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Optimal Energy Thresholds and Weights for Separating Materials Using Photon Counting X-Ray Detectors with Energy Discriminating Capabilities

机译:使用具有能量区分能力的光子计数X射线探测器分离物料的最佳能量阈值和重量

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It is well known that decomposing an object into attenuation or material basis functions provides additional imaging benefits such as contrast enhancement or material subtraction. This can be accomplished with photon counting x-ray detectors (PCXDs) with energy discriminating capabilities, which enable us to count x-ray photons and classify them based on t heir energies. The richness of the information contained in these measurements can depend heavily on how these photons are binned together.In this paper, our goal is to identify a method that yields the optimal energy thresholds and/or weights for binning data from energy discriminating PCXDs. Additional energy information from these PCXDs allows us to use maximum-likelihood to estimate the amount of the basis materials penetrated by the beam. However, due to inherent quantum noise, these estimates are themselves noisy. We show that for PCXDs that discriminate between low and high energy photons, it is beneficial to have a gap between the thresholds. Photons with energies that fall into this gap should either be discarded or counted separately to improve material separability. Furthermore, if the PCXD can discern the energy of each photon, we show that when estimating the amount of each of two material basis functions, two appropriately weighted sums of the photon counts provide as much information as knowing the number of counts at each energy.
机译:众所周知,将物体分解为衰减或物质基函数可提供额外的成像好处,例如对比度增强或物质减法。这可以通过具有能量识别功能的光子计数X射线检测器(PCXD)来完成,这使我们能够对X射线光子进行计数并根据其能量对其进行分类。这些测量中包含的信息的丰富程度在很大程度上取决于如何将这些光子合并在一起。 在本文中,我们的目标是确定一种方法,该方法可产生最佳能量阈值和/或权重,用于对能量区分PCXD的数据进行分箱。来自这些PCXD的其他能量信息使我们可以使用最大似然来估计光束穿透的基础材料的数量。但是,由于固有的量子噪声,这些估计本身就是有噪声的。我们表明,对于能区分低能和高能光子的PCXD,在阈值之间留出空隙是有益的。能量落入该间隙的光子应丢弃或单独计数,以提高材料的可分离性。此外,如果PCXD能够识别每个光子的能量,我们将显示出,当估计两个物质基函数的每个的量时,两个适当加权的光子计数之和可提供与知道每个能量的计数数一样多的信息。

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