首页> 外文会议>Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC), 2011 IEEE >Waveform-sampling electronics for time-of-flight PET scanner
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Waveform-sampling electronics for time-of-flight PET scanner

机译:飞行时间PET扫描仪的波形采样电子设备

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an excellent scintillator for TOF PET. Our group previously reported coincidence timing resolution 315–330 ps (fwhm) in benchtop measurements and 375 ps in full-system measurements using semi-custom electronics. This contribution reports on a complete redesign of the LAPET electronics, trigger, and data acquisition system. Our design uses 240 DRS4 chips to obtain oscilloscope-quality sampling of each PMT waveform at 2 GSPS. The 7 PMTs with which each crystal''s scintillation light is collected map cleanly into the 8 analog inputs of a DRS4 chip, facilitating a redundant and nearly deadtime-free (at clinical rates) trigger design, in spite of the ∼ 3 µs required for DRS4 readout. An FPGA-based trigger using analog pulse shaping and 100 MSPS sampling provides coarse energy and timing measurements used to detect coincident pairs and to select DRS4 chips for readout. Simulation studies show that oscilloscope-quality readout of each PMT signal will permit more flexible handling of detector calibrations, PMT waveform baseline offsets, and pulse pile-up effects. We thus expect the upgraded electronics to permit system-level performance that more closely approximates single-module benchtop results and to preserve that performance at clinical count rates. Our goals are both to explore the feasibility of WFS for a large scanner and to improve the overall performance of the LAPE- research scanner. We present initial tests using prototype units of our redesigned electronics.
机译:TOF PET的出色闪烁体。我们的小组先前报告使用半定制电子设备在台式测量中的重合定时分辨率为315-330 ps(fwhm),在全系统测量中的重合定时分辨率为375 ps。此文稿报告了LAPET电子,触发器和数据采集系统的完整重新设计。我们的设计使用240个DRS4芯片,以2 GSPS的速度获得每个PMT波形的示波器质量采样。收集每个晶体的闪烁光的7个PMT可以清晰地映射到DRS4芯片的8个模拟输入中,尽管需要约3 µs的时间,却可以简化冗余设计,并且几乎没有死区时间(以临床速率)。用于DRS4读数。使用模拟脉冲整形和100 MSPS采样的基于FPGA的触发器提供了粗略的能量和时序测量,用于检测重合对并选择DRS4芯片进行读出。仿真研究表明,每个PMT信号的示波器质量读数将允许更灵活地处理检测器校准,PMT波形基线偏移和脉冲堆积效应。因此,我们希望升级后的电子设备能够实现更接近于单模块台式结果的系统级性能,并以临床计数率保持该性能。我们的目标是探索WFS在大型扫描仪上的可行性,并提高LAPE研究扫描仪的整体性能。我们使用重新设计的电子产品的原型装置进行初始测试。

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