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Spatio-energetic cross-talk in photon counting detectors: NxN binning and sub-pixel masking

机译:在光子计数探测器中的时空串扰:NXN搭档和子像素掩蔽

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Smaller pixels sizes of x-ray photon counting detectors (PCDs) have the two conflicting effects as follows. On one hand, smaller pixel sizes improve the ability to handle high count rates of x-rays (i.e., pulse pileups) because incident rates onto each PCD pixel decreases with decreasing the size. On the other hand, smaller pixel sizes increase chances of crosstalk and double-counting (or n-tuple-counting in general) between neighboring pixels, because, while the same size of electron charge cloud generated by a photon is independent of PCD sizes, the charge cloud size relative to the PCD size increases with decreasing the PCD size. In addition, the following two aspects are practical configurations in actual PCD computed tomography systems: N×N-pixel binning and anti-scatter grids. When n-tuple-counting occurs and those data are binned/added during post-acquisition process, the variance of the data will be larger than its mean. The anti-scatter grids may eliminate or decrease the cross-talk and n-tuple-counting by blocking primary x-rays near pixel boundaries or for the width of one pixel entirely. In this study, we studied the effects of PCD pixel sizes, N×N-pixel binning, and pixel masking on soft tissue contrast visibility using newly developed Photon Counting Toolkit (PcTK version 3.2; https://pctk.jhu.edu).
机译:X射线光子计数检测器(PCD)的较小像素尺寸具有如下的两个冲突效果。一方面,较小的像素尺寸提高了处理X射线(即脉冲堆叠)的高计数速率的能力,因为在每个PCD像素上的入射速率随着尺寸的降低而降低。另一方面,较小的像素尺寸尺寸在相邻像素之间增加串扰和双计数(或一般的N组计数),因为,虽然由光子产生的相同尺寸的电子电荷云与PCD尺寸无关,相对于PCD大小的电荷云大小随着降低PCD尺寸而增加。此外,以下两个方面是实际PCD计算机断层扫描系统中的实际配置:N×N×N像素分布和防散网。当发生N组计数并且在接受后处理期间被收集/添加那些数据时,数据的方差将大于其平均值。通过阻塞像素边界附近或完全宽度的宽度,防散射网格可以消除或减小串扰和n组计数。在这项研究中,我们研究了PCD像素尺寸,n×n像素衬砌的影响,并使用新开发的光子计数工具包(PCTK版本3.2; https://pctk.jhu.edu)进行软组织对比度可见度的影响。

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