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后端读出电子设计与初步结果:基于碲锌镉(CZT)的头颈专用正电子发射断层扫描(PET)系统

Back-end readout electronic design and initial results: a head-and-neck dedicated PET system based on CZT.

作者信息

Wang Yuli, Herbst Ryan, Abbaszadeh Shiva

机构信息

Department of Electrical and Computer Engineering, University of California, Santa Cruz, Santa Cruz, CA, 95064.

SLAC National Accelerator Laboratory, 2575 Sand Hill Road, Menlo Park, CA 94025.

出版信息

Proc SPIE Int Soc Opt Eng. 2021 Feb;11595. doi: 10.1117/12.2576598. Epub 2021 Feb 15.

Abstract

Cadmium zinc telluride (CZT) radiation detectors are suitable for various applications, due to good energy performance at room temperature and simple pixilation to achieve high spatial resolution. Our group is developing a two-panel head-and-neck dedicated positron emission tomography (PET) system with CZT detectors. In this work, we present the back-end readout electronic design and the initial electronic noise results of our system. The back-end readout electronic incorporates RENA boards (a total 150 RENA boards for each panel), 30:1 fan-in boards connecting 30 RENA boards to the PicoZed 7010/7020 board (a total 5 fan-in boards for each panel). In each panel, 5:1 intermediate boards are used for biasing CZT detectors. The RENA board and the Picozed board are capable of data transmission of 50 Mbps and 6.6 Gbps, respectively. Electronic noise was also quantified using a square wave test pulse that provides charge injection into each channel of the RENA chip in the amount of 75fC/Volt. The pulse amplitude was chosen to generate approximately the same amount of charges as 511 keV photon would provide for each channels. The FWHM electronic noise at 511 keV was measured to be less than 1% (FWHM of 7.80 ± 1.47 ADC units or 4.89 ± 0.92 keV after conversion).

摘要

碲锌镉(CZT)辐射探测器适用于各种应用,因为它在室温下具有良好的能量性能,并且通过简单的像素化就能实现高空间分辨率。我们团队正在开发一种配备CZT探测器的双面板头颈部专用正电子发射断层扫描(PET)系统。在这项工作中,我们展示了我们系统的后端读出电子设计和初始电子噪声结果。后端读出电子设备包括RENA板(每个面板总共150个RENA板)、将30个RENA板连接到PicoZed 7010/7020板的30:1扇入板(每个面板总共5个扇入板)。在每个面板中,5:1中间板用于为CZT探测器提供偏置。RENA板和Picozed板的数据传输速率分别为50 Mbps和6.6 Gbps。还使用方波测试脉冲对电子噪声进行了量化,该脉冲向RENA芯片的每个通道注入75fC/伏特的电荷。选择脉冲幅度以产生与511 keV光子为每个通道提供的电荷量大致相同的电荷量。在511 keV处测得的半高宽电子噪声小于1%(半高宽为7.80±1.47个ADC单位,转换后为4.89±0.92 keV)。

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