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  • [Phys Med Biol .] Pushing the limit of BGO-based dual-ended Cherenkov PET detectors through photon transit time correction

    서울의대 / 이민석, 이재성*

  • 출처
    Phys Med Biol .
  • 등재일
    2024 Jan 5
  • 저널이슈번호
    69(2). doi: 10.1088/1361-6560/ad1549.
  • 내용

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    Abstract
    Objective. The high production cost of commonly used lutetium-based fast scintillators and the development of silicon photomultipliers technology have made bismuth germanate (BGO) a promising candidate for time-of-flight positron emission tomography (TOF PET) detectors owing to its generation of prompt Cherenkov photons. However, using BGO as a hybrid scintillator is disadvantageous owing to its low photon statistics and distribution that does not conform well to a single Gaussian. To mitigate this, a proposal was made to increase the likelihood of detecting the first Cherenkov photons by positioning two photosensors in opposition at the entrance and exit faces of the scintillator and subsequently selectively picking an earlier timestamp. Nonetheless, the timing variation arising from the photon transit time remains affected by the entire length of the crystal, thereby presenting a possibility for further enhancement.Approach. In this study, we aimed to improve the timing performance of the dual-ended BGO Cherenkov TOF PET detector by capitalizing on the synergistic advantages of applying depth-of-interaction (DOI) information and crystal surface finishes or reflector properties. A dual-ended BGO detector was implemented using a 3 × 3 × 15 mm3BGO crystal. Coincidence events were acquired against a 3 × 3 × 3 mm3LYSO:Ce:Mg reference detector. The timing performance of the dual-ended BGO detectors was analyzed using conventionally proposed timestamp methods before and after DOI correction.Results. Through a DOI-based correction of photon transit time spread, we demonstrated a further improvement in the timing resolution of the BGO-based Cherenkov TOF PET detector utilizing a dual-ended detector configuration and adaptive arrival time pickoff. We achieved further improvements in timing resolution by correcting the offset spread induced by the fluctuation of timing signal rise time in the dual-ended detector.Significance. Although polishing the crystal surface was still favorable in terms of full-width-half-maximum value, incorporating DOI information from the unpolished crystal to compensate for photon travel time facilitated additional enhancement in the overall timing performance, thereby surpassing that achieved with the polished crystal.

     

     

    Affiliations

    Minseok Yi 1 2 3, Guen Bae Ko 4 5, Jae Sung Lee 1 2 3 4 5
    1Interdisciplinary Program in Bioengineering, College of Engineering, Seoul National Graduate School, Seoul, Republic of Korea.
    2Department of Nuclear Medicine, College of Medicine, Seoul National University, Seoul, Republic of Korea.
    3Integrated Major in Innovative Medical Science, Seoul National Graduate School, Seoul, Republic of Korea.
    4Brightonix Imaging Inc., Seoul, Republic of Korea.
    5Institute of Radiation Medicine, Medical Research Center, Seoul National University College of Medicine, Seoul, Republic of Korea.

  • 키워드
    bismuth germanate (BGO); cherenkov (Cerenkov); depth-of-interaction (DOI); dual-ended; positron emission tomography (PET); silicon photomultiplier (SiPM); time-of-flight (TOF).
  • 편집위원

    BGO 신틸레이터는 기존의 PET에 널리 사용되었던 검출 섬광체이나, 최근에 등장하는 Time-of-Flight(TOP) 방식의 PET에 적용하기에는 시간 분해능이 낮아 사용이 어렵다.
    본 연구에서는 BGO 결정의 전후면에 각각 SiPM을 부착하여 섬광체내에서 빠르게 발생하는 체렌코프 광자를 측정하고, 측정 시간을 재구성하는 방법으로 시간 분해능을 높이도록 하였다.
    현재 TOF PET에는 시간 분해능이 우수한 Lutetium 기반의 LSO, LYSO 섬광체가 사용되고 있으나, 본 연구의 Dual-ended Cherenkov 검출 방법을 적용할 경우에 BGO 섬광체도 TOF PET에 활용 가능함을 보였다.
    ※ BGO(Bismuth Germanium Oxide)
    ※ SiPM: Silicon photomultiplier,
    ※ LSO (Lutetium Oxyorthosilicate)
    ※ LYSO (Lutetium Yttrium Oxyorthosilicate)

    2024-03-07 12:31:55

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