Semple Publications of Charles Semple     Order by:   Type | Year
Associated keywords
Article (Journal)
1
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Simone Linz and Charles Semple. Caterpillars on three and four leaves are sufficient to reconstruct binary normal networks. In JOMB, 2020.
Keywords: explicit network, from rooted trees, from triplets, normal network, phylogenetic network, phylogeny, reconstruction, uniqueness.
Note: https://arxiv.org/abs/2002.00483, to appear.
       

2
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Joan Carles Pons, Charles Semple and Mike Steel. Tree-based networks: characterisations, metrics, and support trees. In JOMB, Vol. 78(4):899-918, 2019.
Keywords: characterization, explicit network, from network, phylogenetic network, phylogeny, time consistent network, tree-based network.
Note: https://arxiv.org/abs/1710.07836.
       

3
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Simone Linz and Charles Semple. Attaching leaves and picking cherries to characterise the hybridisation number for a set of phylogenies. In AAM, Vol. 105:102-129, 2019.
Keywords: agreement forest, cherry-picking, explicit network, from rooted trees, phylogenetic network, phylogeny, reconstruction, tree-child network.
Note: https://doi.org/10.1016/j.aam.2019.01.004.
       

4
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Janosch Döcker, Simone Linz and Charles Semple. Displaying trees across two phylogenetic networks. In TCS, Vol. 796:129-146, 2019.
Keywords: display set, explicit network, normal network, phylogenetic network, phylogeny, time consistent network, tree-child network.
Note: https://arxiv.org/abs/1901.06612.
       

5
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Andrew R. Francis, Charles Semple and Mike Steel. New characterisations of tree-based networks and proximity measures. In Advances in Applied Mathematics, Vol. 93:93-107, 2018.
Keywords: characterization, explicit network, phylogenetic network, phylogeny, time consistent network, tree-based network.
Note: https://arxiv.org/abs/1611.04225.
       

6
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Magnus Bordewich, Charles Semple and Nihan Tokac. Constructing tree-child networks from distance matrices. In Algorithmica, Vol. 80(8):2240-2259, 2018.
Keywords: compressed network, explicit network, from distances, phylogenetic network, phylogeny, polynomial, reconstruction, tree-child network, uniqueness.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/BSN17.pdf.
       

7
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Katharina Huber, Vincent Moulton, Charles Semple and Taoyang Wu. Quarnet inference rules for level-1 networks. In BMB, Vol. 80:2137-2153, 2018.
Keywords: explicit network, from quarnets, from subnetworks, galled tree, level k phylogenetic network, phylogenetic network, phylogeny, reconstruction.
Note: https://arxiv.org/abs/1711.06720.
       

8
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Magnus Bordewich and Charles Semple. A universal tree-based network with the minimum number of reticulations. In DAM, Vol. 250:357-362, 2018.
Keywords: explicit network, phylogenetic network, phylogeny, tree-based network.
Note: https://arxiv.org/abs/1707.08274.
       

9
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Charles Semple and Jack Simpson. When is a phylogenetic network simply an amalgamation of two trees? In BMB, Vol. 80(9):2338-2348, 2018.
Keywords: characterization, phylogenetic network, phylogeny, reticulation-visible network, stack-free network, tree-based network.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/SS18.pdf.
       

10
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Magnus Bordewich, Katharina Huber, Vincent Moulton and Charles Semple. Recovering normal networks from shortest inter-taxa distance information. In JOMB, Vol. 77(3):571-594, 2018.
Keywords: explicit network, from distances, normal network, phylogenetic network, phylogeny, polynomial, reconstruction, uniqueness.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/BHMS18.pdf.
       

11
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Charles Semple. Size of a phylogenetic network. In DAM, Vol. 217(2):362-367, 2017.
Keywords: compressed network, number of vertices, phylogenetic network, phylogeny, stack-free network.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/S16.pdf.
       

12
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Christopher Bryant, Mareike Fischer, Simone Linz and Charles Semple. On the Quirks of Maximum Parsimony and Likelihood on Phylogenetic Networks. In JTB, Vol. 417:100-108, 2017.
Keywords: explicit network, from sequences, likelihood, parsimony, phylogenetic network, phylogeny.
Note: http://arxiv.org/abs/1505.06898.
       

13
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Magnus Bordewich, Simone Linz and Charles Semple. Lost in space? Generalising subtree prune and regraft to spaces of phylogenetic networks. In JTB, Vol. 423:1-12, 2017.
Keywords: distance between networks, explicit network, phylogenetic network, phylogeny, reticulation-visible network, SPR distance, tree-based network, tree-child network.
Note: https://simonelinz.files.wordpress.com/2017/04/bls171.pdf.
       

14
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Magnus Bordewich and Charles Semple. Reticulation-visible networks. In Advances in Applied Mathematics, Vol. 78:114-141, 2016.
Keywords: explicit network, from network, from rooted trees, phylogenetic network, phylogeny, polynomial, tree containment.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/BS16.pdf.
       

