Kim H, Chen C-T, Eclov N, Ronzhin A, Murat P, Ramberg E, Los S, Kao C-M
Department of Radiology, University of Chicago, Chicago, IL 60637.
Fermi National Accelerator Laboratory, IL, US.
Nucl Instrum Methods Phys Res A. 2016 Sep 11;830:119-129. doi: 10.1016/j.nima.2016.05.085. Epub 2016 May 24.
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.
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。