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Time Determination of BGO-APD Detectors by Digital Signal Processing for Positron Emission Tomography

机译:正电子发射断层扫描的数字信号处理时间确定BGO-APD探测器

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Coincidence timing resolution in Positron Emission Tomography (PET) can be improved by replacing fast analog pulse shaping and Constant Fraction Discriminator (CFD) with fully digital signal processing. This can be achieved by digitizing the signal from individual detectors using 100-MHz 8-bit Analog-to-Digital converters (ADC) and processing the data in Field Programmable Gate Arrays (FPGA). Various digital implementation of filters and baseline restorers have been combined with numerical least mean square fit to the data to extract the time of interaction and the energy deposited in BGO-APD detectors. Using the same detector and pre-amplifier, a time resolution of 7.2 ns was obtained with digital techniques, as compare to 12.7 ns with the conventional analog method. By reducing the BGO-BGO coincidence time window by more than ~40 %, an equivalent reduction of the rate of random events can be obtained, which would improve image SNR significantly at high counting rate in a BGO-APD PET scanner. The proposed digital techniques can be readily adapted to other faster detectors.
机译:通过用全数字信号处理更换快速模拟脉冲整形和恒定分数鉴别器(CFD),可以改善正电子发射断层扫描(PET)中的重合时序分辨率。这可以通过使用100-MHz 8位模数转换器(ADC)从各个检测器数字化信号来实现,并在现场可编程门阵列(FPGA)中处理数据。过滤器和基线恢复器的各种数字实现已与数值最小均值相适合数据以提取相互作用的时间和沉积在BGO-APD探测器中的能量。使用相同的检测器和预放大器,使用数字技术获得7.2 ns的时间分辨率,与传统的模拟方法相比,与12.7 ns进行比较。通过将BGO-BGO重合时间窗口减少超过〜40%,可以获得随机事件速率的等效减少,这将在BGO-APD PET扫描仪中以高计数速率提高图像SNR。所提出的数字技术可以容易地适应其他更快的探测器。

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