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一种用于正电子发射断层扫描的采用带状线和波形采样的硅光电倍增管信号读出方法。

A Silicon Photo-multiplier Signal Readout Using Strip-line and Waveform Sampling for Positron Emission Tomography.

作者信息

Kim H, Chen C-T, Eclov N, Ronzhin A, Murat P, Ramberg E, Los S, Kao C-M

机构信息

Department of Radiology, University of Chicago, Chicago, IL 60637.

Fermi National Accelerator Laboratory, IL, US.

出版信息

Nucl Instrum Methods Phys Res A. 2016 Sep 11;830:119-129. doi: 10.1016/j.nima.2016.05.085. Epub 2016 May 24.

Abstract

A strip-line and waveform sampling based readout is a signal multiplexing method that can efficiently reduce the readout channels while fully exploiting the fast time characteristics of photo-detectors such as the SiPM. We have applied this readout method for SiPM-based time-of-flight (TOF) positron emission tomography (PET) detectors. We have prototyped strip-line boards in which 8 SiPMs (pitch 5.2 mm) are connected by using a single strip-line, and the signals appearing at the ends of the strip-line are acquired by using the DRS4 waveform sampler at a nominal sampling frequency of 1-5 GS/s. Experimental tests using laser and LYSO scintillator are carried out to assess the performance of the strip-line board. Each SiPM position, which is inferred from the arrival time difference of the two signals at the ends of the strip-line, is well identified with 2.6 mm FWHM resolution when the SiPMs are coupled to LYSO crystals and irradiated by a Na source. The average energy and coincidence time resolution responding to 511 keV photons are measured to be ~32% and ~510 ps FWHM, respectively, at a 5.0 GS/s DRS4 sampling rate. The results show that the sampling rate can be lowered to 1.5 GS/s without performance degradation. These encouraging initial test results indicate that the strip-line and waveform sampling readout method is applicable for SiPM-based TOF PET development.

摘要

基于带状线和波形采样的读出方法是一种信号复用方法,它可以在充分利用诸如硅光电倍增管(SiPM)等光电探测器的快速时间特性的同时,有效地减少读出通道。我们已将这种读出方法应用于基于SiPM的飞行时间(TOF)正电子发射断层扫描(PET)探测器。我们制作了带状线板原型,其中8个SiPM(间距5.2毫米)通过使用单个带状线连接,并且带状线末端出现的信号通过使用DRS4波形采样器以1 - 5 GS/s的标称采样频率进行采集。使用激光和LYSO闪烁体进行了实验测试,以评估带状线板的性能。当SiPM与LYSO晶体耦合并由钠源照射时,根据带状线两端两个信号的到达时间差推断出的每个SiPM位置,其分辨率为2.6毫米半高宽(FWHM),能够很好地识别。在5.0 GS/s的DRS4采样速率下,对511 keV光子响应的平均能量分辨率和符合时间分辨率分别测量为约32%和约510 ps FWHM。结果表明,采样速率可以降低到1.5 GS/s而不会导致性能下降。这些令人鼓舞的初步测试结果表明,带状线和波形采样读出方法适用于基于SiPM的TOF PET开发。

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