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Coupled minimum-cost flow cell tracking for high-throughput quantitative analysis.

, , and . Medical Image Analysis, 15 (4): 650-668 (2011)

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Improving RAID-5 Performance by Un-striping Moderate-Sized Files., and . ICPP (2), page 279-282. CRC Press, (1993)A Feature-Based Technique for Joint Linear Estimation of High-Order Image-to-Mosaic Transformations: Mosaicing the Curved Human Retina., , , and . IEEE Trans. Pattern Anal. Mach. Intell., 24 (3): 412-419 (2002)Quantitative biological studies enabled by robust cell tracking., , and . ISBI, page 1929-1934. IEEE, (2011)Spatio-temporal cell cycle analysis using 3D level set segmentation of unstained nuclei in line scan confocal fluorescence images., , , , and . ISBI, page 1036-1039. IEEE, (2006)Automated 3-D Quantification of Brain Tissue at tThe Cellular Scale from Multi-Parameter Confocal Microscopy Images., , , , , and . ISBI, page 1040-1043. IEEE, (2007)An improved watershed algorithm for counting objects in noisy, anisotropic 3-D biological images., , , , and . ICIP (3), page 172-175. IEEE Computer Society, (1995)A Feature-Based, Robust, Hierarchical Algorithm for Registering Pairs of Images of the Curved Human Retina., , , and . IEEE Trans. Pattern Anal. Mach. Intell., 24 (3): 347-364 (2002)3-D Image Pre-processing Algorithms for Improved Automated Tracing of Neuronal Arbors., , and . Neuroinformatics, 9 (2-3): 219-231 (2011)NetMets: software for quantifying and visualizing errors in biological network segmentation., , , and . BMC Bioinformatics, 13 (S-8): S7 (2012)TIMING 2.0: high-throughput single-cell profiling of dynamic cell-cell interactions by time-lapse imaging microscopy in nanowell grids., , , , , , , , and . Bioinformatics, 35 (4): 706-708 (2019)