用于 TOF PET 探测器的 MPPC 阵列上保护罩的光学串扰。

IF 3.4 3区 医学 Q2 ENGINEERING, BIOMEDICAL
Eiji Yoshida, Fujino Obata, Taiga Yamaya
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引用次数: 0

摘要

目的: 飞行时间(TOF)是直接影响 PET 系统图像质量的一个重要因素,人们已经做出了各种尝试来改善 PET 探测器的重合分辨时间(CRT)。对于独立读出探测器,每个硅光电倍增管(SiPM)都能获得定时,因此它们对漫射闪烁光的敏感度较低,从而获得更好的重合分辨时间(CRT)。如果能将光聚焦在单个硅光电倍增管上,则可望取得进一步的改进。然而,现有的 SiPM 阵列在 SiPM 上有一个薄薄的保护罩,SiPM 之间的间隙被空气或保护罩填满,因此光线必须通过保护罩扩散。我们使用 3.1 × 3.1 × 20 mm3 快 LGSO 晶体和 3 mm 见方的 8 × 8 多像素光子计数器 (MPPC) 阵列。多像素光子计数器的间距为 3.2 毫米,保护层厚度为 150 微米。为了减少闪烁光在保护罩中的扩散,MPPC 阵列上的部分非活动区域用反射材料进行了光学分隔。具体来说,沿着 MPPC 的非活动区域分别制作了 50、100、150 和 350 μm 深的网格状狭缝,并用 BaSO4 粉末作为反射材料填充。 重要意义。 保护罩扩散到其他 MPPC 的闪烁光高达 10%,保护罩的光学串扰使 CRT 下降 10%。建议的方法有望改善 TOF 探测器的显像管。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optical crosstalk of protective cover on MPPC array for TOF PET detector.

Objective. Time-of-flight (TOF) is an important factor that directly affects the image quality of PET systems, and various attempts have been made to improve the coincidence resolving time (CRT) of PET detectors. For independent readout detectors, the timing is acquired for each silicon photomultiplier (SiPM), so they are less sensitive to diffused scintillation light, resulting in a better CRT. Further improvement can be expected if the light can be focused on a single SiPM. However, existing SiPM arrays have a thin protective cover on the SiPM and the gap between the SiPMs is filled with either air or the protective cover, so the light must diffuse through the cover. In this work, we investigated optical crosstalk in the protective cover to improve the CRT.Approach. We used 3.1 × 3.1 × 20 mm3fast LGSO crystals and 3 mm square 8 × 8 multi pixel photon counter (MPPC) arrays. Pitch of the MPPCs was 3.2 mm and thickness of the protective cover on them was 150μm. To reduce diffusion of scintillation light in the protective cover, the part of the inactive areas on the MPPC array were optically separated using reflective material. Specifically, 50, 100, 150, and 350μm deep grid-shaped slits were made along the inactive area of the MPPCs and they were filled with BaSO4powder as the reflective material.Main results. Coincidence counts were measured with a pair of TOF detectors, and the CRT was shorter with a deeper slit depth. The CRT before improvement was 235 ps, and using the cover having the 350μm deep slits filled with reflective material lowered the CRT to 211 ps.Significance. Up to 10% of the scintillation light was diffused to other MPPCs by the protective cover, and the CRT was degraded by 10% due to optical crosstalk of the cover. The proposed method promises to improve the CRT of the TOF detector.

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来源期刊
Physics in medicine and biology
Physics in medicine and biology 医学-工程:生物医学
CiteScore
6.50
自引率
14.30%
发文量
409
审稿时长
2 months
期刊介绍: The development and application of theoretical, computational and experimental physics to medicine, physiology and biology. Topics covered are: therapy physics (including ionizing and non-ionizing radiation); biomedical imaging (e.g. x-ray, magnetic resonance, ultrasound, optical and nuclear imaging); image-guided interventions; image reconstruction and analysis (including kinetic modelling); artificial intelligence in biomedical physics and analysis; nanoparticles in imaging and therapy; radiobiology; radiation protection and patient dose monitoring; radiation dosimetry
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