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首页> 外文期刊>IEEE Transactions on Nuclear Science >Evaluation of a Modular PET System Architecture with Synchronization over Data Links
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Evaluation of a Modular PET System Architecture with Synchronization over Data Links

机译:通过数据链路同步评估模块化PET系统体系结构

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摘要

A DAQ architecture for a PET system is presented that focuses on modularity, scalability and reusability. The system defines two basic building blocks: data acquisitors and concentrators, which can be replicated in order to build a complete DAQ of variable size. Acquisition modules contain a scintillating crystal and either a position-sensitive photomultiplier (PSPMT) or an array of silicon photomultipliers (SiPM). The detector signals are processed by AMIC, an integrated analog front-end that generates programmable analog outputs which contain the first few statistical moments of the light distribution in the scintillator. These signals are digitized at 156.25 Msamples/s with free-running ADCs and sent to an FPGA which detects single gamma events, extracts position and time information online using digital algorithms, and submits these data to a concentrator module. Concentrator modules collect single events from acquisition modules and perform coincidence detection and data aggregation. A synchronization scheme over data links is implemented that calibrates each link’s latency independently, ensuring that there are no limitations on module mobility, and that the architecture is arbitrarily scalable. Prototype boards with both acquisition and concentration functionality have been built for evaluation purposes. The performance of a small PET system with two detectors based on continuous scintillators is presented. A synchronization error below 50 ps rms is measured, and energy resolutions of 19% and 24% and timing resolutions of 2.0 ns and 4.7 ns FWHM are obtained for PMT and SiPM photodetectors, respectively.
机译:提出了一种用于PET系统的DAQ体系结构,该体系结构侧重于模块性,可伸缩性和可重用性。该系统定义了两个基本构建块:数据获取器和集中器,可以对其进行复制以构建可变大小的完整DAQ。采集模块包含一个闪烁晶体和一个位置敏感光电倍增管(PSPMT)或硅光电倍增管阵列(SiPM)。检测器信号由AMIC处理,AMIC是一个集成的模拟前端,可生成可编程模拟输出,其中包含闪烁器中光分布的前几个统计矩。这些信号通过自由运行的ADC以156.25 Msamples / s的速度数字化,然后发送到FPGA,后者检测单个伽马事件,使用数字算法在线提取位置和时间信息,并将这些数据提交给集中器模块。集中器模块从采集模块收集单个事件,并执行巧合检测和数据聚合。实施了数据链路上的同步方案,该方案可独立校准每个链路的延迟,从而确保对模块移动性没有限制,并且该体系结构可任意扩展。具有采集和集中功能的原型板已用于评估目的。介绍了具有两个基于连续闪烁器的探测器的小型PET系统的性能。测量了低于50 ps rms的同步误差,分别为PMT和SiPM光电探测器获得了19%和24%的能量分辨率以及2.0 ns和4.7 ns FWHM的时序分辨率。

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