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Evaluation of a new photon-counting imaging detector (PCD) with various acquisition modes

机译:评估具有多种采集模式的新型光子计数成像检测器(PCD)

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摘要

The prospect of improved low noise, high speed, and dual-energy imaging that may be associated with the use of photon-counting imaging detectors (PCD) has motivated this evaluation of a newly upgraded version of a prototype PCD. The XCounter Actaeon was evaluated in its four acquisition modes each based upon varying signal processing firmware including a mode with charge sharing correction that enables neighboring pixels that share the energy from one incident x-ray photon detection to be counted only once at the proper summed energy in the pixel with the largest charge deposition. Since this PCD is a CdTe-based direct detector with 100 μm pixels, such charge sharing for typical medical x-ray energy photons may occur frequently and must be corrected to achieve more accurate counts. This charge sharing correction is achieved with an Anti-Coincidence Circuit (ACC) which prevents double pixel counting from one event as well as prevents counting from either event if they are below a preset threshold. Various physical parameters of the PCD were evaluated including linearity, sensitivity, pulse pile-up effects, dark noise, spatial resolution, noise power spectrum, and detective quantum efficiency.
机译:可能与光子计数成像检测器(PCD)的使用相关的改善的低噪声,高速和双能成像的前景激发了对原型PCD的新升级版本的评估。对XCounter Actaeon的四种采集模式进行了评估,每种模式均基于变化的信号处理固件,包括带有电荷共享校正模式的电荷共享校正模式,该共享电荷校正模式可以使共享来自一个入射x射线光子检测能量的相邻像素仅以适当的总能量计数一次在具有最大电荷沉积的像素中。由于此PCD是具有100μm像素的基于CdTe的直接检测器,因此典型医学x射线能量光子的这种电荷共享可能会频繁发生,必须进行校正以实现更准确的计数。通过防巧合电路(ACC)可以实现这种电荷共享校正,该电路可防止一个事件发生双像素计数,如果两个事件均低于预设阈值,则可以防止任何一个事件进行双像素计数。对PCD的各种物理参数进行了评估,包括线性,灵敏度,脉冲堆积效应,暗噪声,空间分辨率,噪声功率谱和探测量子效率。

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