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IEEE/ACM Transactions on Computational Biology and Bioinformatics|October 5, 2013
Accuracy guarantees for phylogeny reconstruction algorithms based on balanced minimum evolutionMagnus Bordewich, Radu MihaescuSystematic Biology|June 8, 2010
A network approach to study karyotypic evolution: the chromosomal races of the common shrew (Sorex araneus) and house mouse (Mus musculus) as model systemsThomas A White, Magnus Bordewich, Jeremy B SearleJournal of Mathematical Biology|May 26, 2016
On the fixed parameter tractability of agreement-based phylogenetic distancesMagnus Bordewich, Celine Scornavacca, Nihan Tokac, et al.IEEE/ACM Transactions on Computational Biology and Bioinformatics|January 31, 2009
Consistency of topological moves based on the balanced minimum evolution principle of phylogenetic inferenceMagnus Bordewich, Olivier Gascuel, Katharina T Huber, et al.Bulletin of Mathematical Biology|December 17, 2015
Phylogenetic Networks with Every Embedded Phylogenetic Tree a Base TreeCharles SempleSystematic Biology|April 14, 2006
Fast computation of supertrees for compatible phylogenies with nested taxaVincent Berry, Charles SempleIEEE/ACM Transactions on Computational Biology and Bioinformatics|October 20, 2006
Unicyclic networks: compatibility and enumerationCharles Semple, Mike SteelIEEE/ACM Transactions on Computational Biology and Bioinformatics|January 31, 2009
Hybridization in nonbinary treesSimone Linz, Charles SempleJournal of Mathematical Biology|September 10, 2020
Caterpillars on three and four leaves are sufficient to reconstruct binary normal networksSimone Linz, Charles SempleJournal of Mathematical Biology|August 22, 2021
Trinets encode orchard phylogenetic networksCharles Semple, Gerry ToftPageof 8