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彩色反射器提高基于 BGO 的飞行时间 PET 探测器的符合时间分辨率。

Colored reflectors to improve coincidence timing resolution of BGO-based time-of-flight PET detectors.

机构信息

Department of Biomedical Engineering, University of California, Davis, Davis, CA 95616, United States of America.

出版信息

Phys Med Biol. 2023 Sep 8;68(18). doi: 10.1088/1361-6560/acf027.

Abstract

Time-of-flight (TOF) positron emission tomography (PET) detectors improve the signal-to-noise ratio of PET images by limiting the position of the generation of two 511 keV gamma-rays in space using the arrival time difference between the two photons. Unfortunately, bismuth germanate (BGO), widely used in conventional PET detectors, was limited as a TOF PET scintillator due to the relatively slow decay time of the scintillation photons. However, prompt Cerenkov light in BGO has been identified in addition to scintillation photons. Using Cerenkov photons for timing has significantly improved the coincidence timing resolution (CTR) of BGO. Based on this, further research on improving the CTR for a BGO-based TOF PET system is being actively conducted. Wrapping materials for BGO pixels have primarily employed white reflectors to most efficiently collect scintillation light. White reflectors have customarily been used as reflectors for BGO pixels even after Cerenkov light began to be utilized for timing calculations in pixel-level experiments. However, when the arrival-time differences of the two 511 keV annihilations photons were measured with pure Cerenkov radiators, painting the lateral sides of the radiators black can improve CTR by suppressing the reflection of Cerenkov photons. The use of BGO for TOF PET detectors requires simultaneously minimizing scintillation loss for good energy information and suppressing reflected Cerenkov photons for better timing performance. Thus, reflectors for BGO pixels should be optimized for better timing and energy performance. In this study, colored polytetrafluoroethylene (PTFE) tapes with discontinuous reflectance values at specific wavelengths were applied as a BGO reflector. We hypothesized that CTR could be enhanced by selectively suppressing reflected Cerenkov photons with an optimum colored reflector on the BGO pixel while minimizing scintillation photon loss. CTRs were investigated utilizing white and three colors (yellow, red, and green) PTFE tapes as a reflector. In addition, black-painted PTFE tape and enhanced specular reflector film were investigated as reference reflector materials. When 3 × 3 × 20 mmBGO pixels were wrapped with the yellow PTFE reflector, the CTR was significantly improved to 365 ± 5 ps from 403 ± 14 ps measured with the conventional white PTFE reflector. Adequate energy information was still obtained with only 4.1% degradation in light collection compared to the white reflector. Colored reflectors show the possibility to further improve CTR for BGO pixels with optimum reflectance design.

摘要

飞行时间(TOF)正电子发射断层扫描(PET)探测器通过利用两个光子之间的到达时间差来限制在空间中产生两个 511keV 伽马射线的位置,从而提高 PET 图像的信噪比。不幸的是,由于闪烁光子的衰减时间相对较慢,在传统的 PET 探测器中广泛使用的锗酸铋(BGO)受到限制,无法作为 TOF PET 闪烁体。然而,除了闪烁光子之外,BGO 中已经确定存在瞬态切伦科夫光。使用切伦科夫光子进行定时显著提高了 BGO 的符合时间分辨率(CTR)。基于此,正在积极研究进一步提高基于 BGO 的 TOF PET 系统的 CTR。BGO 像素的包裹材料主要采用白色反射器来最有效地收集闪烁光。甚至在像素级实验中开始利用切伦科夫光进行定时计算之后,白色反射器通常仍被用作 BGO 像素的反射器。然而,当用纯切伦科夫辐射器测量两个 511keV 湮灭光子的到达时间差时,将辐射器的侧面涂成黑色可以通过抑制切伦科夫光子的反射来提高 CTR。BGO 用于 TOF PET 探测器需要同时最小化闪烁损耗以获得良好的能量信息,并抑制反射的切伦科夫光子以获得更好的定时性能。因此,BGO 像素的反射器应该进行优化,以实现更好的定时和能量性能。在这项研究中,使用具有特定波长不连续反射率值的有色聚四氟乙烯(PTFE)胶带作为 BGO 反射器。我们假设,通过在 BGO 像素上使用最佳有色反射器选择性地抑制反射的切伦科夫光子,同时最小化闪烁光子损耗,可以增强 CTR。使用白色和三种颜色(黄色、红色和绿色)PTFE 胶带作为反射器研究了 CTR。此外,还研究了黑色涂漆的 PTFE 胶带和增强镜面反射膜作为参考反射材料。当用黄色 PTFE 反射器包裹 3×3×20mm 的 BGO 像素时,与使用传统白色 PTFE 反射器测量的 403±14ps 相比,CTR 显著提高到 365±5ps。与白色反射器相比,光收集的衰减仅为 4.1%,仍能获得足够的能量信息。有色反射器显示出通过优化反射率设计进一步提高 BGO 像素 CTR 的可能性。

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