full width at half maximum in the radial direction from a radial offset of 0-15 mm. With a 300-to 800-keV energy window, peak sensitivity was 2.2% and noise-equivalent count rate from a mouse-sized phantom at 3.7 MBq was 11.1 kcps and peaked at 20.8 kcps at 14.5 MBq. Phantom imaging showed that features as small as 0.7 mm could be resolved. F-18-FDG PET/MR images of mouse and rat brains showed no signs of intermodality interference and could excellently resolve substructures within the brain. Conclusion: Because of excellent spatial resolvability and lack of intermodality interference, this PET insert will serve as a useful tool for preclinical PET/MR.

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