IEEE Trans Med Imaging. 2015 Mar;34(3):816-23. doi: 10.1109/TMI.2014.2349852. Epub 2014 Aug 21.
Grating-based differential phase-contrast imaging has proven to be feasible with conventional X-ray sources. The polychromatic spectrum generally limits the performance of the interferometer but benefit can be gained with an energy-sensitive detector. In the presented work, we employ the energy-discrimination capability to correct for phase-wrapping artefacts. We propose to use the phase shifts, which are measured in distinct energy bins, to estimate the optimal phase shift in the sense of maximum likelihood. We demonstrate that our method is able to correct for phase-wrapping artefacts, to improve the contrast-to-noise ratio and to reduce beam hardening due to the modelled energy dependency. The method is evaluated on experimental data which are measured with a laboratory Talbot-Lau interferometer equipped with a conventional polychromatic X-ray source and an energy-sensitive photon-counting pixel detector. Our work shows, that spectral imaging is an important step to move differential phase-contrast imaging closer to pre-clinical and clinical applications, where phase wrapping is particularly problematic.
光栅型差分相衬成像已被证明可与常规 X 射线源配合使用。多色光谱通常会限制干涉仪的性能,但能量敏感探测器则可从中受益。在本研究中,我们利用能量甄别能力来校正相位缠绕伪影。我们建议使用在不同能量bins 中测量的相移来估计最大似然意义上的最佳相移。我们证明了我们的方法能够校正相位缠绕伪影,提高对比噪声比,并减少由于建模的能量依赖性引起的光束硬化。该方法在使用配备有传统多色 X 射线源和能量敏感光子计数像素探测器的实验室泰伯-劳干涉仪测量的实验数据上进行了评估。我们的研究表明,光谱成像是将差分相衬成像推向临床前和临床应用的重要步骤,在这些应用中,相位缠绕是一个特别棘手的问题。