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  • Depth-of-interaction measurement in a single-layer crystal array with a single-ended readout using digital silicon photomultiplier

    Depth-of-interaction measurement in a single-layer crystal array with a single-ended readout using digital silicon photomultiplier

    서울대 / 이민선, 이재성*

  • 출처
    Phys Med Biol
  • 등재일
    2015 Aug 21
  • 저널이슈번호
    60(16):6495-514
  • 내용

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    [Abstract]

    We present the first experimental evaluation of a depth-of-interaction (DOI) positron emission tomography (PET) detector using a digital silicon photomultiplier (dSiPM). To measure DOI information from a mono-layer array of scintillation crystals with a single-ended readout, our group has previously proposed and developed a new method based on light spread using triangular reflectors. Since this method relies on measurement of the light distribution, dSiPM, which has a fully digital interface, has several merits for our DOI measurement. The DOI PET detector comprised of a dSiPM sensor (DPC-3200-22-44) coupled with a 14   ×   14 array of 2 mm  ×  2 mm  ×  20 mm unpolished LGSO crystals. All crystals were covered with triangular reflectors. To obtain a good performance of the DOI PET detector, several parameters of detector were selected as a preliminary experiment. Detector performance was evaluated with the selected parameters and the optimal experimental setup, and a DOI measurement was conducted by irradiating the crystal block at five DOI positions spaced at intervals of 4 mm. Maximum-likelihood estimation was employed for DOI positioning and the optimal DOI estimation scheme was also investigated in this study. As a result, the DOI PET detector showed clear crystal identification. The energy resolution (full-width at half-maximum (FWHM)) averaged over all depths was 10.21%  ±  0.15% at 511 keV, and time resolution averaged over all depths was 1198.61   ±   39.70 ps FWHM. The average DOI positioning accuracy for all depths was 74.22%  ±  6.77%, which equates to DOI resolution of 4.67 mm. Energy and DOI resolutions were uniform over all crystal positions except for the back parts of the array. Furthermore, additional simulation studies were conducted to verify the results of our DOI measurement method that is combined with dSiPM technology. In conclusion, our continuous DOI PET detector coupled with dSiPM is a promising PET/MRI detector with DOI-encoding capability. 

     

    [Author information]

    Lee MS1, Lee JS.

    1Department of Nuclear Medicine, Seoul National University, Seoul 110-744, Korea. Interdisciplinary Programs in Radiation Applied Life Science, Seoul National University, Seoul 110-744, Korea. 

  • 연구소개
    PET 시스템에서 높은 해상도와 민감도를 갖추기 위해서는, Depth-of-interaction (DOI) 측정 기술이 필수적으로 요구됩니다. 지금까지 다양한 DOI 측정 기술이 제안되어 왔음에도 불구하고, 제작 비용 및 복잡성이 크게 증가한다는 단점 때문에 아직까지 상용화 되지 못하고 있는 것이 실정입니다. 본 연구진은 기존 기술의 단점을 극복하기 위하여 저단가, 고성능의 PET 검출기 제작을 위한 새로운 DOI 측정 기술을 고안하였습니다. 또한, 본 연구에서는 최근 MR-compatible 한 고성능 광센서로서 주목 받고 있는 디지털 실리콘광전자증배관과 (digital SiPM) 고안한 DOI 측정 기술을 결합 시켰으며, 고해상도 고민감도 PET 검출기 개발을 위한 최적의 조건을 파악 하였습니다. 본 연구를 기반으로, 향후 높은 해상도와 민감도를 동시에 만족시키는 PET/MR 시스템 개발이 가능할 것 입니다.
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