IEEE Trans Biomed Eng. 2023 Jun;70(6):1804-1814. doi: 10.1109/TBME.2022.3228892. Epub 2023 May 19.
In this paper, a novel dual-layer detector is considered to acquire X-ray images of high signal-to-noise ratio (SNR) as well as detective quantum efficiency (DQE) especially for high voltages of X-ray tubes.
To achieve a uniform alignment property, the upper and lower detector layers are stacked with an aligning procedure while minimizing the layer distance. A convex combination of the images acquired from the layers is optimized with respect to the combination coefficient. For the optimization and an alignment analysis based on Monte Carlo simulations, parametric modeling for the detector is also conducted.
It is shown that for a given spatial frequency, the optimized DQE of the convex combination image (CCI) is the summation of the DQE values of the upper and lower layers. For extensive experiments, several types of the aligned dual-layer detector (ADD) are practically constructed to acquire CCI. The experimental results under a beam quality of RQA 9 showed that ADD could efficiently increase the DQE value from 50% to more than 75% at zero frequency.
ADD can be used for increasing DQE as well as conventional spectral detector applications.
CCI acquired from ADD can have significantly higher DQE values compared to the single-layer cases.
本文提出了一种新型的双层探测器,可以获得高信噪比(SNR)和探测量子效率(DQE)的 X 射线图像,特别是对于 X 射线管的高电压。
为了实现均匀的对准性能,在上层和下层探测器之间进行堆叠,并采用最小化层间距的对准程序。通过对组合系数进行优化,实现了从各层获取的图像的凸组合。为了进行优化和基于蒙特卡罗模拟的对准分析,还对探测器进行了参数建模。
结果表明,对于给定的空间频率,凸组合图像(CCI)的优化 DQE 是上层和下层 DQE 值的总和。为了进行广泛的实验,实际构建了几种类型的对准双层探测器(ADD)来获取 CCI。在 RQA 9 射线质量下的实验结果表明,ADD 可以有效地将 DQE 值从 50%提高到 75%以上,在零频率处。
ADD 可用于提高 DQE 以及常规光谱探测器的应用。
与单层情况相比,ADD 获得的 CCI 具有更高的 DQE 值。