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PUBMED FOR HANDHELDS

Journal Abstract Search


223 related items for PubMed ID: 22821585

  • 1.
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  • 2. Are larvae of demersal fishes plankton or nekton?
    Leis JM.
    Adv Mar Biol; 2006; 51():57-141. PubMed ID: 16905426
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  • 3. Identifying the key biophysical drivers, connectivity outcomes, and metapopulation consequences of larval dispersal in the sea.
    Treml EA, Ford JR, Black KP, Swearer SE.
    Mov Ecol; 2015; 3(1):17. PubMed ID: 26180636
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  • 4. Larval dispersal and movement patterns of coral reef fishes, and implications for marine reserve network design.
    Green AL, Maypa AP, Almany GR, Rhodes KL, Weeks R, Abesamis RA, Gleason MG, Mumby PJ, White AT.
    Biol Rev Camb Philos Soc; 2015 Nov; 90(4):1215-47. PubMed ID: 25423947
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  • 7. Do larval types affect genetic connectivity at sea? Testing hypothesis in two sibling marine gastropods with contrasting larval development.
    Modica MV, Russini V, Fassio G, Oliverio M.
    Mar Environ Res; 2017 Jun; 127():92-101. PubMed ID: 28413103
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  • 8. Integrating larval connectivity with local demography reveals regional dynamics of a marine metapopulation.
    Johnson DW, Christie MR, Pusack TJ, Stallings CD, Hixon MA.
    Ecology; 2018 Jun; 99(6):1419-1429. PubMed ID: 29856493
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  • 9. The relationship between pelagic larval duration and range size in tropical reef fishes: a synthetic analysis.
    Lester SE, Ruttenberg BI.
    Proc Biol Sci; 2005 Mar 22; 272(1563):585-91. PubMed ID: 16007745
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  • 12. Adult and larval traits as determinants of geographic range size among tropical reef fishes.
    Luiz OJ, Allen AP, Robertson DR, Floeter SR, Kulbicki M, Vigliola L, Becheler R, Madin JS.
    Proc Natl Acad Sci U S A; 2013 Oct 08; 110(41):16498-502. PubMed ID: 24065830
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  • 15. Life history and matrix heterogeneity interact to shape metapopulation connectivity in spatially structured environments.
    Shima JS, Noonburg EG, Phillips NE.
    Ecology; 2010 Apr 08; 91(4):1215-24. PubMed ID: 20462135
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  • 16. Connectivity and Dispersal Patterns of Protected Biogenic Reefs: Implications for the Conservation of Modiolus modiolus (L.) in the Irish Sea.
    Gormley K, Mackenzie C, Robins P, Coscia I, Cassidy A, James J, Hull A, Piertney S, Sanderson W, Porter J.
    PLoS One; 2015 Apr 08; 10(12):e0143337. PubMed ID: 26625263
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  • 17. Dispersal in marine organisms without a pelagic larval phase.
    Winston JE.
    Integr Comp Biol; 2012 Oct 08; 52(4):447-57. PubMed ID: 22505589
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  • 18. Designing connected marine reserves in the face of global warming.
    Álvarez-Romero JG, Munguía-Vega A, Beger M, Del Mar Mancha-Cisneros M, Suárez-Castillo AN, Gurney GG, Pressey RL, Gerber LR, Morzaria-Luna HN, Reyes-Bonilla H, Adams VM, Kolb M, Graham EM, VanDerWal J, Castillo-López A, Hinojosa-Arango G, Petatán-Ramírez D, Moreno-Baez M, Godínez-Reyes CR, Torre J.
    Glob Chang Biol; 2018 Feb 08; 24(2):e671-e691. PubMed ID: 29274104
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  • 19. Accounting for ocean connectivity and hydroclimate in fish recruitment fluctuations within transboundary metapopulations.
    Hidalgo M, Rossi V, Monroy P, Ser-Giacomi E, Hernández-García E, Guijarro B, Massutí E, Alemany F, Jadaud A, Perez JL, Reglero P.
    Ecol Appl; 2019 Jul 08; 29(5):e01913. PubMed ID: 31144784
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  • 20. Local connections and the larval competency strongly influence marine metapopulation persistence.
    Cecino G, Treml EA.
    Ecol Appl; 2021 Jun 08; 31(4):e02302. PubMed ID: 33565673
    [Abstract] [Full Text] [Related]


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