3D phase diversity: a myopic deconvolution method for short-exposure images: application to retinal imaging

被引:12
作者
Chenegros, Guillaume
Mugnier, Laurent M.
Lacombe, Francois
Glanc, Marie
机构
[1] Off Natl Etud & Rech Aerosp, Dept Opt, F-92322 Chatillon, France
[2] Mauna Kea Technol, F-75010 Paris, France
[3] Observ Paris, Lab Etud Spatiales & Instrumentat Astrophys, F-92195 Meudon, France
关键词
D O I
10.1364/JOSAA.24.001349
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
3D decoavolution is an established technique in microscopy that may be useful for low-cost high-resolution imaging of the retina. We report on a myopic 3D deconvolution method developed in a Bayesian framework. This method uses a 3D imaging model, a noise model that accounts for both photon and detector noises, a regularization term that is appropriate for objects that are a mix of sharp edges and smooth areas, a positivity constraint, and a smart parameterization of the point-spread function (PSF) by the pupil phase. It estimates the object and the PSF jointly. The PSF parameterization through the pupil phase constrains the inversion by dramatically reducing the number of unknowns. The joint deconvolution is further constrained by an additional longitudinal support constraint derived from a 3D interpretation of the phase-diversity technique. This method is validated by simulated retinal images. (c) 2007 Optical Society of America.
引用
收藏
页码:1349 / 1357
页数:9
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