An FPGA-based Time Sampling Charge Measurement Method for TOF-PET Detectors

Bo Wu, Yonggang Wang, Qiang Cao, J. Kuang, Mingchen Wang, Xiaoyu Zhou
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引用次数: 6

Abstract

The front-end electronics for detectors of time- of-flight positron emission tomography (TOF-PET) is required to read out the time and energy of detected $\gamma$-events simultaneously. To simplify the circuits for high integration, we propose an amplitude based time-sampling method with a novel algorithm to precisely extract the energy information from time measurement. Therefore, traditionally two independent measuring circuits can be merged without losing measurement precision for each item. A prototype with the method was implemented fully with a field programmable gate array (FPGA), and applied to a TOF-PET detector consisted of a silicon photomultiplier (SiPM) coupled with a LYSO crystal. The energy resolution and the coincidence time resolution of the detector were measured as 14.18% and 316 ps respectively, which are comparable with traditional separate measurements. The contribution of our new method to the energy resolution is measured as 5.9%, which is much small than the intrinsic energy resolution of detectors. The FPGA based prototype design demonstrates not only its effectiveness, but also its practicality. Instead of ASIC technology, using modern FPGA chips, the front-end electronics for TOF-PET scanners can be equally compact and power-efficient.
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基于fpga的TOF-PET探测器时间采样电荷测量方法
飞行时间正电子发射层析成像(TOF-PET)探测器的前端电子设备需要同时读出探测到的$\gamma$-事件的时间和能量。为了简化电路以实现高集成度,我们提出了一种基于幅值的时间采样方法,该方法采用一种新颖的算法从时间测量中精确提取能量信息。因此,传统上可以将两个独立的测量电路合并而不影响每个项目的测量精度。利用现场可编程门阵列(FPGA)实现了该方法的原型,并将其应用于由硅光电倍增管(SiPM)与LYSO晶体耦合组成的TOF-PET探测器。探测器的能量分辨率和符合时间分辨率分别为14.18%和316 ps,与传统的单独测量相当。我们的新方法对能量分辨率的贡献为5.9%,远远小于探测器的本征能量分辨率。基于FPGA的原型设计不仅证明了它的有效性,而且证明了它的实用性。使用现代FPGA芯片代替ASIC技术,TOF-PET扫描仪的前端电子设备可以同样紧凑和节能。
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