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Lepidosauria

  • Controle Cardiovascular Autonômico E Metabolismo Em Embriões De Lagartos (Reptilia; Lepidosauria)

    Controle Cardiovascular Autonômico E Metabolismo Em Embriões De Lagartos (Reptilia; Lepidosauria)

  • A Small Lepidosauromorph Reptile from the Early Triassic of Poland

    A Small Lepidosauromorph Reptile from the Early Triassic of Poland

  • Evolution of Limblessness

    Evolution of Limblessness

  • Chapter18 Reptilia.Pdf

    Chapter18 Reptilia.Pdf

  • Docent Manual

    Docent Manual

  • Mirnas Support an Archosaur, Not Lepidosaur, Affinity for Turtles

    Mirnas Support an Archosaur, Not Lepidosaur, Affinity for Turtles

  • Tetrapod Phylogeny

    Tetrapod Phylogeny

  • 2Phylogenetic Systematics and the Origins of Amphibians and Reptiles

    2Phylogenetic Systematics and the Origins of Amphibians and Reptiles

  • Sample Lesson

    Sample Lesson

  • Rib Motions Don't Completely Hinge on Joint Design: Costal Joint Anatomy and Ventilatory Kinematics in a Teiid Lizard, Salvator Merianae

    Rib Motions Don't Completely Hinge on Joint Design: Costal Joint Anatomy and Ventilatory Kinematics in a Teiid Lizard, Salvator Merianae

  • Micrornas Support a Turtle + Lizard Clade

    Micrornas Support a Turtle + Lizard Clade

  • Prosauropod and Iguanid Jaw Musculature

    Prosauropod and Iguanid Jaw Musculature

  • Ancient Tropical Extinctions at High Latitudes Contributed to the Latitudinal Diversity Gradient* Andrea S

    Ancient Tropical Extinctions at High Latitudes Contributed to the Latitudinal Diversity Gradient* Andrea S

  • Complete Mitochondrial Genome Suggests Diapsid Affinities of Turtles (Pelomedusa Subrufa͞phylogeny͞amniota͞anapsids)

    Complete Mitochondrial Genome Suggests Diapsid Affinities of Turtles (Pelomedusa Subrufa͞phylogeny͞amniota͞anapsids)

  • ZOO 4462C – Herpetology Spring 2021, 4 Credits

    ZOO 4462C – Herpetology Spring 2021, 4 Credits

  • Lepidosaurian Diversity in the Mesozoic–Palaeogene: the Potential Roles Terri J

    Lepidosaurian Diversity in the Mesozoic–Palaeogene: the Potential Roles Terri J

  • Functional Morphology of the Lungs of the Green Iguana, Iguana Iguana, in Relation of Body Mass (Squamata: Reptilia)

    Functional Morphology of the Lungs of the Green Iguana, Iguana Iguana, in Relation of Body Mass (Squamata: Reptilia)

  • A Reevaluation of Early Amniote Phylogeny

    A Reevaluation of Early Amniote Phylogeny

Top View
  • In Vivo Locomotor Strain in the Hind Limb Bones of Alligator
  • Functional Morphology and Evolution of Aspiration Breathing in Tetrapods
  • Big Four’ Snakes of India, the Indian
  • Phylonyms; a Companion to the Phylocode
  • Scientific and Standard English Names of Amphibians and Reptiles of North America North of Mexico, with Comments Regarding Confidence in Our Understanding
  • A Model of the Anterior Esophagus in Snakes, with Functional and Developmental Implications
  • First Evidence of Convergent Lifestyle Signal in Reptile Skull Roof
  • 66 Checklist of Exotic Species in the Philippine Pet Trade, Ii
  • Classification and Phylogeny of the Diapsid Reptiles
  • Widespread Evolution of Molecular Resistance to Snake Venom Α-Neurotoxins in Vertebrates
  • The Ecomorphology of Facultative Bipedality in Lepidosauria: Implications for the Evolution of Reptilian Bipedality
  • ARAV Master Classes
  • Iguana Production: Hopeo Rscope ?
  • 1 the Palatal Dentition of Tetrapods and Its Functional Significance 1 2 3
  • Vertebrate Phylogeny Continued O Evolution of the Tetrapods O Evolution of the Amniotes O Evolution of the Sauropsids O Evolution of the Synapsids
  • Dinosaur Incubation Periods Directly Determined from Growth-Line Counts in Embryonic Teeth Show Reptilian-Grade Development
  • Lepidosauria) from the Jurassic of Patagonia: New Insights on the Phylogeny and Biogeography of Gondwanan Rhynchocephalians
  • Molecules, Morphology, and the Monophyly of Diapsid Reptiles


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