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Two dimensional extensible array configuration for EMCCD-based solid state x-ray detectors

机译:基于EMCCD的固态X射线探测器的二维可扩展阵列配置

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摘要

We have designed and developed from the discrete component level a high resolution dynamic x- ray detector to be used for fluoroscopic and angiographic medical imaging. The heart of the detector is a 1024 × 1024 pixel electron multiplying charge coupled device (EMCCD) with a pixel size of 13 × 13 μm2 (Model CCD201-20, e2v Technologies, Inc.), bonded to a fiber optic plate (FOP), and optically coupled to a 350 μm thick micro-columnar CsI(TI) scintillator via a fiber optic taper (FOT). Our aim is to design an array of these detectors that could be extended to any arbitrary X × Y size in two dimensions to provide a larger field of view (FOV). A physical configuration for a 3×3 array is presented that includes two major sub-systems. First is an optical front end that includes (i) a phosphor to convert the x-ray photons into light photons, and (ii) a fused array of FOTs that focuses light photons from the phosphor onto an array of EMCCD's optically coupled using FOPs. Second is an electronic front end that includes (i) an FPGA board used for generating clocks and for data acquisition (ii) driver boards to drive and digitize the analog output from the EMCCDs, (iii) a power board, and (iv) headboards to hold the EMCCD's while they are connected to their respective driver board using flex cables. This configuration provides a larger FOV as well as region-of- interest (ROI) high-resolution imaging as required by modern neurovascular procedures.
机译:我们已经从离散组件级别设计和开发了一个高分辨率动态X射线探测器,用于用于荧光镜和血管造影的医学成像。探测器的核心是1024×1024像素电子乘以电荷耦合器件(EMCCD),像素尺寸为13×13μm 2 (型号CCD201-20,E2V Technologies,Inc。),粘合到光纤板(FOP),并通过光纤锥形锥形(FOT)光学耦合到350μm厚的微柱CSI(TI)闪烁体。我们的目标是设计这些探测器的数组,这些探测器可以在两个维度中扩展到任何任意x×y大小,以提供更大的视野(FOV)。提出了3×3阵列的物理配置,包括两个主要子系统。首先是一种光学前端,包括(i)将X射线光子转换为光光子的磷光体,并且(ii)将光光子从荧光体聚焦到使用FOPS的EMCCD阵列上的熔融光子阵列。其次是一种电子前端,包括(i)用于产生时钟和数据采集(ii)驱动板的FPGA板,以驱动和数字化来自EMCCD的模拟输出,(iii)电源板和(iv)垫板暂停EMCCD使用Flex电缆连接到各自的驱动板。这种配置提供了更大的FOV以及现代神经血管手术所要求的兴趣区域(ROI)高分辨率成像。

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