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首页> 外文期刊>Physics in medicine and biology. >Achieving reliable coincidence resolving time measurement of PET detectors using multichannel waveform digitizer based on DRS4 chip
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Achieving reliable coincidence resolving time measurement of PET detectors using multichannel waveform digitizer based on DRS4 chip

机译:基于DRS4芯片实现使用多通道波形数字转换器的可靠巧合分辨时间测量

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摘要

Coincidence resolving time (CRT) is one of the most important physical-performance measures for positron emission tomography (PET), as reconstruction with accurate time-of-flight information enhances the lesion detectability in patient studies. Accordingly, various PET detector designs and high-performance front-end readout circuits have been actively investigated to improve timing performance. The resulting PET detectors are often evaluated using multichannel waveform digitizers for versatile data analysis of the output signals. However, we have found that inappropriate data acquisition (DAQ) using a multichannel waveform digitizer based on the domino-ring-sampler 4 (DRS4) chip can lead to a considerable error when determining CRT To address this issue, we performed CRT measurements using a pair of Hamamatsu R9800 photomultiplier tube based PET detectors. Then, considering intra- and inter-chip sampling, we employed four different combinations of input channels into the CAEN DT57428 waveform digitizer and obtained 2D CRT maps according to the leading-edge discriminator threshold for assessing each DAQ scheme. The intra-chip CRT measurement exhibited unusual streak patterns in the 2D CRT map and yielded the artificially-low CRT information in PET detector pairs, whereas the inter-chip CRT measurement provided the reliable estimation of timing resolution. Further, we could prevent the high-frequency signal crosstalk among input channels within the DRS4 chip using the inter-chip CRT measurement. We expect that our findings will also be useful for achieving the reliable CRT measurements when using other single-chip-based multichannel waveform digitizers..
机译:重合解决时间(CRT)是正电子发射断层扫描(PET)最重要的物理性能措施之一,因为具有准确的飞行时间信息的重建增强了患者研究中的病变可检测性。因此,已经主动研究了各种PET检测器设计和高性能前端读出电路以提高定时性能。经常使用多通道波形数字来评估所得到的PET检测器,用于输出信号的多功能数据分析。但是,我们发现,使用基于Domino-Ring-Sppler 4(DRS4)芯片的多声道波形数字转换器的不适当的数据采集(DAQ)可能导致在确定CRT以解决此问题时的相当大的错误,我们使用A执行CRT测量对滨松R9800光电倍增管的PET探测器。然后,考虑芯片内采样和片内采样,我们采用四种不同的输入通道组合到CAEN DT57428波形数字转换器中,并根据用于评估每个DAQ方案的前沿鉴别器阈值获得的2D CRT映射。芯片内CRT测量在2D CRT图中表现出不寻常的条纹图案,并在PET检测器对中产生人工低CRT信息,而片内CRT测量提供了定时分辨率的可靠估计。此外,我们可以使用片芯片CRT测量来防止DRS4芯片内的输入通道之间的高频信号串扰。我们预计我们的发现对于在使用其他基于单芯片的多通道波形数字化器时,我们的发现也可用于实现可靠的CRT测量。

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