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Xenophidion

  • Phylogenetic Relationships of the Dwarf Boas and a Comparison of Bayesian and Bootstrap Measures of Phylogenetic Support

    Phylogenetic Relationships of the Dwarf Boas and a Comparison of Bayesian and Bootstrap Measures of Phylogenetic Support

  • A New Subfamily of Fossorial Colubroid Snakes from the Western Ghats of Peninsular India

    A New Subfamily of Fossorial Colubroid Snakes from the Western Ghats of Peninsular India

  • Fossil Calibration Dates for Molecular Phylogenetic Analysis of Snakes 1: Serpentes, Alethinophidia, Boidae, Pythonidae

    Fossil Calibration Dates for Molecular Phylogenetic Analysis of Snakes 1: Serpentes, Alethinophidia, Boidae, Pythonidae

  • Figure S1. Raxml Trees for Concatenated Data for 81 Taxa, with Three Different Alignment Treatments for 16S

    Figure S1. Raxml Trees for Concatenated Data for 81 Taxa, with Three Different Alignment Treatments for 16S

  • The Available Name for the Taxonomic Group Uniting Boas and Pythons

    The Available Name for the Taxonomic Group Uniting Boas and Pythons

  • Downloaded from the NBCI Genbank Database Emerging from Hibernation in Order to Bask, Mate, and (See Additional File 9)

    Downloaded from the NBCI Genbank Database Emerging from Hibernation in Order to Bask, Mate, and (See Additional File 9)

  • Citizen Science and Online Data: Opportunities and Challenges for Snake

    Citizen Science and Online Data: Opportunities and Challenges for Snake

  • The Evolution of Coral Snake Mimicry

  • Toward a Tree-Of-Life for the Boas and Pythons: Multilocus Species-Level Phylogeny with Unprecedented Taxon Sampling ⇑ R

  • Phylogenomic Analyses Reveal Novel Relationships Among Snake Families ⇑ Jeffrey W

    Phylogenomic Analyses Reveal Novel Relationships Among Snake Families ⇑ Jeffrey W

  • An Initial Estimate Toward Identifying and Numbering Extant Tuatara, Amphisbaena, and Snake Kinds

    An Initial Estimate Toward Identifying and Numbering Extant Tuatara, Amphisbaena, and Snake Kinds

  • Table S3.1. Habitat Use of Sampled Snakes. Taxonomic Nomenclature

    Table S3.1. Habitat Use of Sampled Snakes. Taxonomic Nomenclature

  • Higher-Level Relationships of Snakes Inferred from Four Nuclear and Mitochondrial Genes

    Higher-Level Relationships of Snakes Inferred from Four Nuclear and Mitochondrial Genes

  • Gauthier, J.A., Kearney, M., Maisano, J.A., Rieppel, O., Behlke, A., 2012

    Gauthier, J.A., Kearney, M., Maisano, J.A., Rieppel, O., Behlke, A., 2012

  • Dissociation of Somatic Growth from Segmentation Drives Gigantism In

    Dissociation of Somatic Growth from Segmentation Drives Gigantism In

  • AC27 Doc. 19.3

    AC27 Doc. 19.3

  • The Higher-Level Relationships of Alethinophidian Snakes Inferred from Seven Nuclear and Mitochondrial Genes

    The Higher-Level Relationships of Alethinophidian Snakes Inferred from Seven Nuclear and Mitochondrial Genes

  • The Oldest Known Snakes from the Middle Jurassic-Lower Cretaceous Provide Insights on Snake Evolution

    The Oldest Known Snakes from the Middle Jurassic-Lower Cretaceous Provide Insights on Snake Evolution

Top View
  • R Graphics Output
  • A New Jurassic Lizard from China
  • The Oldest Known Snakes from the Middle Jurassic-Lower Cretaceous Provide Insights on Snake Evolution
  • Constriction in the Snake Anilius Scytale
  • Phylogenetic Relationships and Evolution of Snakes
  • On the Origin and Evolution of the Ophidia by Alessandro Palci
  • Perspectives from the Late Oligocene Nsungwe Formation of Southwestern Tanzania
  • On the Structure and Function of Tails in Snakes: Relative Length and Arboreality
  • Zheng Wiens 2015B MPE.Pdf
  • A Taxonomic Revision of Boas (Serpentes: Boidae)


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