Zhang Junhao, Yang Dongyu, Lv Wenjin, Jin Xin, Shi Yishi
Opt Express. 2022 Jun 6;30(12):20415-20430. doi: 10.1364/OE.460648.
Coherent modulation imaging is a lensless imaging technique, where a complex-valued image can be recovered from a single diffraction pattern using the iterative algorithm. Although mostly applied in two dimensions, it can be tomographically combined to produce three-dimensional (3D) images. Here we present a 3D reconstruction procedure for the sample's phase and intensity from coherent modulation imaging measurements. Pre-processing methods to remove illumination probe, inherent ambiguities in phase reconstruction results, and intensity fluctuation are given. With the projections extracted by our method, standard tomographic reconstruction frameworks can be used to recover accurate quantitative 3D phase and intensity images. Numerical simulations and optical experiments validate our method.
相干调制成像 是一种无透镜成像技术,其中可以使用迭代算法从单个衍射图案中恢复复值图像。虽然大多应用于二维,但它可以进行断层扫描组合以生成三维 (3D) 图像。 在这里,我们提出了一种从相干调制成像测量中重建样品相位和强度的三维重建程序。给出了去除照明探针、相位重建结果中固有的模糊性以及强度波动的预处理方法。利用我们的方法提取的投影,可以使用标准的断层重建框架来恢复准确的定量三维相位和强度图像。数值模拟和光学实验验证了我们的方法。