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Timing optimization for digital PET detector module based on FPGA-only MVT digitizers

机译:基于仅FPGA的MVT数字转换器的数字PET检测器模块的时序优化

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Nowadays, time-of-flight (TOF) PET detectors and systems are becoming increasingly common since scintillators, photodetectors and electronics has made significant progress. It has been well recognized that TOF PET imaging can increase the image signal-to-noise ratio (SNR) and yield other benefits; and the degree of these enhancements is higher as the timing resolution improves. Previously we have developed a digital PET detector module using 48-channel FPGA-only MVT digitizer board and measured a coincidence resolving time (CRT) of 684ps (FWHM) and an energy resolution of 15% @511KeV. In this work, we investigate to replace our currently used SiPM with SiPMs that exhibit better timing characteristics. Specifically, we consider SensL FB30035 and Excelitas C30742-33-50C. We set a pair of single channel LYSO/SiPM detectors, first connect their output to an oscilloscope for both of SiPMs under test and measure their performance in different bias voltage. The results indicate that the CRT obtained for the SensL FM30035, SensL FB30035 and Excelitas C30742-33-50C-X are, respectively, 464ps, 310ps and 247ps FWHM. Based on these data sampled by oscilloscope, we also simulate the MVT sampling process and evaluate two common pulse model's suitability for both of SiPMs. Then we reconnect the signal from these SiPMs to our upgraded 72-channel MVT digitizer board. Timing resolution of 357ps and 278ps are achieved respectively by FB30035 and C30742.
机译:如今,飞行时间(TOF)PET探测器和系统变得越来越普遍,这是因为闪烁器,光电探测器和电子设备取得了长足的进步。众所周知,TOF PET成像可以提高图像的信噪比(SNR)并产生其他好处。随着时序分辨率的提高,这些增强的程度也更高。以前,我们已经开发了一种数字PET检测器模块,该模块使用仅用于FPGA的48通道MVT数字化板,测量的重合分辨时间(CRT)为684ps(FWHM),能量分辨率为511KeV时为15%。在这项工作中,我们正在研究用表现出更好时序特性的SiPM代替我们目前使用的SiPM。具体来说,我们考虑使用SensL FB30035和Excelitas C30742-33-50C。我们设置了一对单通道LYSO / SiPM检测器,首先将它们的输出连接到两个被测SiPM的示波器,然后在不同的偏置电压下测量其性能。结果表明,为SensL FM30035,SensL FB30035和Excelitas C30742-33-50C-X获得的CRT分别为464ps,310ps和247ps FWHM。基于示波器采样的这些数据,我们还模拟了MVT采样过程,并评估了两种常见脉冲模型对两种SiPM的适用性。然后,我们将来自这些SiPM的信号重新连接到升级后的72通道MVT数字转换器板。 FB30035和C30742分别达到357ps和278ps的时序分辨率。

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