Kim H, Chen C-T, Eclov N, Ronzhin A, Murat P, Ramberg E, Los S, Wyrwicz Alice M, Li Limin, Kao C-M
Department of Radiology, University of Chicago, Chicago, IL 60637, USA.
Fermi National Accelerator Laboratory, Batavia, IL 60510, USA.
Nucl Instrum Methods Phys Res A. 2015 Jun 1;784:557-564. doi: 10.1016/j.nima.2014.12.080.
We are developing a time-of-flight Positron Emission Tomography (PET) detector by using silicon photo-multipliers (SiPM) on a strip-line and high speed waveform sampling data acquisition. In this design, multiple SiPMs are connected on a single strip-line and signal waveforms on the strip-line are sampled at two ends of the strip to reduce readout channels while fully exploiting the fast time response of SiPMs. In addition to the deposited energy and time information, the position of the hit SiPM along the strip-line is determined by the arrival time difference of the waveform. Due to the insensitivity of the SiPMs to magnetic fields and the compact front-end electronics, the detector approach is highly attractive for developing a PET insert system for a magnetic resonance imaging (MRI) scanner to provide simultaneous PET/MR imaging. To investigate the feasibility, experimental tests using prototype detector modules have been conducted inside a 9.4 Tesla small animal MRI scanner (Bruker BioSpec 94/30 imaging spectrometer). On the prototype strip-line board, 16 SiPMs (5.2 mm pitch) are installed on two strip-lines and coupled to 2 × 8 LYSO scintillators (5.0 × 5.0 × 10.0 mm with 5.2 mm pitch). The outputs of the strip-line boards are connected to a Domino-Ring-Sampler (DRS4) evaluation board for waveform sampling. Preliminary experimental results show that the effect of interference on the MRI image due to the PET detector is negligible and that PET detector performance is comparable with the results measured outside the MRI scanner.
我们正在通过在带状线上使用硅光电倍增管(SiPM)和高速波形采样数据采集来开发一种飞行时间正电子发射断层扫描(PET)探测器。在这种设计中,多个SiPM连接在单个带状线上,并且在带状线的两端对带状线上的信号波形进行采样,以减少读出通道,同时充分利用SiPM的快速时间响应。除了沉积能量和时间信息外,沿带状线命中的SiPM的位置由波形的到达时间差确定。由于SiPM对磁场不敏感且前端电子设备紧凑,该探测器方法对于开发用于磁共振成像(MRI)扫描仪的PET插入系统以提供同步PET/MR成像极具吸引力。为了研究其可行性,已在一台9.4特斯拉小动物MRI扫描仪(布鲁克BioSpec 94/30成像光谱仪)内使用原型探测器模块进行了实验测试。在原型带状线板上,16个SiPM(间距5.2毫米)安装在两条带状线上,并与2×8个LYSO闪烁体(5.0×5.0×10.0毫米,间距5.2毫米)耦合。带状线板的输出连接到一个多米诺环采样器(DRS4)评估板进行波形采样。初步实验结果表明,PET探测器对MRI图像的干扰影响可忽略不计,并且PET探测器性能与在MRI扫描仪外部测量的结果相当。