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Characterization of Large-Area SiPM Array for PET Applications

硅光电倍增管 直方图 灵敏度(控制系统) 物理 分析化学(期刊) 探测器 计算机科学 光学 人工智能 电子工程 化学 闪烁体 工程类 色谱法 图像(数学)
作者
Junwei Du,Yongfeng Yang,Xiaowei Bai,Martin S. Judenhofer,Eric Berg,Kun Di,Steve Buckley,Carl Jackson,Simon R. Cherry
出处
期刊:IEEE Transactions on Nuclear Science [Institute of Electrical and Electronics Engineers]
卷期号:63 (1): 8-16 被引量:50
标识
DOI:10.1109/tns.2015.2499726
摘要

The performance of an 8 ×8 array of 6.0 ×6.0 mm 2 (active area) SiPMs was evaluated for PET applications using crystal arrays with different pitch sizes (3.4, 1.5, 1.35, and 1.2 mm) and custom designed five-channel front-end readout electronics (four channels for position information and one channel for timing information). The total area of this SiPM array is 57.4 ×57.4 mm 2 , and the pitch size is 7.2 mm. It was fabricated using enhanced blue sensitivity SiPMs (MicroFB-60035-SMT) with peak spectral sensitivity at 420 nm. The performance of the SiPM array was characterized by measuring flood histogram decoding quality, energy resolution, timing resolution and saturation at several bias voltages (from 25.0 to 30.0 V in 0.5 V intervals) and two different temperatures ( 5 ° C and 20 ° C). Results show that the best flood histogram was obtained at a bias voltage of 28.0 V and 5 ° C and an array of polished LSO crystals with a pitch as small as 1.2 mm can be resolved. No saturation was observed up to a bias voltage of 29.5 V during the experiments, due to adequate light sharing between SiPMs. Energy resolution and timing resolution at 5 ° C ranged from 12.7 ±0.8% to 14.6 ±1.4% and 1.58 ±0.13 ns to 2.50 ±0.44 ns, for crystal array pitch sizes of 3.4 and 1.2 mm, respectively. Superior flood histogram quality, energy resolution and timing resolution were obtained with larger crystal array pitch sizes and at lower temperature. Based on our findings, we conclude that this large-area SiPM array can serve as a suitable photodetector for high-resolution small-animal PET or dedicated human brain PET scanners.

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