Literature DB >> 21788190

Bayesian estimation for optimized structured illumination microscopy.

François Orieux1, Eduardo Sepulveda, Vincent Loriette, Benoit Dubertret, Jean-Christophe Olivo-Marin.   

Abstract

Structured illumination microscopy is a recent imaging technique that aims at going beyond the classical optical resolution by reconstructing high-resolution (HR) images from low-resolution (LR) images acquired through modulation of the transfer function of the microscope. The classical implementation has a number of drawbacks, such as requiring a large number of images to be acquired and parameters to be manually set in an ad-hoc manner that have, until now, hampered its wide dissemination. Here, we present a new framework based on a Bayesian inverse problem formulation approach that enables the computation of one HR image from a reduced number of LR images and has no specific constraints on the modulation. Moreover, it permits to automatically estimate the optimal reconstruction hyperparameters and to compute an uncertainty bound on the estimated values. We demonstrate through numerical evaluations on simulated data and examples on real microscopy data that our approach represents a decisive advance for a wider use of HR microscopy through structured illumination.
© 2011 IEEE

Mesh:

Year:  2011        PMID: 21788190     DOI: 10.1109/TIP.2011.2162741

Source DB:  PubMed          Journal:  IEEE Trans Image Process        ISSN: 1057-7149            Impact factor:   10.856


  22 in total

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4.  Structured illumination imaging without grating rotation based on mirror operation on 1D Fourier spectrum.

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6.  Unified joint reconstruction approach for random illumination microscopy.

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7.  Image restoration approach to address reduced modulation contrast in structured illumination microscopy.

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Journal:  Biomed Opt Express       Date:  2018-03-13       Impact factor: 3.732

8.  Artifact-free whole-slide imaging with structured illumination microscopy and Bayesian image reconstruction.

Authors:  Karl A Johnson; Guy M Hagen
Journal:  Gigascience       Date:  2020-04-01       Impact factor: 6.524

9.  Imaging tissues and cells beyond the diffraction limit with structured illumination microscopy and Bayesian image reconstruction.

Authors:  Jakub Pospíšil; Tomáš Lukeš; Justin Bendesky; Karel Fliegel; Kathrin Spendier; Guy M Hagen
Journal:  Gigascience       Date:  2019-01-01       Impact factor: 6.524

10.  Virtual k-Space Modulation Optical Microscopy.

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