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使用数字硅光电倍增管阵列和最大似然相互作用时间估计的单片闪烁体 PET 探测器中的亚 200 ps CRT。

Sub-200 ps CRT in monolithic scintillator PET detectors using digital SiPM arrays and maximum likelihood interaction time estimation.

机构信息

Delft University of Technology, Radiation Detection & Medical Imaging, Mekelweg 15, 2629 JB Delft, The Netherlands.

出版信息

Phys Med Biol. 2013 May 21;58(10):3243-57. doi: 10.1088/0031-9155/58/10/3243. Epub 2013 Apr 24.

Abstract

Digital silicon photomultiplier (dSiPM) arrays have favorable characteristics for application in monolithic scintillator detectors for time-of-flight positron emission tomography (PET). To fully exploit these benefits, a maximum likelihood interaction time estimation (MLITE) method was developed to derive the time of interaction from the multiple time stamps obtained per scintillation event. MLITE was compared to several deterministic methods. Timing measurements were performed with monolithic scintillator detectors based on novel dSiPM arrays and LSO:Ce,0.2%Ca crystals of 16 × 16 × 10 mm(3), 16 × 16 × 20 mm(3), 24 × 24 × 10 mm(3), and 24 × 24 × 20 mm(3). The best coincidence resolving times (CRTs) for pairs of identical detectors were obtained with MLITE and measured 157 ps, 185 ps, 161 ps, and 184 ps full-width-at-half-maximum (FWHM), respectively. For comparison, a small reference detector, consisting of a 3 × 3 × 5 mm(3) LSO:Ce,0.2%Ca crystal coupled to a single pixel of a dSiPM array, was measured to have a CRT as low as 120 ps FWHM. The results of this work indicate that the influence of the optical transport of the scintillation photons on the timing performance of monolithic scintillator detectors can at least partially be corrected for by utilizing the information contained in the spatio-temporal distribution of the collection of time stamps registered per scintillation event.

摘要

数字硅光电倍增管(dSiPM)阵列在应用于用于飞行时间正电子发射断层扫描(PET)的单片闪烁体探测器方面具有有利的特性。为了充分利用这些优势,开发了一种最大似然相互作用时间估计(MLITE)方法,以便从每个闪烁事件获得的多个时间标记中得出相互作用时间。MLITE 与几种确定性方法进行了比较。使用基于新型 dSiPM 阵列和 LSO:Ce,0.2%Ca 晶体的单片闪烁体探测器进行了定时测量,晶体尺寸为 16×16×10mm(3)、16×16×20mm(3)、24×24×10mm(3)和 24×24×20mm(3)。使用 MLITE 获得了相同探测器对的最佳符合分辨时间(CRT),其全宽半最大值(FWHM)分别为 157ps、185ps、161ps 和 184ps。相比之下,由 3×3×5mm(3)LSO:Ce,0.2%Ca 晶体与单个 dSiPM 阵列像素耦合组成的小型参考探测器的 CRT 低至 120ps FWHM。这项工作的结果表明,通过利用每个闪烁事件中记录的时间标记的时空分布中包含的信息,至少可以部分校正闪烁光子的光学传输对单片闪烁体探测器定时性能的影响。

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