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Determining the distribution of probes between different subcellular locations through automated unmixing of subcellular patterns.

, , , , , and . Proceedings of the National Academy of Sciences of the United States of America, 107 (7): 2944--2949 (Feb 16, 2010)
DOI: 10.1073/pnas.0912090107

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Towards a Systematics for Protein Subcellular Location: Quantitative Description of Protein Localization Patterns and Automated Analysis of Fluorescence Microscope Images., , and . ISMB, page 251-259. AAAI, (2000)A Novel Graphical Model Approach to Segmenting Cell Images., , , and . CIBCB, page 1-8. IEEE, (2006)Evaluation of methods for generative modeling of cell and nuclear shape., and . Bioinform., 35 (14): 2475-2485 (2019)Automated image analysis of protein localization in budding yeast., , , and . ISMB/ECCB (Supplement of Bioinformatics), page 66-71. (2007)Robust Numerical Features for Description and Classification of Subcellular Location Patterns in Fluorescence Microscope Images., , and . VLSI Signal Processing, 35 (3): 311-321 (2003)Efficient discovery of responses of proteins to compounds using active learning., , and . BMC Bioinform., (2014)Graphical Models for Structured Classification, with an Application to Interpreting Images of Protein Subcellular Location Patterns., , and . J. Mach. Learn. Res., (2008)Automated Interpretation of Subcellular Location Patterns.. ISBI, page 53-56. IEEE, (2004)Deformation-based nonlinear dimension reduction: Applications to nuclear morphometry., , , and . ISBI, page 500-503. IEEE, (2008)Automated comparison of protein subcellular location patterns between images of normal and cancerous tissues., , and . ISBI, page 304-307. IEEE, (2008)