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Ecdysozoa

  • Comparative Neuroanatomy of Mollusks and Nemerteans in the Context of Deep Metazoan Phylogeny

    Comparative Neuroanatomy of Mollusks and Nemerteans in the Context of Deep Metazoan Phylogeny

  • A Phylum-Wide Survey Reveals Multiple Independent Gains of Head Regeneration Ability in Nemertea

    A Phylum-Wide Survey Reveals Multiple Independent Gains of Head Regeneration Ability in Nemertea

  • Analysis of the Complete Mitochondrial DNA Sequence of the Brachiopod Terebratulina Retusa Places Brachiopoda Within the Protostomes

    Analysis of the Complete Mitochondrial DNA Sequence of the Brachiopod Terebratulina Retusa Places Brachiopoda Within the Protostomes

  • Animal Diversity Part 2

    Animal Diversity Part 2

  • Evolution of DNA Methylation Across Ecdysozoa

    Evolution of DNA Methylation Across Ecdysozoa

  • Phylum Porifera

    Phylum Porifera

  • Deep Phylogeny and Evolution of Sponges (Phylum Porifera)

    Deep Phylogeny and Evolution of Sponges (Phylum Porifera)

  • The Evolution of the Mitochondrial Genomes of Calcareous Sponges and Cnidarians Ehsan Kayal Iowa State University

    The Evolution of the Mitochondrial Genomes of Calcareous Sponges and Cnidarians Ehsan Kayal Iowa State University

  • Introduction to the Bilateria and the Phylum Xenacoelomorpha Triploblasty and Bilateral Symmetry Provide New Avenues for Animal Radiation

    Introduction to the Bilateria and the Phylum Xenacoelomorpha Triploblasty and Bilateral Symmetry Provide New Avenues for Animal Radiation

  • UC Berkeley UC Berkeley Electronic Theses and Dissertations

    UC Berkeley UC Berkeley Electronic Theses and Dissertations

  • The Genome of the Tardigrade Hypsibius Dujardini V009master

    The Genome of the Tardigrade Hypsibius Dujardini V009master

  • Chitin in Tardigrada with Comments on Chitin in the Ecdysozoa

    Chitin in Tardigrada with Comments on Chitin in the Ecdysozoa

  • Porifera, Cnidaria, Ctenophora, Platyhelminthes, Rotifera, Annelida

    Porifera, Cnidaria, Ctenophora, Platyhelminthes, Rotifera, Annelida

  • Six Major Steps in Animal Evolution: Are We Derived Sponge Larvae?

    Six Major Steps in Animal Evolution: Are We Derived Sponge Larvae?

  • On the Evolution of Bilaterality Grigory Genikhovich* and Ulrich Technau*

    On the Evolution of Bilaterality Grigory Genikhovich* and Ulrich Technau*

  • An Introduction to Invertebrates 667 � Figure 33.3 (Continued) Exploring Invertebrate Diversity

    An Introduction to Invertebrates 667 Figure 33.3 (Continued) Exploring Invertebrate Diversity

  • 20 Years of Zootaxa: Tardigrada (Ecdysozoa: Panarthropoda)

    20 Years of Zootaxa: Tardigrada (Ecdysozoa: Panarthropoda)

  • Ecdysozoa Ecdysozoa Ecdysozoa Ecdysozoa

    Ecdysozoa Ecdysozoa Ecdysozoa Ecdysozoa

Top View
  • On 20 Years of Lophotrochozoa
  • Superphylum Ecdysozoa: Nematodes and Tardigrades
  • Phylo-Evo-Devo, Tardigrades and Insights Into the Evolution of Segmentation
  • Animal Diversity II: Ecdysozoa and Echinodermata
  • Animal Phylogeny and Its Evolutionary Implications∗
  • Palaeontological and Molecular Evidence Linking Arthropods, Onychophorans, and Other Ecdysozoa
  • What Is Unique About Sponges, Cnidarians, and Flatworms? 1
  • Superphylum Ecdysozoa: Arthropods
  • The New View of Animal Phylogeny Author(S): Kenneth M
  • Animal Diversity II: Ecdysozoa
  • The Gnathifera Phyla Gnathostomulida, Rotifera (Including Acanthocephala), and Micrognathozoa
  • Ecdysozoa, Islands, Trees, and the ''Parsimony Ratchet'
  • Animal Diversity II: Protostomes II Ecdysozoa Objectives
  • Poriferan Paraphyly and Its Implications for Precambrian Palaeobiology
  • Ecdysozoa - Andreas Schmidt-Rhaesa
  • Downloadable NEXUS Fle (Additional File 7)
  • Invertebrates 1 Sponges
  • An Introduction to Vertebrates II – the Bilateria


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