溶血酶-
闪烁
光学
探测器
材料科学
Crystal(编程语言)
信号(编程语言)
像素
光电子学
Pet成像
闪烁体
物理
核医学
计算机科学
正电子发射断层摄影术
程序设计语言
医学
作者
Hyuntae Leem,Yong Choi,Jiwoong Jung,Kuntai Park,Yeonkyeong Kim,Jin Ho Jung
标识
DOI:10.1016/j.net.2022.02.009
摘要
Research groups in the field of PET instrumentation are studying time-of-flight(TOF) technology to improve the signal-to-noise ratio of PET images. Scintillation light transport and collection plays an important role in improving the coincidence resolving time(CRT) of PET detector based on a pixelated crystal array. Four crystal arrays were designed by the different optical reflection configuration such as external reflectors and surface treatment on the CRT and compared with the light output, energy resolution and CRT. The design proposed in the study was composed of 8 × 8 LYSO crystal array consisted of 3 × 3 × 15 mm3 pixels. The entrance side was roughened while the other five surfaces were polished. Four sides of all crystal pixels were wrapped with ESR-film, and the entrance surface was covered by Teflon-tape. The design provided an excellent timing resolution of 210 ps and improved the CRT by 16% compared to the conventional method using a polishing treatment and ESR-film. This study provided a method for improving the light output and CRT of a pixelated scintillation crystal-based brain TOF PET detector. The proposed configuration might be an attractive detector design for TOF brain PET requiring fast timing performance with high cost-effectiveness.
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