计算机科学
波前
光学
图像质量
傅里叶变换
相位恢复
光传递函数
算法
光学像差
自适应光学
空间频率
重建算法
摄影术
相(物质)
图像分辨率
点扩散函数
迭代重建
计算机视觉
物理
图像(数学)
衍射
量子力学
作者
Ruofei Wu,Jiaxiong Luo,Jiancong Li,Hanbao Chen,Junrui Zhen,Zhu Sicong,Zicong Luo,Yanxiong Wu
标识
DOI:10.1117/1.jbo.28.3.036006
摘要
SignificanceFourier ptychographic microscopy (FPM) enables quantitative phase imaging with a large field-of-view and high resolution by acquiring a series of low-resolution intensity images corresponding to different spatial frequencies stitched together in the Fourier domain. However, the presence of various aberrations in an imaging system can significantly degrade the quality of reconstruction results. The imaging performance and efficiency of the existing embedded optical pupil function recovery (EPRY-FPM) aberration correction algorithm are low due to the optimization strategy.AimAn aberration correction method (AA-P algorithm) based on an improved phase recovery strategy is proposed to improve the reconstruction image quality.ApproachThis algorithm uses adaptive modulation factors, which are added while updating iterations to optimize the spectral function and optical pupil function updates of the samples, respectively. The effectiveness of the proposed algorithm is verified through simulations and experiments using an open-source biological sample dataset.ResultsExperimental results show that the proposed AA-P algorithm in an optical system with hybrid aberrations, recovered complex amplitude images with clearer contours and higher phase contrast. The image reconstruction quality was improved by 82.6% when compared with the EPRY-FPM algorithm.ConclusionsThe proposed AA-P algorithm can reconstruct better results with faster convergence, and the recovered optical pupil function can better characterize the aberration of the imaging system. Thus, our method is expected to reduce the strict requirements of wavefront aberration for the current FPM.
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