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Signal and noise analysis of flat-panel sandwich detectors for single-shot dual-energy x-ray imaging

机译:用于单次双能X射线成像的平板夹心探测器的信号和噪声分析

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We have developed a novel sandwich-style single-shot (single-kV) detector by stacking two indirect-conversion flat-panel detectors for preclinical mouse imaging. In the sandwich detector structure, extra noise due to the direct x-ray absorption in photodiode arrays is inevitable. We develop a simple cascaded linear-systems model to describe signal and noise propagation in the flat-panel sandwich detector considering direct x-ray interactions. The noise-power spectrum (NPS) and detective quantum efficiency (DQE) obtained from the front and rear detectors are analyzed by using the cascaded-systems model. The NPS induced by the absorption of direct x-ray photons that are unattenuated within the photodiode layers is white in the spatial-frequency domain like the additive readout noise characteristic; hence that is harmful to the DQE at higher spatial frequencies at which the number of secondary quanta lessens. The model developed in this study will be useful for determining the optimal imaging techniques with sandwich detectors and their optimal design.
机译:我们通过堆叠两个用于临床前鼠标成像的间接转换平板探测器,开发了一种新颖的三明治式单发(单kV)探测器。在三明治检测器结构中,不可避免的是由于光电二极管阵列中直接X射线吸收而产生的额外噪声。我们开发了一个简单的级联线性系统模型来描述考虑到直接X射线相互作用的平板夹心式检测器中的信号和噪声传播。使用级联系统模型分析了从前后探测器获得的噪声功率谱(NPS)和探测量子效率(DQE)。像在光电二极管层中未被衰减的直接X射线光子的吸收所诱导的NPS在空间频域中是白色的,就像加性读出噪声特性一样。因此,这在较高的空间频率上对DQE有害,在较高的空间频率下,次级量子数量会减少。在这项研究中开发的模型将对确定夹心探测器及其最佳设计的最佳成像技术很有用。

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