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  • [Phys Med Biol.] Prototype pre-clinical PET scanner with depth-of-interaction measurements using single-layer crystal array and single-ended readout.

    2017년 05월호
    [Phys Med Biol.] Prototype pre-clinical PET scanner with depth-of-interaction measurements using single-layer crystal array and single-ended readout.

    서울의대/ 이민선, 이재성*

  • 출처
    Phys Med Biol.
  • 등재일
    2017 Apr 13
  • 저널이슈번호
    62(10):3983-3996. doi: 10.1088/1361-6560/aa64c7. [Epub ahead of print]
  • 내용

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    Abstract

    In this study, we developed a proof-of-concept prototype PET system using a pair of depth-of-interaction (DOI) PET detectors based on the proposed DOI-encoding method and digital silicon photomultiplier (dSiPM). Our novel cost-effective DOI measurement method is based on a triangular-shaped reflector that requires only a single-layer pixelated crystal and single-ended signal readout. The DOI detector consisted of an 18  ×  18 array of unpolished LYSO crystal (1.47  ×  1.47  ×  15 mm3) wrapped with triangular-shaped reflectors. The DOI information was encoded by depth-dependent light distribution tailored by the reflector geometry and DOI correction was performed using four-step depth calibration data and maximum-likelihood (ML) estimation. The detector pair and the object were placed on two motorized rotation stages to demonstrate 12-block ring PET geometry with 11.15 cm diameter. Spatial resolution was measured and phantom and animal imaging studies were performed to investigate imaging performance. All images were reconstructed with and without the DOI correction to examine the impact of our DOI measurement. The pair of dSiPM-based DOI PET detectors showed good physical performances respectively: 2.82 and 3.09 peak-to-valley ratios, 14.30% and 18.95% energy resolution, and 4.28 and 4.24 mm DOI resolution averaged over all crystals and all depths. A sub-millimeter spatial resolution was achieved at the center of the field of view (FOV). After applying ML-based DOI correction, maximum 36.92% improvement was achieved in the radial spatial resolution and a uniform resolution was observed within 5 cm of transverse PET FOV. We successfully acquired phantom and animal images with improved spatial resolution and contrast by using the DOI measurement. The proposed DOI-encoding method was successfully demonstrated in the system level and exhibited good performance, showing its feasibility for animal PET applications with high spatial resolution and sensitivity. 

     

    Author information

    Lee MS1, Kim KY, Ko GB, Lee JS.​

    1Department of Nuclear Medicine, College of Medicine, Seoul National University, Seoul, Republic of Korea. Interdisciplinary Program in Radiation Applied Life Science, Seoul National University, Seoul, Republic of Korea. 

  • 연구소개
    PET 시스템에서 높은 해상도와 민감도를 동시에 갖추기 위해서는, Depth-of-interaction (DOI) 측정 기술이 필수적으로 요구됩니다. 지금까지 다양한 DOI 측정 기술이 제안되어 왔음에도 불구하고, 높은 제작비용 및 복잡성 때문에 아직까지 상용화 되지 못하고 있습니다. 본 연구에서는 기존 기술의 단점을 극복하기 위하여 저단가, 고성능의 PET 검출기 제작을 위한 새로운 DOI 측정 기술을 고안하였고, 이를 기반으로 하여 동물용 DOI PET 시스템을 개발하였습니다. 본 연구를 통하여 제안한 DOI 측정 방법을 시스템 수준에 적용함으로서 시스템 성능 및 영상의 질이 향상됨을 입증하였습니다. 고해상도 고민감도 동물용 PET 시스템 개발에 있어 본 연구에서 개발된 DOI 측정 기술이 매우 큰 기여를 함을 확인하였습니다.
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