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基于 TOFPET2 专用集成电路的双读出探测器的相互作用深度研究。

Depth-of-interaction study of a dual-readout detector based on TOFPET2 application-specific integrated circuit.

机构信息

Department of Nuclear, Plasma, and Radiological Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, United States of America.

出版信息

Phys Med Biol. 2019 Sep 4;64(17):175008. doi: 10.1088/1361-6560/ab3866.

Abstract

Depth-of-interaction (DOI) capability is important for achieving high spatial resolution and sensitivity in dedicated organ and small animal positron emission tomography (PET) scanners. The dual-ended readout is one of the common methods that can achieve good DOI resolution. The aim of this study is to evaluate a dual-ended readout detector based on silicon photomultiplier (SiPM) and TOFPET2 application-specific integrated circuit (ASIC). The detector is based on 4 [Formula: see text] 4 lutetium-yttrium oxyorthosilicate (LYSO) units, each unit contained 6 [Formula: see text] 6 LYSO crystals, and the crystal size was 1 [Formula: see text] 1 [Formula: see text] 20 mm. The four lateral surfaces of LYSO crystals were mechanically ground to W14 (surface roughness 10-14 [Formula: see text]m), and the two ended surfaces were polished (surface roughness  <0.5 [Formula: see text]m). The reflector was Toray Lumirror E60, and the packing fraction of the LYSO block was 86.5%. Each LYSO unit was read out from both ends with two Hamamatsu S13361-3050AE-08 SiPM arrays. The analog output signals of SiPM were digitized by PETsys TOFPET2 ASIC and acquired by PETsys SiPM Readout System. The ASIC and SiPM were cooled by a fan and a Peltier element. To investigate the crystal resolvability, different light guide thicknesses including 0.8, 1, 1.2 and 2 mm were tested. The light guide was made of optical glass (H-K9L-Foctek Photoincs), and the size and refractive index were 6.45 [Formula: see text] 6.45 mm and 1.53 (at 420 nm), respectively. To characterize the detector performance at different depths, another 1 [Formula: see text] 25.8 [Formula: see text] 20 mm single LYSO slab was used. Data were acquired at 10 depths (1, 3, …, 19 mm), and each depth had a 10 min acquisition time and about 40 thousand coincidence events. During the experiment, the SiPM temperature was controlled as 27.6 [Formula: see text] 0.4 °C. The results showed that the 1.2 mm light guide offered the best crystal resolvability. The energy, coincidence time, and DOI resolution full-width at half-maximum of the detector were characterized as 15.66% [Formula: see text] 0.66%, 602.98 [Formula: see text] 10.58 ps, and 2.33 [Formula: see text] 0.07 mm, respectively. The good DOI resolution indicates the potential of utilizing the detector for high-resolution PET applications.

摘要

深度交互(DOI)能力对于实现专用器官和小动物正电子发射断层扫描(PET)扫描仪的高空间分辨率和灵敏度非常重要。双端读出是可以实现良好 DOI 分辨率的常见方法之一。本研究旨在评估一种基于硅光电倍增管(SiPM)和 TOFPET2 专用集成电路(ASIC)的双端读出探测器。该探测器基于 4 [Formula: see text] 4 硅酸镥(LYSO)单元,每个单元包含 6 [Formula: see text] 6 LYSO 晶体,晶体尺寸为 1 [Formula: see text] 1 [Formula: see text] 20mm。LYSO 晶体的四个侧面经过机械研磨至 W14(表面粗糙度 10-14 [Formula: see text]m),两端面经过抛光(表面粗糙度  <0.5 [Formula: see text]m)。反射器为东丽 Lumirror E60,LYSO 块的填充率为 86.5%。每个 LYSO 单元从两端用两个 Hamamatsu S13361-3050AE-08 SiPM 阵列进行读出。SiPM 的模拟输出信号由 PETsys TOFPET2 ASIC 数字化,并由 PETsys SiPM 读出系统采集。ASIC 和 SiPM 通过风扇和珀耳帖元件进行冷却。为了研究晶体分辨率,测试了不同厚度的光导,包括 0.8、1、1.2 和 2mm。光导由光学玻璃(H-K9L-Foctek Photoincs)制成,尺寸和折射率分别为 6.45 [Formula: see text] 6.45mm 和 1.53(在 420nm 时)。为了在不同深度表征探测器性能,还使用了另一个 1 [Formula: see text] 25.8 [Formula: see text] 20mm 单 LYSO 平板。在 10 个深度(1、3、…、19mm)进行数据采集,每个深度的采集时间为 10 分钟,大约有 4 万个符合事件。实验过程中,SiPM 温度控制在 27.6 [Formula: see text] 0.4°C。结果表明,1.2mm 光导提供了最佳的晶体分辨率。探测器的能量、符合时间和 DOI 分辨率半最大值全宽分别为 15.66% [Formula: see text] 0.66%、602.98 [Formula: see text] 10.58ps 和 2.33 [Formula: see text] 0.07mm。良好的 DOI 分辨率表明该探测器有望用于高分辨率 PET 应用。

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