DeBrosse Hadley, Meng Ling Jian, Rivière Patrick La
Department of Radiology, University of Chicago, Chicago, IL.
Department of Nuclear, Plasma, and Radiological Engineering, University of Illinois Urbana-Champaign, Urbana, IL.
IEEE Trans Radiat Plasma Med Sci. 2024 Jan;8(1):21-32. doi: 10.1109/trpms.2023.3332288. Epub 2023 Nov 13.
Imaging the spatial distribution of low concentrations of metal is a growing problem of interest with applications in medical and material sciences. X-ray fluorescence emission tomography (XFET) is an emerging metal mapping imaging modality with potential sensitivity improvements and practical advantages over other methods. However, XFET detector placement must first be optimized to ensure accurate metal density quantification and adequate spatial resolution. In this work, we first use singular value decomposition of the imaging model and eigendecomposition of the object-specific Fisher information matrix to study how detector arrangement affects spatial resolution and feature preservation. We then perform joint image reconstructions of a numerical gold phantom. For this phantom, we show that two parallel detectors provide metal quantification with similar accuracy to four detectors, despite the resulting anisotropic spatial resolution in the attenuation map estimate. Two orthogonal detectors provide improved spatial resolution along one axis, but underestimate the metal concentration in distant regions. Therefore, this work demonstrates the minor effect of using fewer, but strategically placed, detectors in the case where detector placement is restricted. This work is a critical investigation into the limitations and capabilities of XFET prior to its translation to preclinical and benchtop uses.
对低浓度金属的空间分布进行成像,是医学和材料科学应用中一个日益受到关注的问题。X射线荧光发射断层扫描(XFET)是一种新兴的金属映射成像模态,与其他方法相比,它具有潜在的灵敏度提升和实际优势。然而,必须首先优化XFET探测器的放置,以确保准确的金属密度定量和足够的空间分辨率。在这项工作中,我们首先使用成像模型的奇异值分解和特定对象的费舍尔信息矩阵的特征值分解,来研究探测器排列如何影响空间分辨率和特征保留。然后,我们对一个数值金体模进行联合图像重建。对于这个体模,我们表明,尽管在衰减图估计中会产生各向异性的空间分辨率,但两个平行探测器提供的金属定量精度与四个探测器相似。两个正交探测器在一个轴向上提供了更高的空间分辨率,但低估了远处区域的金属浓度。因此,这项工作表明,在探测器放置受到限制的情况下,使用较少但经过策略性放置的探测器的影响较小。这项工作是在将XFET转化为临床前和台式应用之前,对其局限性和能力进行的一项关键研究。