Publications related to 'visualization'
 
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Article (Journal)
1
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Jean-Christophe Aude, Yolande Diaz-Lazcoz, Jean-Jacques Codani and Jean-Loup Risler. Applications of the Pyramidal Clustering Method to Biological Objects. In CC, Vol. 23(3-4):303-315, 1999.
Keywords: from distances, phylogenetic network, phylogeny, Program Pyramids, pyramid, reconstruction, software, visualization.
Note: http://dx.doi.org/10.1016/S0097-8485(99)00006-6.
       

2
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Hans-Jürgen Bandelt, Peter Forster, Bryan C. Sykes and Martin Richards. Mitochondrial portraits of human population using median networks. In GEN, Vol. 141:743-753, 1995.
Keywords: from splits, median network, population genetics, Program Spectronet, reconstruction, visualization.
Note: http://www.genetics.org/cgi/content/abstract/141/2/743.
       

3
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Joaquin Dopazo, Andreas W. M. Dress and Arndt von Haeseler. Split decomposition: a new technique to analyse viral evolution. In PNAS, Vol. 90:10320-10324, 1993.
Keywords: abstract network, phylogenetic network, phylogeny, split, split decomposition, split network, visualization.
Note: http://dx.doi.org/10.1073/pnas.90.21.10320.
       

4
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Andreas W. M. Dress, Daniel H. Huson and Vincent Moulton. Analyzing and visualizing distance data using SplitsTree. In DAM, Vol. 71(1):95-109, 1996.
Keywords: abstract network, from distances, phylogenetic network, phylogeny, Program SplitsTree, software, split network, visualization.
Note: http://bibiserv.techfak.uni-bielefeld.de/splits/splits.pdf.
       

5
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Andreas W. M. Dress and Daniel H. Huson. Constructing splits graphs. In TCBB, Vol. 1(3):109-115, 2004.
Keywords: abstract network, circular split system, from trees, phylogenetic network, phylogeny, Program SplitsTree, reconstruction, split network, visualization.
Note: http://scilib.kiev.ua/ieee/tcbb/2004/03/n3/n0109.pdf.
       
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Philippe Gambette and Daniel H. Huson. Improved Layout of Phylogenetic Networks. In TCBB, Vol. 5(3):472-479, 2008.
Keywords: abstract network, heuristic, phylogenetic network, phylogeny, Program SplitsTree, software, split network, visualization.
Note: http://hal-lirmm.ccsd.cnrs.fr/lirmm-00309694/en/.
       
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7
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Barbara R. Holland, Katharina Huber, Vincent Moulton and Peter J. Lockhart. Using consensus networks to visualize contradictory evidence for species phylogeny. In MBE, Vol. 21(7):1459-1461, 2004.
Keywords: consensus, from trees, phylogenetic network, phylogeny, split, visualization.
Note: http://dx.doi.org/10.1093/molbev/msh145.
       
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8
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Katharina Huber, Michael Langton, David Penny, Vincent Moulton and Mike Hendy. Spectronet: A package for computing spectra and median networks. In ABIO, Vol. 1(3):159-161, 2004.
Keywords: from splits, median network, phylogenetic network, phylogeny, Program Spectronet, software, split, visualization.
Note: http://citeseer.ist.psu.edu/631776.html.
       
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9
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Vladimir Makarenkov. T-REX: reconstructing and visualizing phylogenetic trees and reticulation networks. In BIO, Vol. 17(7):664-668, 2001.
Keywords: phylogenetic network, phylogeny, Program T REX, reconstruction, reticulogram, software, visualization.
Note: http://www.labunix.uqam.ca/~makarenv/makarenv/Article_BIO.pdf.
       

10
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Daniel H. Huson, Daniel C. Richter, Christian Rausch, Tobias Dezulian, Markus Franz and Regula Rupp. Dendroscope: An interactive viewer for large phylogenetic trees. In BMCB, Vol. 8:460, 2007.
Keywords: phylogeny, Program Dendroscope, software, visualization.
Note: http://dx.doi.org/10.1186/1471-2105-8-460, slides available at http://www.newton.cam.ac.uk/webseminars/pg+ws/2007/plg/plgw01/0903/huson/, software freely available from http://www.dendroscope.org.
       
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11
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Kirill Kryukov and Naruya Saitou. Netview: Application Software for Constructing and Visually Exploring Phylogenetic Networks. In Genome Informatics, Vol. 14:280-281, 2003.
Keywords: from sequences, phylogenetic network, phylogeny, Program NetView, visualization.
Note: http://www.jsbi.org/journal/GIW03/GIW03SS06.pdf.
       

