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Development and characterization of a modular acquisition system for a 4D PET block detector

机译:开发和表征用于4D PET块检测器的模块化采集系统

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Next generation PET scanners should fulfill very high requirements in terms of spatial, energy and timing resolution. Modern scanner performances are inherently limited by the use of standard photomultiplier tubes. The use of Silicon Photomultiplier (SiPM) matrices is proposed for the construction of a 4D PET module based on LSO continuous crystals, which is envisaged to replace the standard PET block detector. The expected spatial resolution of the module for the photon hit position is below 1 mm, and it will perform at the same time, the Depth Of Interaction (DOI) calculation and the Time Of Flight (TOF) measurement. The use of large area multi-pixel Silicon Photomultiplier (SiPM) detectors requires the development of a multichannel Digital Acquisition system (DAQ) as well as of a dedicated front-end in order not to degrade the intrinsic detector performances. We have developed a flexible and modular DAQ. system for the read-out of two modules in time coincidence for Positron Emission Tomography (PET) applications. The DAQ. system is based on a previously developed custom front-end ASIC chip (BASIC) which allows to read-out SiPM matrices preserving their spectroscopy and timing capabilities. Here we describe the acquisition system architecture and its characterization measurements.
机译:下一代PET扫描仪应在空间,能量和定时分辨率方面满足很高的要求。现代扫描仪的性能固有地受到使用标准光电倍增管的限制。提议使用硅光电倍增管(SiPM)矩阵来构建基于LSO连续晶体的4D PET模块,该模块有望取代标准PET块检测器。对于光子撞击位置,模块的预期空间分辨率低于1 mm,它将同时执行交互深度(DOI)计算和飞行时间(TOF)测量。大面积多像素硅光电倍增管(SiPM)检测器的使用要求开发多通道数字采集系统(DAQ)和专用前端,以免降低检测器的固有性能。我们开发了灵活的模块化DAQ。用于正电子发射断层扫描(PET)应用的时间重合的两个模块的读取系统。 DAQ。该系统基于先前开发的定制前端ASIC芯片(BASIC),该芯片可以读取SiPM矩阵,从而保留其光谱和定时功能。在这里,我们描述了采集系统的架构及其特征测量。

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