带增益可编程分压器的TOF PET PMT中传输时间变化的研究

Chao Wang, Hongdi Li, S. An, Yuxuan Zhang, H. Baghaei, R. Ramirez, Shitao Liu, W. Wong
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引用次数: 0

摘要

在正电子发射层析成像(PET)相机的前端电路中,通过改变节点电压分布来调节光电倍增管(PMT)的增益比改变总高压更容易实现,而且这种方法在信噪比(SNR)方面优于在信号通路中使用可变增益放大器(VGA),后者可能会产生额外的噪声。在本研究中,我们修改了先前的分压器设计,以实现更宽的增益可调范围,从而放宽了PMT增益扩展要求,以降低PMT成本。利用精密的试验台测量了PMT传输时间随相对增益的变化。从测试结果来看,在可调增益范围内,PMT传输时间变化可达几百皮秒;这在飞行时间(TOF)应用中是不可忽略的。因此,需要进行时间校正。从过境时间变化与PMT相对增益曲线的查找表(LUT)被用来校正过境时间变化与增益调整同时进行,而不执行耗时的整个系统定时重新校准。
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A study of transit time variation in the PMT with a gain programmable voltage divider for a TOF PET
In the front-end circuit of a Positron Emission Tomography (PET) camera, adjusting the photomultipliers (PMT) gain by changing the voltage distribution in dynodes instead of changing the total high voltage is more convenient to realize, and this method is better in signal-to-noise-ratio (SNR) than using a variable-gain-amplifier (VGA) in the signal path which may induce extra noise. In this study, we revised the previous voltage divider design to achieve wider gain adjustable range which relaxes the PMT gain-spread requirement to reduce the PMT cost. An accurate test bench was used to measure the PMT transit time variation as a function of the relative gain. From the test result, within the adjustable gain range, the PMT transit time variation can be as large as several hundreds of picoseconds; and this is non-ignorable in the Time-of-Flight (TOF) applications. Hence, a time correction is required. A look-up-table (LUT) from the transit time variation vs. PMT relative gain curve is used to correct this transit time variation with the gain adjustment simultaneously without performing the time-consuming entire system timing recalibration.
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