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本文引用的文献

1
Optimization of a LSO-Based Detector Module for Time-of-Flight PET.基于LSO的飞行时间PET探测器模块的优化
IEEE Trans Nucl Sci. 2010 Jun 1;57(3):1570-1576. doi: 10.1109/TNS.2010.2047266.

用于飞行时间正电子发射断层扫描(PET)系统的高性能电子设备。

High-performance electronics for time-of-flight PET systems.

作者信息

Choong W-S, Peng Q, Vu C Q, Turko B T, Moses W W

机构信息

Lawrence Berkeley National Laboratory, Berkeley, CA 94720, U.S.A.

出版信息

J Instrum. 2013 Jan 1;8(1):T01006. doi: 10.1088/1748-0221/8/01/T01006.

DOI:10.1088/1748-0221/8/01/T01006
PMID:24575149
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3932514/
Abstract

We have designed and built a high-performance readout electronics system for time-of-flight positron emission tomography (TOF PET) cameras. The electronics architecture is based on the electronics for a commercial whole-body PET camera (Siemens/CPS Cardinal electronics), modified to improve the timing performance. The fundamental contributions in the electronics that can limit the timing resolution include the constant fraction discriminator (CFD), which converts the analog electrical signal from the photo-detector to a digital signal whose leading edge is time-correlated with the input signal, and the time-to-digital converter (TDC), which provides a time stamp for the CFD output. Coincident events are identified by digitally comparing the values of the time stamps. In the Cardinal electronics, the front-end processing electronics are performed by an Analog subsection board, which has two application-specific integrated circuits (ASICs), each servicing a PET block detector module. The ASIC has a built-in CFD and TDC. We found that a significant degradation in the timing resolution comes from the ASIC's CFD and TDC. Therefore, we have designed and built an improved Analog subsection board that replaces the ASIC's CFD and TDC with a high-performance CFD (made with discrete components) and TDC (using the CERN high-performance TDC ASIC). The improved Analog subsection board is used in a custom single-ring LSO-based TOF PET camera. The electronics system achieves a timing resolution of 60 ps FWHM. Prototype TOF detector modules are read out with the electronics system and give coincidence timing resolutions of 259 ps FWHM and 156 ps FWHM for detector modules coupled to LSO and LaBr crystals respectively.

摘要

我们设计并构建了一种用于飞行时间正电子发射断层扫描(TOF PET)相机的高性能读出电子系统。该电子架构基于一款商用全身PET相机(西门子/CPS红衣主教电子设备)的电子设备,并进行了改进以提高定时性能。电子设备中可能限制定时分辨率的基本因素包括恒比鉴别器(CFD),它将来自光电探测器的模拟电信号转换为数字信号,其前沿与输入信号在时间上相关,以及时间数字转换器(TDC),它为CFD输出提供时间戳。通过对时间戳的值进行数字比较来识别符合事件。在红衣主教电子设备中,前端处理电子设备由一个模拟子板执行,该子板有两个专用集成电路(ASIC),每个ASIC为一个PET块探测器模块服务。该ASIC内置了CFD和TDC。我们发现定时分辨率的显著下降来自ASIC的CFD和TDC。因此,我们设计并构建了一个改进的模拟子板,用一个高性能CFD(由分立元件制成)和TDC(使用欧洲核子研究组织的高性能TDC ASIC)取代了ASIC的CFD和TDC。改进后的模拟子板用于定制的基于LSO的单环TOF PET相机。该电子系统实现了60 ps半高宽的定时分辨率。用该电子系统读出TOF探测器模块的原型,对于分别与LSO和LaBr晶体耦合的探测器模块,符合定时分辨率分别为259 ps半高宽和156 ps半高宽。