15
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Charles Semple. Phylogenetic Networks with Every Embedded Phylogenetic Tree a Base Tree. In BMB, Vol. 78(1):132-137, 2016.
Keywords: characterization, explicit network, phylogenetic network, phylogeny, tree-based network, tree-child network.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/S15.pdf.
       

16
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Magnus Bordewich and Charles Semple. Determining phylogenetic networks from inter-taxa distances. In JOMB, Vol. 73(2):283-303, 2016.
Keywords: from distances, phylogenetic network, phylogeny, reconstruction, reticulation-visible network, time consistent network, tree-child network, uniqueness.
Note: http://132.181.26.35/~c.semple/papers/BS15b.pdf.
       

17
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Colin McDiarmid, Charles Semple and Dominic Welsh. Counting phylogenetic networks. In Annals of Combinatorics, Vol. 19(1):205-224, 2015.
Keywords: counting, explicit network, normal network, phylogenetic network, phylogeny, tree-child network.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/MSW13.pdf.
       

18
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Paul Cordue, Simone Linz and Charles Semple. Phylogenetic Networks that Display a Tree Twice. In BMB, Vol. 76(10):2664-2679, 2014.
Keywords: from rooted trees, normal network, phylogenetic network, phylogeny, reconstruction, tree-child network.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/CLS14.pdf.
       
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19
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Peter J. Humphries, Simone Linz and Charles Semple. On the complexity of computing the temporal hybridization number for two phylogenies. In DAM, Vol. 161:871-880, 2013.
Keywords: agreement forest, APX hard, characterization, from rooted trees, hybridization, NP complete, phylogenetic network, phylogeny, reconstruction, time consistent network.
Note: http://ab.inf.uni-tuebingen.de/people/linz/publications/TAFapx.pdf.
       
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20
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Simone Linz, Katherine St. John and Charles Semple. Counting trees in a phylogenetic network is #P-complete. In SICOMP, Vol. 42(4):1768-1776, 2013.
Keywords: counting, from network, phylogenetic network, phylogeny.
Note: http://ab.inf.uni-tuebingen.de/people/linz/publications/counting.pdf.
       

21
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Peter J. Humphries, Simone Linz and Charles Semple. Cherry picking: a characterization of the temporal hybridization number for a set of phylogenies. In BMB, Vol. 75(10):1879-1890, 2013.
Keywords: characterization, cherry-picking, from rooted trees, hybridization, NP complete, phylogenetic network, phylogeny, reconstruction, time consistent network.
Note: http://ab.inf.uni-tuebingen.de/people/linz/publications/CPSpaper.pdf.
       
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22
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Magnus Bordewich and Charles Semple. Budgeted Nature Reserve Selection with diversity feature loss and arbitrary split systems. In JOMB, Vol. 64(1):69-85, 2012.
Keywords: abstract network, approximation, diversity, phylogenetic network, polynomial, split network.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/BS11.pdf.
       
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23
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Josh Voorkamp né Collins, Simone Linz and Charles Semple. Quantifying hybridization in realistic time. In JCB, Vol. 18(10):1305-1318, 2011.
Keywords: explicit network, FPT, from rooted trees, hybridization, minimum number, phylogenetic network, phylogeny, Program HybridInterleave, reconstruction, software.
Note: http://wwwcsif.cs.ucdavis.edu/~linzs/CLS10_interleave.pdf, software available at http://www.math.canterbury.ac.nz/~c.semple/software.shtml.
       
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24
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Leo van Iersel, Charles Semple and Mike Steel. Quantifying the Extent of Lateral Gene Transfer Required to Avert a 'Genome of Eden'. In BMB, Vol. 72:1783–1798, 2010.
Note: http://www.win.tue.nl/~liersel/LGT.pdf.
       
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25
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Simone Linz, Charles Semple and Tanja Stadler. Analyzing and reconstructing reticulation networks under timing constraints. In JOMB, Vol. 61(5):715-737, 2010.
Keywords: explicit network, from rooted trees, hybridization, lateral gene transfer, NP complete, phylogenetic network, phylogeny, reconstruction, time consistent network.
Note: http://dx.doi.org/10.1007/s00285-009-0319-y..
       
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26
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Leo van Iersel, Charles Semple and Mike Steel. Locating a tree in a phylogenetic network. In IPL, Vol. 110(23), 2010.
Keywords: cluster containment, explicit network, from network, level k phylogenetic network, normal network, NP complete, phylogenetic network, polynomial, regular network, time consistent network, tree containment, tree sibling network, tree-child network.
Note: http://arxiv.org/abs/1006.3122.
       
