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Flipping: A supertree construction method.

, , , , and . Bioconsensus, volume 61 of DIMACS Series in Discrete Mathematics and Theoretical Computer Science, page 135-160. DIMACS/AMS, (2001)

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A multi-scale approach to airway hyperresponsiveness: from molecule to organ., , , , , and . Frontiers in physiology, (2012)Scaling of Accuracy in Extremely Large Phylogenetic Trees., , , and . Pacific Symposium on Biocomputing, page 547-558. (2001)EvoMiner: frequent subtree mining in phylogenetic databases., , , , and . Knowl. Inf. Syst., 41 (3): 559-590 (2014)Minimum-Flip Supertrees: Complexity and Algorithms., , , and . IEEE ACM Trans. Comput. Biol. Bioinform., 3 (2): 165-173 (2006)Flipping: A supertree construction method., , , , and . Bioconsensus, volume 61 of DIMACS Series in Discrete Mathematics and Theoretical Computer Science, page 135-160. DIMACS/AMS, (2001)The Small-world Dynamics of Tree Networks and Data Mining in Phyloinformatics., , and . Bioinform., 19 (9): 1162-1168 (2003)Characterizing phylogenetically decisive taxon coverage., and . Appl. Math. Lett., 23 (1): 82-86 (2010)A mathematical model of airway and pulmonary arteriole smooth muscle, , , , , and . BIOPHYSICAL JOURNAL, 94 (6): 2053-2064 (March 2008)Supertrees by Flipping., , , and . COCOON, volume 2387 of Lecture Notes in Computer Science, page 391-400. Springer, (2002)Ceiba: scalable visualization of phylogenies and 2D/3D image collections.. Bioinform., 30 (17): 2506-2507 (2014)