Deconvolution of poissonian images with the PURE-LET approach

Jizhou Li, Florian Luisier, Thierry Blu

Research output: Chapters, Conference Papers, Creative and Literary WorksRGC 32 - Refereed conference paper (with host publication)peer-review

Abstract

We propose a non-iterative image deconvolution algorithm for data corrupted by Poisson noise. Many applications involve such a problem, ranging from astronomical to biological imaging. We parametrize the deconvolution process as a linear combination of elementary functions, termed as linear expansion of thresholds (LET). This parametrization is then optimized by minimizing a robust estimate of the mean squared error, the 'Poisson unbiased risk estimate (PURE)'. Each elementary function consists of a Wiener filtering followed by a pointwise thresholding of undecimated Haar wavelet coefficients. In contrast to existing approaches, the proposed algorithm merely amounts to solving a linear system of equations which has a fast and exact solution. Simulation experiments over various noise levels indicate that the proposed method outperforms current state-of-the-art techniques, in terms of both restoration quality and computational time.

Original languageEnglish
Title of host publication2016 IEEE International Conference on Image Processing
Subtitle of host publicationProceedings
PublisherIEEE
Pages2708-2712
Number of pages5
ISBN (Electronic)9781467399616
ISBN (Print)978-1-4673-9962-3
DOIs
Publication statusPublished - 2016
Externally publishedYes
EventIEEE International Conference on Image Processing (ICIP 2016) - Phoenix Convention Center, Phoenix, United States
Duration: 25 Sept 201628 Sept 2016
Conference number: 23rd
http://2016.ieeeicip.org/

Publication series

NameProceedings - International Conference on Image Processing, ICIP
ISSN (Print)1522-4880
ISSN (Electronic)2381-8549

Conference

ConferenceIEEE International Conference on Image Processing (ICIP 2016)
Abbreviated titleICIP 2016
PlaceUnited States
CityPhoenix
Period25/09/1628/09/16
Internet address

Research Keywords

  • Image deconvolution
  • MSE estimation
  • Poisson noise
  • Unbiased risk estimate

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