Ghani Muhammad U, Yan Aimin, Fajardo Laurie L, Wu Xizeng, Liu Hong
Opt Express. 2021 Aug 16;29(17):26538-26552. doi: 10.1364/OE.431623.
Phase retrieval is vital for quantitative x-ray phase contrast imaging. This work presents an iterative method to simultaneously retrieve the x-ray absorption and phase images from a single x-ray exposure. The proposed approach uses the photon-counting detectors' energy-resolving capability in providing multiple spectrally resolved phase contrast images from a single x-ray exposure. The retrieval method is derived, presented, and experimentally tested with a multi-material phantom in an inline phase contrast imaging setup. By separating the contributions of photoelectric absorption and Compton scattering to the attenuation, the authors divide the phase contrast image into two portions, the attenuation map arises from photoelectric absorption and a pseudo phase contrast image generated by electron density. This way one can apply the Phase Attenuation Dualiby (PAD) algorithm and Fresnel propagation for the iteration. The retrieval results from the experimental images show that this iterative method is fast, accurate, robust against noise, and thus yields noticeable enhancement in contrast to noise ratios.
相位恢复对于定量X射线相衬成像至关重要。这项工作提出了一种迭代方法,可从单次X射线曝光中同时恢复X射线吸收图像和相位图像。所提出的方法利用光子计数探测器的能量分辨能力,从单次X射线曝光中提供多个光谱分辨的相衬图像。该恢复方法在同轴相衬成像装置中使用多材料体模进行了推导、展示和实验测试。通过分离光电吸收和康普顿散射对衰减的贡献,作者将相衬图像分为两部分,由光电吸收产生的衰减图和由电子密度生成的伪相衬图像。通过这种方式,可以应用相位衰减对偶(PAD)算法和菲涅耳传播进行迭代。实验图像的恢复结果表明,这种迭代方法快速、准确、抗噪声能力强,因此在对比度噪声比方面有显著提高。