12
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Tobias Kloepper and Daniel H. Huson. Drawing explicit phylogenetic networks and their integration into SplitsTree. In BMCEB, Vol. 8(22), 2008.
Keywords: explicit network, phylogenetic network, phylogeny, Program SplitsTree, software, split network, visualization.
Note: http://dx.doi.org/10.1186/1471-2148-8-22.
       
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13
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Daniel H. Huson. Drawing Rooted Phylogenetic Networks. In TCBB, Vol. 6(1):103-109, 2009.
Keywords: explicit network, phylogenetic network, phylogeny, Program Dendroscope, Program SplitsTree, visualization.
Note: http://dx.doi.org/10.1109/TCBB.2008.58.
       
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14
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Gabriel Cardona, Francesc Rosselló and Gabriel Valiente. Extended Newick: It is Time for a Standard Representation. In BMCB, Vol. 9:532, 2008.
Keywords: evaluation, explicit network, phylogenetic network, Program Bio PhyloNetwork, Program Dendroscope, Program NetGen, Program PhyloNet, Program SplitsTree, Program TCS, visualization.
Note: http://bioinfo.uib.es/media/uploaded/bmc-2008-enewick-sub.pdf.
       

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Mark A. Ragan. Trees and networks before and after Darwin. In Biology Direct, Vol. 4(43), 2009.
Keywords: abstract network, explicit network, phylogenetic network, phylogeny, survey, visualization.
Note: http://dx.doi.org/10.1186/1745-6150-4-43.
       
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Miguel Arenas, Mateus Patricio, David Posada and Gabriel Valiente. Characterization of Phylogenetic Networks with NetTest. In BMCB, Vol. 11:268, 2010.
Keywords: explicit network, galled tree, phylogenetic network, Program NetTest, software, time consistent network, tree sibling network, tree-child network, visualization.
Note: http://dx.doi.org/10.1186/1471-2105-11-268, software available at http://darwin.uvigo.es/software/nettest/.
       
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17
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Andreas Spillner, Binh T. Nguyen and Vincent Moulton. Constructing and Drawing Regular Planar Split Networks. In TCBB, Vol. 9(2):395-407, 2012.
Keywords: abstract network, from splits, phylogenetic network, phylogeny, reconstruction, visualization.
Note: slides and presentation available at http://www.newton.ac.uk/programmes/PLG/seminars/062111501.html.
       
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18
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Daniel H. Huson and Celine Scornavacca. Dendroscope 3: An Interactive Tool for Rooted Phylogenetic Trees and Networks. In Systematic Biology, Vol. 61(6):1061-1067, 2012.
Keywords: from rooted trees, from triplets, phylogenetic network, phylogeny, Program Dendroscope, reconstruction, software, visualization.
       
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19

Miro Ferreri, Weijie Qu and Bo Han. Phylogenetic networks: A tool to display character conflict and demographic history. In African Journal of Biotechnology , Vol. 10(60):12799-12803, 2011.
Keywords: phylogenetic network, phylogeny, survey, visualization.
       

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Celine Scornavacca, Paprotny Wojciech, Vincent Berry and Vincent Ranwez. Representing a set of reconciliations in a compact way. In JBCB, Vol. 11(2):1250025, 2013.
Keywords: duplication, explicit network, from network, from rooted trees, from species tree, phylogeny, Program GraphDTL, Program TERA, visualization.
Note: http://hal-lirmm.ccsd.cnrs.fr/lirmm-00818801.
       
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21
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François Chevenet, Jean-Philippe Doyon, Celine Scornavacca, Edwin Jacox, Emmanuelle Jousselin and Vincent Berry. SylvX: a viewer for phylogenetic tree reconciliations. In BIO, Vol. 32(4):608-610, 2016.
Keywords: duplication, explicit network, from rooted trees, from species tree, lateral gene transfer, loss, phylogenetic network, phylogeny, Program SylvX, software, visualization.
Note: https://www.researchgate.net/profile/Emmanuelle_Jousselin/publication/283446016_SylvX_a_viewer_for_phylogenetic_tree_reconciliations/links/5642146108aec448fa621efa.pdf.
       

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Klaus Schliep, Alastair J. Potts, David A. Morrison and Guido W. Grimm. Intertwining phylogenetic trees and networks. In Methods in Ecology and Evolution, Vol. 8(10):1212-1220, 2017.
Keywords: abstract network, from network, from unrooted trees, phylogenetic network, phylogeny, split network, visualization.
Note: http://dx.doi.org/10.1111/2041-210X.12760.
       

23

Timothy G. Vaughan. IcyTree: rapid browser-based visualization for phylogenetic trees and networks. In BIO, Vol. 33(15):2392-2394, 2017.
Keywords: ARG, explicit network, from network, phylogenetic network, phylogeny, Program IcyTree, software, visualization.
Note: http://dx.doi.org/10.1093/bioinformatics/btx155.
       

