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An event driven read-out system for a novel PET scanner with Compton enhanced 3-D gamma reconstruction

机译:事件驱动的读取系统,适用于具有Compton增强型3-D伽马重建功能的新型PET扫描仪

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The design of a data acquisition system (DAQ) for a novel positron emission tomography (PET) scanner is reported. The PET system, based on long axially oriented scintillation crystals, readout by hybrid photon detectors (HPD), allows 3-D parallax-error free Compton enhanced gamma reconstruction. The DAQ system is composed of several readout cards, each one associated with a module of the PET scanner, and of a main card that controls the whole system. Using fast triggering signals from the silicon sensor back-planes, the main card performs the coincidence analysis and, in case of coincidence, it enables the readout of the two modules involved. The other modules are left free to perform new acquisitions. This concept based on several independent, event-driven and parallel readout chains, drastically reduces the acquisition dead time. Each enabled readout card digitizes, encodes and stores data from the associated module. Data are stored in a local FIFO and then are transferred through a network into a single computer. The system is designed according to the specifications of the IDEAS VaTaGP5 chip. Each readout card is able to accommodate all the chip readout modes and the test procedures and can be used as a standalone readout system that allows reading out up to 16 daisy chained chips per channel. The DAQ system here reported, designed for a two module demonstrator setup, was developed to study and optimize the essential design parameters.
机译:报告了一种新型正电子发射断层扫描(PET)扫描仪的数据采集系统(DAQ)的设计。 PET系统基于长轴定向闪烁晶体,并通过混合光子检测器(HPD)进行读取,可实现3D视差无差错的康普顿增强伽马重建。 DAQ系统由多个读取卡组成,每个读取卡与PET扫描仪的模块相关联,并且由控制整个系统的主卡组成。使用来自硅传感器底板的快速触发信号,主卡执行重合分析,并且在重合的情况下,它可以读取所涉及的两个模块。其他模块则可以自由执行新的采集。这种基于多个独立的,事件驱动和并行读出链的概念极大地减少了采集停滞时间。每个已启用的读出卡都会对相关模块中的数据进行数字化,编码和存储。数据存储在本地FIFO中,然后通过网络传输到单台计算机中。该系统是根据IDEAS VaTaGP5芯片的规格设计的。每个读出卡都能够适应所有芯片读出模式和测试程序,并且可以用作独立的读出系统,该系统允许每个通道读出最多16个菊花链式芯片。此处报告的DAQ系统是为两模块演示器设置设计的,旨在研究和优化必要的设计参数。

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