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Jan Ellenberg: [Publications] [Author Rank by year] [Co-authors] [Prefers] [Cites] [Cited by]

Publications of Author

  1. Vassili Kovalev, Nathalie Harder, Beate Neumann, Michael Held, Urban Liebel, Holger Erfle, Jan Ellenberg, Roland Eils, Karl Rohr
    Feature Selection for Evaluating Fluorescence Microscopy Images in Genome-Wide Cell Screens. [Citation Graph (0, 0)][DBLP]
    CVPR (1), 2006, pp:276-283 [Conf]
  2. Nathalie Harder, Beate Neumann, Michael Held, Urban Liebel, Holger Erfle, Jan Ellenberg, Roland Eils, Karl Rohr
    Automated recognition of mitotic patterns in fluorescence microscopy images of human cells. [Citation Graph (0, 0)][DBLP]
    ISBI, 2006, pp:1016-1019 [Conf]
  3. Beate Neumann, Michael Held, Urban Liebel, Holger Erfle, Phil Rogers, Rainer Pepperkok, Jan Ellenberg
    Time-lapse microscopy-based genome wide RNAi screening in live human cells. [Citation Graph (0, 0)][DBLP]
    ISBI, 2006, pp:245-246 [Conf]
  4. Nathalie Harder, Felipe Mora-Bermúdez, William J. Godinez, Jan Ellenberg, Roland Eils, Karl Rohr
    Automated Analysis of the Mitotic Phases of Human Cells in 3D Fluorescence Microscopy Image Sequences. [Citation Graph (0, 0)][DBLP]
    MICCAI (1), 2006, pp:840-848 [Conf]
  5. Julian Mattes, Johannes Fieres, Joël Beaudouin, Daniel Gerlich, Jan Ellenberg, Roland Eils
    New Tools for Visualization and Quantification in Dynamic Processes: Application to the Nuclear Envelope Dynamics During Mitosis. [Citation Graph (0, 0)][DBLP]
    MICCAI, 2001, pp:1323-1325 [Conf]

  6. Determination of Mitotic Delays in 3D Fluorescence Microscopy Images of Human Cells Using an Error-Correcting Finite State Machine. [Citation Graph (, )][DBLP]


  7. Automated Analysis of Mitotic Phenotypes in Fluorescence Microscopy Images of Human Cells. [Citation Graph (, )][DBLP]


  8. A genome wide RNAI screen by time lapse microscopy in order to identify mitotic genes - computational aspects and challenges. [Citation Graph (, )][DBLP]


  9. Determination of Mitotic Delays in 3d Fluorescence Microscopy Images of Human Cells Using an Error-Correcting Finite State Machine. [Citation Graph (, )][DBLP]


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