Das Mini, Liang Zhihua
Opt Lett. 2014 Sep 15;39(18):5395-8. doi: 10.1364/OL.39.005395.
Transport-of-intensity equations (TIEs) allow better understanding of image formation and assist in simplifying the "phase problem" associated with phase-sensitive x-ray measurements. In this Letter, we present for the first time to our knowledge a simplified form of TIE that models x-ray differential phase-contrast (DPC) imaging with coded-aperture (CA) geometry. The validity of our approximation is demonstrated through comparison with an exact TIE in numerical simulations. The relative contributions of absorption, phase, and differential phase to the acquired phase-sensitive intensity images are made readily apparent with the approximate TIE, which may prove useful for solving the inverse phase-retrieval problem associated with these CA geometry based DPC.
强度传输方程(TIEs)有助于更好地理解图像形成,并有助于简化与相敏X射线测量相关的“相位问题”。在本信函中,据我们所知,我们首次提出了一种简化形式的TIE,它对具有编码孔径(CA)几何结构的X射线微分相衬(DPC)成像进行建模。通过在数值模拟中与精确的TIE进行比较,证明了我们近似方法的有效性。利用近似TIE,可以很容易地看出吸收、相位和微分相位对采集到的相敏强度图像的相对贡献,这对于解决与这些基于CA几何结构的DPC相关的逆相位恢复问题可能是有用的。