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Journal Abstract Search


153 related items for PubMed ID: 33706077

  • 1. Convergent evolution of optic lobe neuropil in Pancrustacea.
    Strausfeld NJ, Olea-Rowe B.
    Arthropod Struct Dev; 2021 Mar; 61():101040. PubMed ID: 33706077
    [Abstract] [Full Text] [Related]

  • 2. Conserved and convergent organization in the optic lobes of insects and isopods, with reference to other crustacean taxa.
    Sinakevitch I, Douglass JK, Scholtz G, Loesel R, Strausfeld NJ.
    J Comp Neurol; 2003 Dec 08; 467(2):150-72. PubMed ID: 14595766
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  • 3. The phylogenetic significance of crustacean optic neuropils and chiasmata: a re-examination.
    Harzsch S.
    J Comp Neurol; 2002 Nov 04; 453(1):10-21. PubMed ID: 12357428
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  • 4. Complex brain and optic lobes in an early Cambrian arthropod.
    Ma X, Hou X, Edgecombe GD, Strausfeld NJ.
    Nature; 2012 Oct 11; 490(7419):258-61. PubMed ID: 23060195
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  • 5. Brain organization and the origin of insects: an assessment.
    Strausfeld NJ.
    Proc Biol Sci; 2009 Jun 07; 276(1664):1929-37. PubMed ID: 19324805
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  • 6. A new view of insect-crustacean relationships I. Inferences from neural cladistics and comparative neuroanatomy.
    Strausfeld NJ, Andrew DR.
    Arthropod Struct Dev; 2011 May 07; 40(3):276-88. PubMed ID: 21333750
    [Abstract] [Full Text] [Related]

  • 7. Organization of optic lobes that support motion detection in a semiterrestrial crab.
    Sztarker J, Strausfeld NJ, Tomsic D.
    J Comp Neurol; 2005 Dec 19; 493(3):396-411. PubMed ID: 16261533
    [Abstract] [Full Text] [Related]

  • 8. Pancrustacean Evolution Illuminated by Taxon-Rich Genomic-Scale Data Sets with an Expanded Remipede Sampling.
    Lozano-Fernandez J, Giacomelli M, Fleming JF, Chen A, Vinther J, Thomsen PF, Glenner H, Palero F, Legg DA, Iliffe TM, Pisani D, Olesen J.
    Genome Biol Evol; 2019 Aug 01; 11(8):2055-2070. PubMed ID: 31270537
    [Abstract] [Full Text] [Related]

  • 9. The lobula plate is exclusive to insects.
    Strausfeld NJ.
    Arthropod Struct Dev; 2021 Mar 01; 61():101031. PubMed ID: 33711678
    [Abstract] [Full Text] [Related]

  • 10. The ovary structure and oogenesis in the basal crustaceans and hexapods. Possible phylogenetic significance.
    Jaglarz MK, Kubrakiewicz J, Bilinski SM.
    Arthropod Struct Dev; 2014 Jul 01; 43(4):349-60. PubMed ID: 24858464
    [Abstract] [Full Text] [Related]

  • 11. Phylotranscriptomics to bring the understudied into the fold: monophyletic ostracoda, fossil placement, and pancrustacean phylogeny.
    Oakley TH, Wolfe JM, Lindgren AR, Zaharoff AK.
    Mol Biol Evol; 2013 Jan 01; 30(1):215-33. PubMed ID: 22977117
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  • 14. Serotonin immunoreactive interneurons in the brain of the Remipedia: new insights into the phylogenetic affinities of an enigmatic crustacean taxon.
    Stemme T, Iliffe TM, Bicker G, Harzsch S, Koenemann S.
    BMC Evol Biol; 2012 Sep 05; 12():168. PubMed ID: 22947030
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  • 15. Serotonin-immunoreactive neurons in the ventral nerve cord of Remipedia (Crustacea): support for a sister group relationship of Remipedia and Hexapoda?
    Stemme T, Iliffe TM, von Reumont BM, Koenemann S, Harzsch S, Bicker G.
    BMC Evol Biol; 2013 Jun 10; 13():119. PubMed ID: 23758940
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  • 16. Major Revisions in Pancrustacean Phylogeny and Evidence of Sensitivity to Taxon Sampling.
    Bernot JP, Owen CL, Wolfe JM, Meland K, Olesen J, Crandall KA.
    Mol Biol Evol; 2023 Aug 03; 40(8):. PubMed ID: 37552897
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