Motion-corrected Fourier ptychography
arXiv:1606.01464 · doi:10.1364/BOE.7.004543
Abstract
Fourier ptychography (FP) is a recently proposed computational imaging technique for high space-bandwidth product imaging. In real setups such as endoscope and transmission electron microscope, the common sample motion largely degrades the FP reconstruction and limits its practicability. In this paper, we propose a novel FP reconstruction method to efficiently correct for unknown sample motion. Specifically, we adaptively update the sample's Fourier spectrum from low spatial-frequency regions towards high spatial-frequency ones, with an additional motion recovery and phase-offset compensation procedure for each sub-spectrum. Benefiting from the phase retrieval redundancy theory, the required large overlap between adjacent sub-spectra offers an accurate guide for successful motion recovery. Experimental results on both simulated data and real captured data show that the proposed method can correct for unknown sample motion with its standard deviation being up to 10% of the field-of-view scale. We have released our source code for non-commercial use, and it may find wide applications in related FP platforms such as endoscopy and transmission electron microscopy.
References in corpus (6)
- Wide-field, high-resolution Fourier ptychographic microscopy
- Experimental robustness of Fourier Ptychography phase retrieval algorithms
- Computational illumination for high-speed in vitro Fourier ptychographic microscopy
- Fourier ptychographic reconstruction using Wirtinger flow optimization
- Content adaptive sparse illumination for Fourier ptychography
- Fourier ptychographic reconstruction using Poisson maximum likelihood and truncated Wirtinger gradient
Cited by in corpus (5)
- System calibration method for Fourier ptychographic microscopy
- Efficient illumination angle self-calibration in Fourier ptychography
- Vignetting effect in Fourier ptychographic microscopy
- PtyLab.m/py/jl: a cross-platform, open-source inverse modeling toolbox for conventional and Fourier ptychography
- Spatially-coded Fourier ptychography: flexible and detachable coded thin films for quantitative phase imaging with uniform phase transfer characteristics