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Feature Selection for Evaluating Fluorescence Microscopy Images in Genome-Wide Cell Screens., , , , , , , , and . CVPR (1), page 276-283. IEEE Computer Society, (2006)Automated Analysis of Mitotic Phenotypes in Fluorescence Microscopy Images of Human Cells., , , , , , , and . Bildverarbeitung für die Medizin, page 374-378. Springer, (2006)A genome wide RNAI screen by time lapse microscopy in order to identify mitotic genes - computational aspects and challenges., , , , , , and . ISBI, page 328-331. IEEE, (2008)Time-lapse microscopy-based genome wide RNAi screening in live human cells., , , , , , and . ISBI, page 245-246. IEEE, (2006)The cellular microscopy phenotype ontology., , , , , , , and . J. Biomedical Semantics, (2016)Automated Analysis of the Mitotic Phases of Human Cells in 3D Fluorescence Microscopy Image Sequences., , , , , and . MICCAI (1), volume 4190 of Lecture Notes in Computer Science, page 840-848. Springer, (2006)FUN-L: gene prioritization for RNAi screens., , , , , , , , , and 1 other author(s). Bioinformatics, 31 (12): 2052-2053 (2015)Automated recognition of mitotic patterns in fluorescence microscopy images of human cells., , , , , , , and . ISBI, page 1016-1019. IEEE, (2006)Dynamical modelling of phenotypes in a genome-wide RNAi live-cell imaging assay., , , , , and . BMC Bioinformatics, (2013)Determination of Mitotic Delays in 3d Fluorescence Microscopy Images of Human Cells Using an Error-Correcting Finite State Machine., , , , , and . ISBI, page 1044-1047. IEEE, (2007)