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Volumn 68, Issue 6, 2011, Pages 1008-1018

Integrating ecophysiology and plankton dynamics into projected maximum fisheries catch potential under climate change in the Northeast Atlantic

Author keywords

biogeochemistry; climate change; fisheries catch; Northeast Atlantic; ocean acidification; oxygen; range shift

Indexed keywords

ACIDIFICATION; BIOGEOCHEMICAL CYCLE; BIOGEOCHEMISTRY; CATCH COMPOSITION; CLIMATE CHANGE; COMMUNITY STRUCTURE; DEMERSAL FISH; ECOPHYSIOLOGY; ENVIRONMENTAL FACTOR; FISHERY PRODUCTION; GROWTH; INTEGRATED APPROACH; INVERTEBRATE; MARINE ECOSYSTEM; NOAA SATELLITE; NUMERICAL MODEL; OXYGEN; PLANKTON; POPULATION DISTRIBUTION; POPULATION DYNAMICS; SENSITIVITY ANALYSIS; SPECIES DIVERSITY;

EID: 79959491868     PISSN: 10543139     EISSN: 10959289     Source Type: Journal    
DOI: 10.1093/icesjms/fsr012     Document Type: Article
Times cited : (233)

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