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27
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Simone Linz and Charles Semple. Hybridization in non-binary trees. In TCBB, Vol. 6(1):30-45, 2009.
Keywords: agreement forest, FPT, from rooted trees, hybridization, phylogenetic network, phylogeny, reconstruction.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/LS08.pdf, slides available at http://www.newton.cam.ac.uk/webseminars/pg+ws/2007/plg/plgw03/1220/linz/.
       

28
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Stefan Grünewald, Katharina Huber, Vincent Moulton, Charles Semple and Andreas Spillner. Characterizing weak compatibility in terms of weighted quartets. In Advances in Applied Mathematics, Vol. 42(3):329-341, 2009.
Keywords: abstract network, characterization, from quartets, split network, weak hierarchy.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/GHMSS08.pdf, slides at http://www.lirmm.fr/miep08/slides/12_02_huber.pdf.
       

29
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Peter J. Humphries and Charles Semple. Note on the hybridization number and subtree distance in phylogenetics. In Applied Mathematics Letters, Vol. 22(4):611-615, 2009.
Keywords: explicit network, minimum number, phylogenetic network, phylogeny, SPR distance.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/HS08.pdf.
       

30
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Magnus Bordewich and Charles Semple. Computing the hybridization number of two phylogenetic trees is fixed-parameter tractable. In TCBB, Vol. 4(3):458-466, 2007.
Keywords: FPT, hybridization.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/BS06b.pdf.
       

31
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Magnus Bordewich and Charles Semple. Computing the minimum number of hybridization events for a consistent evolutionary history. In DAM, Vol. 155:914-918, 2007.
Keywords: agreement forest, approximation, APX hard, explicit network, from rooted trees, hybridization, inapproximability, NP complete, phylogenetic network, phylogeny, SPR distance.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/BS06a.pdf.
       

32
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Magnus Bordewich, Simone Linz, Katherine St. John and Charles Semple. A reduction algorithm for computing the hybridization number of two trees. In EBIO, Vol. 3:86-98, 2007.
Keywords: agreement forest, FPT, from rooted trees, hybridization, phylogenetic network, phylogeny, Program HybridNumber.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/BLSS07.pdf.
       

33
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Mihaela Baroni, Charles Semple and Mike Steel. Hybrids in Real Time. In Systematic Biology, Vol. 55(1):46-56, 2006.
Keywords: agreement forest, from rooted trees, phylogenetic network, phylogeny, polynomial, reconstruction, time consistent network.
Note: http://www.math.canterbury.ac.nz/~m.steel/Non_UC/files/research/hybrids.pdf.
       
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34
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Charles Semple and Mike Steel. Unicyclic networks: compatibility and enumeration. In TCBB, Vol. 3(1):84-91, 2006.
Keywords: counting, explicit network, galled tree, unicyclic network.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/SS06.pdf.
       

35
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Magnus Bordewich and Charles Semple. On the computational complexity of the rooted subtree prune and regraft distance. In ACOM, Vol. 8:409-423, 2005.
Keywords: agreement forest, from rooted trees, NP complete, SPR distance.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/BS04.pdf.
       
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36
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Mihaela Baroni, Stefan Grünewald, Vincent Moulton and Charles Semple. Bounding the number of hybridization events for a consistent evolutionary history. In JOMB, Vol. 51(2):171-182, 2005.
Keywords: agreement forest, bound, explicit network, from rooted trees, hybridization, minimum number, phylogenetic network, phylogeny, reconstruction, SPR distance.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/BGMS05.pdf.
       
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37
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Mihaela Baroni, Charles Semple and Mike Steel. A framework for representing reticulate evolution. In ACOM, Vol. 8:398-401, 2004.
Keywords: explicit network, from clusters, hybridization, minimum number, phylogenetic network, phylogeny, reconstruction, regular network, SPR distance.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/BSS04.pdf.
       
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38
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Katharina Huber, Vincent Moulton and Charles Semple. Replacing cliques by stars in quasi-median graphs. In DAM, Vol. 143(1-3), 2004.
Note: http://dx.doi.org/10.1016/j.dam.2004.03.002.
       
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InBook
39
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Charles Semple. Hybridization Networks. In Olivier Gascuel and Mike Steel editors, Reconstructing Evolution, New Mathematical and Computational Advances, Pages 277-314, Oxford University Press, 2007.
Keywords: hybridization, phylogenetic network, phylogeny, recombination.
Note: http://www.math.canterbury.ac.nz/~c.semple/papers/S06.pdf.
       

Misc
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Katharina Huber, Leo van Iersel, Remie Janssen, Mark Jones, Vincent Moulton, Yukihiro Murakami and Charles Semple. Rooting for phylogenetic networks. 2019.
Keywords: explicit network, from network, level k phylogenetic network, orchard network, orientation, phylogenetic network, phylogeny, reconstruction, stack-free network, tree-based network, tree-child network, valid network.
Note: https://arxiv.org/abs/1906.07430.