InProceedings
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Daniel H. Huson, Tobias Kloepper, Peter J. Lockhart and Mike Steel. Reconstruction of Reticulate Networks from Gene Trees. In RECOMB05, Vol. 3500:233-249 of LNCS, springer, 2005.
Keywords: from rooted trees, from splits, phylogenetic network, phylogeny, reconstruction, split, split network, visualization.
Note: http://dx.doi.org/10.1007/11415770_18.
       

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Celine Scornavacca, Franziska Zickmann and Daniel H. Huson. Tanglegrams for Rooted Phylogenetic Trees and Networks. In ISMB11, Vol. 27(13):i248-i256 of BIO, 2011.
Keywords: from network, heuristic, integer linear programming, phylogenetic network, phylogeny, Program Dendroscope, tanglegram, visualization.
Note: http://dx.doi.org/10.1093/bioinformatics/btr210.
       
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Poornima Venugopal and Sergey Bereg. Layout of Phylogenetic Networks and Multi-Labeled Trees. In BIOT'09, Pages 91, 2009.
Keywords: explicit network, phylogenetic network, phylogeny, Program PADRE, visualization.
Note: http://www.biotconf.org/PDFs/1456.pdf.
       

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Ioannis G. Tollis and Konstantinos G. Kakoulis. Algorithms for Visualizing Phylogenetic Networks. In GD16, Vol. 9801:183-195 of LNCS, springer, 2016.
Keywords: explicit network, galled network, galled tree, NP complete, planar, visualization.
Note: http://arxiv.org/abs/1609.00755.
       

MastersThesis
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Poornima Venugopal. Improving layout of phylogenetic network produced by PADRE. Master's thesis, University of Texas at Dallas, U.S.A., 2009.
Keywords: explicit network, phylogenetic network, Program PADRE, visualization.
Note: http://proquest.umi.com/pqdlink?did=2026498501&sid=1&Fmt=2&clientId=176295&RQT=309&VName=PQD.
       

PhdThesis
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Rainer Wetzel. Zur Visualisierung abstrakter Ahnlichkeitsbeziehungen. PhD thesis, Universität Bielefeld, Germany, 1995.
Keywords: abstract network, circular split system, visualization.
       

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Tobias Kloepper. Algorithms for the Calculation and Visualisation of Phylogenetic Networks. PhD thesis, Eberhard-Karls-Universität Tübingen, Germany, 2008.
Keywords: from rooted trees, from sequences, from unrooted trees, galled network, phylogenetic network, phylogeny, Program SplitsTree, reconstruction, split network, visualization.
Note: https://publikationen.uni-tuebingen.de/xmlui/handle/10900/49159.
       

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Yuanyi Zhang. Optimization Algorithms for Phylogenetic Networks. PhD thesis, University of Texas at Dallas, U.S.A., 2007.
Keywords: abstract network, explicit network, from distances, phylogenetic network, phylogeny, reconstruction, split, split network, visualization.
Note: http://proquest.umi.com/pqdlink?did=1421626541&sid=1&Fmt=6&clientId=176295&RQT=309&VName=PQD.
       

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Binh T. Nguyen. Novel Split-Based Approaches to Computing Phylogenetic Diversity and Planar Split Networks. PhD thesis, University of East Anglia, U.K., 2010.
Keywords: abstract network, diversity, from splits, phylogenetic network, phylogeny, reconstruction, split, split network, visualization.
Note: https://ueaeprints.uea.ac.uk/id/eprint/34218.
       

Misc
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Daniel H. Huson and Rainer Wetzel. Analyzing and visualizing sequence and distance data with SplitsTree V1.0.2. 1995.
Keywords: abstract network, phylogenetic network, phylogeny, Program SplitsTree, reconstruction, software, split network, visualization.
Note: Technical report, http://citeseer.ist.psu.edu/173442.html.
       

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Willem Sonke. Reconstructing a level-1-network from quartets. 2013.
Keywords: abstract network, from quartets, phylogenetic network, phylogeny, polynomial, Program Fylogenetica, reconstruction, software, visualization.
Note: http://alexandria.tue.nl/extra1/afstversl/wsk-i/sonke2013.pdf.
       

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Jonathan Klawitter and Peter Stumpf. Drawing Tree-Based Phylogenetic Networks with Minimum Number of Crossings. 2020.
Keywords: explicit network, FPT, minimum number, NP complete, phylogenetic network, phylogeny, polynomial, visualization.
Note: https://arxiv.org/abs/2008.08960.