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Evaluation of a PET detector based on SiPMs and FPGA-only MVT digitizers

机译:基于SIPMS和FPGA的MVT数字评估宠物检测器的评估

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摘要

Silicon photomultipliers (SiPMs) are considered among the most promising sensors for positron emission tomography (PET) applications. To fully utilize the fast response of SiPMs, a 1-to-1 coupling configuration for scintillators and sensors is applied in SiPM-based detectors, leading to a vast number of channels to process. Previously, we have proposed a multi-voltage threshold (MVT) sampling method that can digitize scintillation pulses by means of simplified circuits. The feasibility of implementing MVT digitizers with only field programmable gate arrays (FPGAs) was proven, and hence, a digital PET detector module based on SiPMs was developed. In this work, we report the performance of our upgraded detector modules based on an evaluation of a fully functional demonstrator system. The system has the form of a 12-sided ring with a 108 mm diameter and a 25 mm axial length composed of 6 detector modules. Our measurements show an energy resolution of 18.9% at 511 keV and a coincidence timing resolution of 354 ps. With an energy window of 450-650 keV, the absolute sensitivity at the center of the scanner is 1.11%. The spatial resolutions are 2.08, 2.19 and 2.24 mm in the radial, tangential and axial directions, respectively. Since inter-crystal scatter (ICS) can cause count loss in the system, a recovery scheme is employed for the same data. As a result, the sensitivity and signal-to-noise ratio in the uniform region for an image quality phantom increase by 83% and 19%, respectively. However, we observe a compromised time resolution of 419 ps and a deterioration of 7-12% in spatial resolution.
机译:硅光电倍增器(SIPMS)被认为是正电子发射断层扫描(PET)应用的最有前途的传感器。为了充分利用SIPMS的快速响应,在基于SIPM的探测器中应用用于闪烁体和传感器的1比1耦合配置,从而导致大量的通道处理。以前,我们提出了一种多电压阈值(MVT)采样方法,其可以通过简化的电路向闪烁脉冲进行数字化。仅经过现场可编程门阵列(FPGA)实现MVT数字体的可行性,因此开发了一种基于SIPMS的数字宠物检测器模块。在这项工作中,我们根据全功能演示系统的评估报告了我们升级的探测器模块的性能。该系统具有12侧环的形式,直径为108毫米,由6个检测器模块组成25mm轴向长度。我们的测量结果显示了511 keV的能量分辨率为18.9%,符合354 ps的巧合时​​分分辨率。通过450-650 kev的能量窗口,扫描仪中心的绝对灵敏度为1.11%。空间分辨率分别为2.08,2.19和2.24 mm,分别在径向,切向和轴向方向上。由于间晶间散射(IC)可以在系统中导致计数损耗,因此采用恢复方案用于相同的数据。结果,图像质量幻像的均匀区域中的灵敏度和信噪比分别增加了83%和19%。然而,我们观察419 ps的受损时间分辨率,空间分辨率的恶化为7-12%。

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