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  • [Phys Med Biol.] Recovery of inter-detector and inter-crystal scattering in brain PET based on LSO and GAGG crystals

    [Phys Med Biol.] Recovery of inter-detector and inter-crystal scattering in brain PET based on LSO and GAGG crystals

    서울대 / 이승은, 이재성*

  • 출처
    Phys Med Biol.
  • 등재일
    2020 Sep 24
  • 저널이슈번호
    65(19):195005. doi: 10.1088/1361-6560/ab9f5c.
  • 내용

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    Abstract
    Gadolinium aluminum gallium garnet (GAGG) is a promising scintillator crystal for positron emission tomography (PET) detectors owing to its advantages of energy resolution, light yield, and absence of intrinsic radiation. However, a large portion of the incident photons undergoes Compton scattering within GAGG crystal because of its low stopping power compared to that of lutetium-based crystals such as Lu2SiO5 (LSO). Inter-detector scattering (IDS) and inter-crystal scattering (ICS) result in loss of sensitivity and image quality of PET, respectively. We performed a Monte Carlo simulation study to evaluate IDS recovery in our currently developing brain-dedicated PET, and extended the idea to ICS recovery. We also compared the impact of the recoveries on LSO- and GAGG-based PET scanners. We measured the sensitivity and spatial resolution of the brain PET, and analyzed the image quality using a lesion phantom, a hot-rod phantom, and a 2D Hoffman phantom with applying IDS or ICS recovery. IDS recovery increased the PET sensitivity and improved the noise level of the reconstructed images. ICS recovery enhanced the spatial resolution and the contrast of the images was improved. As the occurrence rates of IDS and ICS were higher in GAGG than in LSO, the overall impact of IDS or ICS recovery was significant in GAGG. In conclusion, we showed that the proportional method would be suitable for IDS and ICS recoveries of PET, and emphasized the importance of ICS and IDS recoveries for PET using crystals with low stopping power.

     



    Affiliation

    Seungeun Lee  1 , Kyeong Yun Kim, Min Sun Lee, Jae Sung Lee
    1 Department of Biomedical Sciences, Seoul National University, Seoul 03080, Republic of Korea. Department of Nuclear Medicine, Seoul National University, Seoul 03080, Republic of Korea.

  • 연구소개
    본 연구진이 개발 중인 뇌전용 PET 장비 내에서 일어나는 511 keV 광자의 컴프턴 산란을 보정하는 것이 PET의 성능 개선에 미치는 효과를 Monte Carlo 시뮬레이션을 통해 알아보았습니다. 검출기 간 산란을 보정하면 민감도와 영상의 신호 대 잡음 비를, 크리스탈 간 산란을 보정하면 영상의 분해능과 대비를 개선할 수 있었습니다. 그리고 에너지 분해능과 섬광량이 우수하여 각광 받고 있는 GAGG 크리스탈의 경우 stopping power가 낮아 검출기 간 및 크리스탈 간 산란의 보정이 더욱 필요함을 강조하였습니다.
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