光学
显微镜
傅里叶变换
职位(财务)
材料科学
傅里叶分析
摄影术
光学相干层析成像
物理
衍射
财务
量子力学
经济
作者
Zicong Luo,Ruofei Wu,Hanbao Chen,Junrui Zhen,Mingdi Liu,Haiqi Zhang,Jiaxiong Luo,Dingan Han,Lisong Yan,Yanxiong Wu
标识
DOI:10.1117/1.jbo.28.11.116503
摘要
SignificanceFourier ptychographic microscopy (FPM) is a new, developing computational imaging technology. It can realize the quantitative phase imaging of a wide field of view and high-resolution (HR) simultaneously by means of multi-angle illumination via a light emitting diode (LED) array, combined with a phase recovery algorithm and the synthetic aperture principle. However, in the FPM reconstruction process, LED position misalignment affects the quality of the reconstructed image, and the reconstruction efficiency of the existing LED position correction algorithms needs to be improved.AimThis study aims to improve the FPM correction method based on simulated annealing (SA) and proposes a position misalignment correction method (AA-C algorithm) using an improved phase recovery strategy.ApproachThe spectrum function update strategy was optimized by adding an adaptive control factor, and the reconstruction efficiency of the algorithm was improved.ResultsThe experimental results show that the proposed method is effective and robust for position misalignment correction of LED arrays in FPM, and the convergence speed can be improved by 21.2% and 54.9% compared with SC-FPM and PC-FPM, respectively.ConclusionsThese results can reduce the requirement of the FPM system for LED array accuracy and improve robustness.
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