• DocumentCode
    1267522
  • Title

    Patch-Based Nonlocal Functional for Denoising Fluorescence Microscopy Image Sequences

  • Author

    Boulanger, Jérôme ; Kervrann, Charles ; Bouthemy, Patrick ; Elbau, Peter ; Sibarita, Jean-Baptiste ; Salamero, Jean

  • Author_Institution
    Cell & Tissue Image Facility, Inst. Curie/CNRS, Paris, France
  • Volume
    29
  • Issue
    2
  • fYear
    2010
  • Firstpage
    442
  • Lastpage
    454
  • Abstract
    We present a nonparametric regression method for denoising 3-D image sequences acquired via fluorescence microscopy. The proposed method exploits the redundancy of the 3-D+time information to improve the signal-to-noise ratio of images corrupted by Poisson-Gaussian noise. A variance stabilization transform is first applied to the image-data to remove the dependence between the mean and variance of intensity values. This preprocessing requires the knowledge of parameters related to the acquisition system, also estimated in our approach. In a second step, we propose an original statistical patch-based framework for noise reduction and preservation of space-time discontinuities. In our study, discontinuities are related to small moving spots with high velocity observed in fluorescence video-microscopy. The idea is to minimize an objective nonlocal energy functional involving spatio-temporal image patches. The minimizer has a simple form and is defined as the weighted average of input data taken in spatially-varying neighborhoods. The size of each neighborhood is optimized to improve the performance of the pointwise estimator. The performance of the algorithm (which requires no motion estimation) is then evaluated on both synthetic and real image sequences using qualitative and quantitative criteria.
  • Keywords
    Gaussian noise; fluorescence; image denoising; image sequences; medical image processing; regression analysis; 3D image denoising; Poisson-Gaussian noise; fluorescence video microscopy; image sequences; nonparametric regression method; patch based nonlocal functional; pointwise estimator; space-time discontinuities; Additive noise; Deconvolution; Fluorescence; Image sequences; Mathematics; Microscopy; Motion estimation; Noise reduction; Protein engineering; Signal to noise ratio; Adaptive estimation; Poisson noise; energy minimization; fluorescence; image sequence denoising; patch-based approach; variance stabilization; video-microscopy; Algorithms; HeLa Cells; Humans; Image Processing, Computer-Assisted; Microscopy, Fluorescence; Microscopy, Video; Normal Distribution; Poisson Distribution;
  • fLanguage
    English
  • Journal_Title
    Medical Imaging, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0278-0062
  • Type

    jour

  • DOI
    10.1109/TMI.2009.2033991
  • Filename
    5313961