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PUBMED FOR HANDHELDS

Journal Abstract Search


120 related items for PubMed ID: 28596212

  • 21. Effects of formalin and ethanol preservation on otolith delta18O stable isotope signatures.
    Storm-Suke A, Dempson JB, Caron F, Power M.
    Rapid Commun Mass Spectrom; 2007; 21(4):503-8. PubMed ID: 17245794
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  • 23. Fusiform vateritic inclusions observed in European eel (Anguilla anguilla L.) sagittae.
    Kern Z, Kázmér M, Müller T, Specziár A, Németh A, Váczi T.
    Acta Biol Hung; 2017 Sep; 68(3):267-278. PubMed ID: 28901805
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  • 24. Is blood cortisol or vateritic otolith composition associated with natal dispersal or reproductive performance on the spawning grounds of straying and homing hatchery-produced chum salmon (Oncorhynchus keta) in Southeast Alaska?
    McConnell CJ, Atkinson S, Oxman D, Westley PAH.
    Biol Open; 2019 Jun 12; 8(6):. PubMed ID: 31182627
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  • 27. Immunohistochemical localization of two otolith matrix proteins in the otolith and inner ear of the rainbow trout, Oncorhynchus mykiss: comparative aspects between the adult inner ear and embryonic otocysts.
    Murayama E, Takagi Y, Nagasawa H.
    Histochem Cell Biol; 2004 Feb 12; 121(2):155-66. PubMed ID: 14689310
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  • 28. In vivo and in vitro analysis of starmaker activity in zebrafish otolith biomineralization.
    Kalka M, Markiewicz N, Ptak M, Sone ED, Ożyhar A, Dobryszycki P, Wojtas M.
    FASEB J; 2019 Jun 12; 33(6):6877-6886. PubMed ID: 30840836
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  • 30. Otolith mineralogy affects otolith shape asymmetry: a comparison of hatchery and natural origin Coho salmon (Oncorhynchus kisutch).
    Quindazzi MJ, Gaffney LP, Polard E, Bohlender N, Duguid W, Juanes F.
    J Fish Biol; 2023 Apr 12; 102(4):870-882. PubMed ID: 36651303
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  • 32. Structural properties of the intrinsically disordered, multiple calcium ion-binding otolith matrix macromolecule-64 (OMM-64).
    Poznar M, Hołubowicz R, Wojtas M, Gapiński J, Banachowicz E, Patkowski A, Ożyhar A, Dobryszycki P.
    Biochim Biophys Acta Proteins Proteom; 2017 Nov 12; 1865(11 Pt A):1358-1371. PubMed ID: 28866388
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  • 33. Comparative study on nano-mechanics and thermodynamics of fish otoliths.
    Dongni R, Yonghua G, Qingling F.
    Mater Sci Eng C Mater Biol Appl; 2013 Jan 01; 33(1):9-14. PubMed ID: 25428035
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  • 34. Morphology and composition of Goldeye (Hiodontidae; Hiodon alosoides) otoliths.
    Long JM, Snow RA, Pracheil BM, Chakoumakos BC.
    J Morphol; 2021 Apr 01; 282(4):511-519. PubMed ID: 33470449
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  • 35. Comparison of secondary ion mass spectrometry and micromilling/continuous flow isotope ratio mass spectrometry techniques used to acquire intra-otolith delta18O values of wild Atlantic salmon (Salmo salar).
    Hanson NN, Wurster CM, EIMF, Todd CD.
    Rapid Commun Mass Spectrom; 2010 Sep 15; 24(17):2491-8. PubMed ID: 20740522
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  • 36. Elevated CO2 enhances otolith growth in young fish.
    Checkley DM, Dickson AG, Takahashi M, Radich JA, Eisenkolb N, Asch R.
    Science; 2009 Jun 26; 324(5935):1683. PubMed ID: 19556502
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  • 38. Not All Inner Ears are the Same: Otolith Matrix Proteins in the Inner Ear of Sub-Adult Cichlid Fish, Oreochromis Mossambicus, Reveal Insights Into the Biomineralization Process.
    Weigele J, Franz-Odendaal TA, Hilbig R.
    Anat Rec (Hoboken); 2016 Feb 26; 299(2):234-45. PubMed ID: 26559654
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  • 39. The inner ear proteome of fish.
    Thomas ORB, Swearer SE, Kapp EA, Peng P, Tonkin-Hill GQ, Papenfuss A, Roberts A, Bernard P, Roberts BR.
    FEBS J; 2019 Jan 26; 286(1):66-81. PubMed ID: 30521091
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  • 40. Spatial and temporal variations in otolith chemistry and relationships with water chemistry: a useful tool to distinguish Atlantic salmon Salmo salar parr from different natal streams.
    Martin J, Bareille G, Berail S, Pecheyran C, Daverat F, Bru N, Tabouret H, Donard O.
    J Fish Biol; 2013 May 26; 82(5):1556-81. PubMed ID: 23639154
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