IEEE Trans Med Imaging. 2015 Mar;34(3):779-87. doi: 10.1109/TMI.2014.2360932. Epub 2014 Sep 30.
The purpose of this work is to derive a weighting scheme that maximizes the frequency-dependent ideal observer signal-difference-to-noise ratio, commonly referred to as detectability index or Hotelling-SDNR, for spectral X-ray projection imaging. Starting from basic statistical decision theory, optimal frequency-dependent weights are derived for a multiple-bin system and the Hotelling-SDNR calculated. A 28% increase in detectability index is found for high frequency objects when applying optimal frequency-dependent weights instead of pixel-based weights to a simplified model of a silicon detector, decreasing towards 0% for low frequency objects. Simulation results indicate a potentially large increase in detectability for high-frequency object imaging using silicon detectors, thus meriting further evaluations on a real system.
这项工作的目的是为光谱 X 射线投影成像推导一种加权方案,该方案使频率相关的理想观察者信号-噪声比最大化,通常称为检测指数或 Hotelling-SDNR。从基本的统计决策理论出发,推导了多-bin 系统的最优频率相关权重,并计算了 Hotelling-SDNR。当将最优频率相关权重而不是基于像素的权重应用于硅探测器的简化模型时,发现高频物体的检测指数提高了 28%,而低频物体的检测指数则降低到 0%。模拟结果表明,使用硅探测器进行高频物体成像的检测能力可能会大大提高,因此值得在实际系统上进一步评估。