Maurino Sebastian Lopez, Badano Aldo, Cunningham Ian A, Karim Karim S
Electrical and Computer Engineering, University of Waterloo, Waterloo, ON N2L 3G1, Canada.
Center for Devices and Radiological Health, Food and Drug Administration, 10903 New Hampshire Ave, Silver Spring, MD 20993, USA.
Proc SPIE Int Soc Opt Eng. 2016;9783. doi: 10.1117/12.2217085. Epub 2016 Mar 29.
We propose a new design of a stacked three-layer flat-panel x-ray detector for dual-energy (DE) imaging. Each layer consists of its own scintillator of individual thickness and an underlying thin-film-transistor-based flat-panel. Three images are obtained simultaneously in the detector during the same x-ray exposure, thereby eliminating any motion artifacts. The detector operation is two-fold: a conventional radiography image can be obtained by combining all three layers' images, while a DE subtraction image can be obtained from the front and back layers' images, where the middle layer acts as a mid-filter that helps achieve spectral separation. We proceed to optimize the detector parameters for two sample imaging tasks that could particularly benefit from this new detector by obtaining the best possible signal to noise ratio per root entrance exposure using well-established theoretical models adapted to fit our new design. These results are compared to a conventional DE temporal subtraction detector and a single-shot DE subtraction detector with a copper mid-filter, both of which underwent the same theoretical optimization. The findings are then validated using advanced Monte Carlo simulations for all optimized detector setups. Given the performance expected from initial results and the recent decrease in price for digital x-ray detectors, the simplicity of the three-layer stacked imager approach appears promising to usher in a new generation of multi-spectral digital x-ray diagnostics.
我们提出了一种用于双能(DE)成像的新型堆叠式三层平板X射线探测器设计。每层都由其各自具有特定厚度的闪烁体和下方基于薄膜晶体管的平板组成。在同一X射线曝光期间,探测器可同时获得三张图像,从而消除任何运动伪影。探测器的工作方式有两种:通过组合所有三层图像可获得传统的射线照相图像,而通过前后层图像可获得双能减影图像,其中中间层充当有助于实现光谱分离的中间滤波器。我们通过使用适用于我们新设计的成熟理论模型,针对两个可能特别受益于这种新型探测器的样本成像任务,优化探测器参数,以获得每根入射曝光的最佳信噪比。将这些结果与传统的双能时间减影探测器和带有铜中间滤波器的单次双能减影探测器进行比较,这两种探测器都进行了相同的理论优化。然后,使用先进的蒙特卡罗模拟对所有优化后的探测器设置进行验证。鉴于初步结果预期的性能以及数字X射线探测器近期价格的下降,三层堆叠成像器方法的简单性似乎有望引领新一代多光谱数字X射线诊断技术的发展。