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Iterative sparse reconstruction of spectral domain OCT signal

Iterative sparse reconstruction of spectral domain OCT signal
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摘要 We propose and study an iterative sparse reconstruction for Fourier domain optical coherence tomography (FD OCT) image by solving a constrained optimization problem that minimizes L-1 norm. Our method takes the spectral shape of the OCT light source into consideration in the iterative image reconstruction procedure that allows deconvolution of the axial point spread function from the blurred image during reconstruction rather than after reconstruction. By minimizing the L-1 norm, the axial resolution and the signal to noise ratio of image can both be enhanced. The effectiveness of our method is validated using numerical simulation and experiment. We propose and study an iterative sparse reconstruction for Fourier domain optical coherence tomography (FD OCT) image by solving a constrained optimization problem that minimizes L-1 norm. Our method takes the spectral shape of the OCT light source into consideration in the iterative image reconstruction procedure that allows deconvolution of the axial point spread function from the blurred image during reconstruction rather than after reconstruction. By minimizing the L-1 norm, the axial resolution and the signal to noise ratio of image can both be enhanced. The effectiveness of our method is validated using numerical simulation and experiment.
出处 《Chinese Optics Letters》 SCIE EI CAS CSCD 2014年第5期41-44,共4页 中国光学快报(英文版)
基金 supported in part by the government of United States,NIH BRP grants 1R01 EB 007969 NIH/NIE R011R01EY021540-01A1,and by internal start-up research funding from Michigan Technological University
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