Scholay

学术搜索 · AI 审稿 · LaTeX 协作

Development of dual‐ended readout PET detectors achieving high 3D position resolution and high timing resolution using NINO and PICO2023 ASICs

作者:Pengshuo Gan, Sen Yang, Haonan Li, Samuel Mungai, Zhonghua Kuang, Ning Ren, Yongfeng Yang, Zheng Liu · 发表于:Medical Physics · 年份:2025 · DOI:10.1002/mp.18072 · 被引用次数:2 · 研究领域:Radiation Detection and Scintillator Technologies、Medical Imaging Techniques and Applications、Particle Detector Development and Performance

Abstract Background Time‐of‐flight (TOF) measurement in positron emission tomography (PET) scanner can significantly improve the signal‐to‐noise ratio of images. Despite the significant improvements of the timing resolution of PET detectors in recent years, further development is urgently needed. Purpose This work aims to develop a PET detector with high 3D position resolution and excellent timing resolution by using two high timing performance ASICs for whole‐body and organ‐specific TOF PET scanners. Methods PET detector consisting of an 8 × 8 LYSO crystal array with a crystal size of 1.45 1.45 20 mm 3 dual‐ended read out by 4 4 SiPM arrays with an active pixel area of 3 3 mm 2 are measured in this work. The signals of the SiPM arrays are read out and processed separately for the timing and energy, with the energy signals multiplexed by row or column summing circuits to generate only 2 position encoding energy signals for each SiPM array and the timing signals processed by the NINO and PICO2023 ASICs to obtain a high precision timing information. Result The detector achieved a flood histogram with all crystals clearly resolved, an average energy resolution of 10.7% and depth of interaction (DOI) resolution of 2.4 mm. The coincidence timing resolutions (CTR) of the detector achieved with the NINO and PICO2023 ASICs were 149 3 ps and 142 3 ps, respectively, if both SiPM arrays were used to measure the timing and the depth dependence of timing correction was performed. The CTRs...