Dong Siyuan, Bian Zichao, Shiradkar Radhika, Zheng Guoan
Opt Express. 2014 Mar 10;22(5):5455-64. doi: 10.1364/OE.22.005455.
Fourier ptychography (FP) is an imaging technique that applies angular diversity functions for high-resolution complex image recovery. The FP recovery routine switches between two working domains: the spectral and spatial domains. In this paper, we investigate the spectral-spatial data redundancy requirement of the FP recovery process. We report a sparsely sampled FP scheme by exploring the sampling interplay between these two domains. We demonstrate the use of the reported scheme for bypassing the high-dynamic-range combination step in the original FP recovery routine. As such, it is able to shorten the acquisition time of the FP platform by ~50%. As a special case of the sparsely sample FP, we also discuss a sub-sampled scheme and demonstrate its application in solving the pixel aliasing problem plagued in the original FP algorithm. We validate the reported schemes with both simulations and experiments. This paper provides insights for the development of the FP approach.
傅里叶叠层成像术(FP)是一种应用角度分集函数进行高分辨率复图像恢复的成像技术。FP恢复程序在两个工作域之间切换:光谱域和空间域。在本文中,我们研究了FP恢复过程的光谱-空间数据冗余要求。我们通过探索这两个域之间的采样相互作用,报告了一种稀疏采样的FP方案。我们展示了所报告的方案用于绕过原始FP恢复程序中的高动态范围组合步骤。因此,它能够将FP平台的采集时间缩短约50%。作为稀疏采样FP的一种特殊情况,我们还讨论了一种欠采样方案,并展示了其在解决原始FP算法中困扰的像素混叠问题方面的应用。我们通过模拟和实验验证了所报告的方案。本文为FP方法的发展提供了见解。