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PUBMED FOR HANDHELDS

Journal Abstract Search


202 related items for PubMed ID: 22628471

  • 1. Tetrapod-like axial regionalization in an early ray-finned fish.
    Sallan LC.
    Proc Biol Sci; 2012 Aug 22; 279(1741):3264-71. PubMed ID: 22628471
    [Abstract] [Full Text] [Related]

  • 2. Regionalization of the axial skeleton in the 'ambush predator' guild--are there developmental rules underlying body shape evolution in ray-finned fishes?
    Maxwell EE, Wilson LA.
    BMC Evol Biol; 2013 Dec 05; 13():265. PubMed ID: 24314064
    [Abstract] [Full Text] [Related]

  • 3. hox gene expression predicts tetrapod-like axial regionalization in the skate, Leucoraja erinacea.
    Criswell KE, Roberts LE, Koo ET, Head JJ, Gillis JA.
    Proc Natl Acad Sci U S A; 2021 Dec 21; 118(51):. PubMed ID: 34903669
    [Abstract] [Full Text] [Related]

  • 4. Unique pelvic fin in a tetrapod-like fossil fish, and the evolution of limb patterning.
    Jeffery JE, Storrs GW, Holland T, Tabin CJ, Ahlberg PE.
    Proc Natl Acad Sci U S A; 2018 Nov 20; 115(47):12005-12010. PubMed ID: 30397126
    [Abstract] [Full Text] [Related]

  • 5. Exceptional fossil preservation demonstrates a new mode of axial skeleton elongation in early ray-finned fishes.
    Maxwell EE, Furrer H, Sánchez-Villagra MR.
    Nat Commun; 2013 Nov 20; 4():2570. PubMed ID: 24096879
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  • 8. Developmental plasticity and the origin of tetrapods.
    Standen EM, Du TY, Larsson HC.
    Nature; 2014 Sep 04; 513(7516):54-8. PubMed ID: 25162530
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  • 10. A Devonian tetrapod-like fish and the evolution of the tetrapod body plan.
    Daeschler EB, Shubin NH, Jenkins FA.
    Nature; 2006 Apr 06; 440(7085):757-63. PubMed ID: 16598249
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  • 11. Tetrapod axial evolution and developmental constraints; Empirical underpinning by a mouse model.
    Woltering JM, Duboule D.
    Mech Dev; 2015 Nov 06; 138 Pt 2():64-72. PubMed ID: 26238020
    [Abstract] [Full Text] [Related]

  • 12. Functional adaptive landscapes predict terrestrial capacity at the origin of limbs.
    Dickson BV, Clack JA, Smithson TR, Pierce SE.
    Nature; 2021 Jan 06; 589(7841):242-245. PubMed ID: 33239789
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  • 13. Propulsive forces of mudskipper fins and salamander limbs during terrestrial locomotion: implications for the invasion of land.
    Kawano SM, Blob RW.
    Integr Comp Biol; 2013 Aug 06; 53(2):283-94. PubMed ID: 23667046
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  • 15. Elpistostege and the origin of the vertebrate hand.
    Cloutier R, Clement AM, Lee MSY, Noël R, Béchard I, Roy V, Long JA.
    Nature; 2020 Mar 06; 579(7800):549-554. PubMed ID: 32214248
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  • 16. The Ancient Origins of Neural Substrates for Land Walking.
    Jung H, Baek M, D'Elia KP, Boisvert C, Currie PD, Tay BH, Venkatesh B, Brown SM, Heguy A, Schoppik D, Dasen JS.
    Cell; 2018 Feb 08; 172(4):667-682.e15. PubMed ID: 29425489
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  • 17. Development and evolution of the muscles of the pelvic fin.
    Cole NJ, Hall TE, Don EK, Berger S, Boisvert CA, Neyt C, Ericsson R, Joss J, Gurevich DB, Currie PD.
    PLoS Biol; 2011 Oct 08; 9(10):e1001168. PubMed ID: 21990962
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  • 19. The pelvic fin and girdle of Panderichthys and the origin of tetrapod locomotion.
    Boisvert CA.
    Nature; 2005 Dec 22; 438(7071):1145-7. PubMed ID: 16372007
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