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An Analytical Model of NPS and DQE Comparing Photon Counting and Energy Integrating Detectors

机译:NPS和DQE的光子计数和能量积分探测器比较的分析模型

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In this work, analytical models of the optical transfer function (OTF), noise power spectra (NPS), and detective quantum efficiency (DQE) are developed for two types of digital x-ray detectors. The two detector types are (1) energy integrating (EI), for which the point spread function (PSF) is interpreted as a weighting function for counting x-rays, and (2) photon counting (PC), for which the PSF is treated as a probability. The OTF is the Fourier transform of the PSF. The two detector types, having the same PSF, possess an equivalent OTF. NPS is the discrete space Fourier transform (DSFT) of the autocovariance of signal intensity. From first principles, it is shown that while covariance is equivalent for both detector types, variance is not. As a consequence, provided the two detector types have equivalent PSFs, a difference in NPS exists such that NPS_(PC) ≥ NPS_(EI) and hence DQE_(PC) ≤ DQE_(EI). The necessary and sufficient condition for equality is that the PSF is either zero or unity everywhere. A PSF modeled as the convolution of a Lorentzian with a rect function is analyzed in order to illustrate the differences in NPS and DQE. The Lorentzian models the blurring of the x-ray converter, while the rect function reflects the sampling of the detector. The NPS difference between the two detector types is shown to increase with increasing PSF width. In conclusion, this work develops analytical models of OTF, NPS, and DQE for energy integrating and photon counting digital x-ray detectors.
机译:在这项工作中,针对两种类型的数字X射线探测器开发了光学传递函数(OTF),噪声功率谱(NPS)和探测量子效率(DQE)的分析模型。两种检测器类型是(1)能量积分(EI),其点扩展函数(PSF)被解释为用于计数x射线的加权函数,以及(2)光子计数(PC),其用于PSF为视为概率。 OTF是PSF的傅立叶变换。具有相同PSF的两种检测器类型具有等效的OTF。 NPS是信号强度自协方差的离散空间傅立叶变换(DSFT)。从第一原理上可以看出,虽然两种检测器类型的协方差相等,但方差不是。结果,如果两种检测器类型具有相等的PSF,则NPS存在差异,使得NPS_(PC)≥NPS_(EI),因此DQE_(PC)≤DQE_(EI)。平等的必要和充分条件是PSF在任何地方都不为零或为1。为了说明NPS和DQE的差异,分析了被建模为具有rect函数的Lorentzian卷积的PSF。洛伦兹模型对X射线转换器的模糊进行建模,而rect函数则反映了检测器的采样。两种检测器之间的NPS差异显示为随着PSF宽度的增加而增加。总之,这项工作为能量积分和光子计数数字X射线探测器开发了OTF,NPS和DQE的分析模型。

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