Search Results - "Skogen, Morten D."
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Future ecosystem changes in the Northeast Atlantic: a comparison between a global and a regional model system
Published in ICES journal of marine science (01-12-2018)“…Abstract The biogeochemistry from a global climate model (Norwegian Earth System Model) has been compared with results from a regional model (NORWECOM.E2E),…”
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Fish Assemblages of a Sub-Arctic Fjord Show Early Signals of Climate Change Response Contrary to the Benthic Assemblages
Published in Frontiers in Marine Science (03-03-2022)“…Arctic benthic ecosystems are facing high-speed environmental changes, such as decreased sea ice coverage, increased temperature and precipitations, as well as…”
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3
Two Decades of Match-Mismatch in Northeast Arctic Cod – Feeding Conditions and Survival
Published in Frontiers in Marine Science (09-02-2022)“…The successful recruitment of Northeast Arctic (NEA) cod is thought to depend on sufficient and suitable prey for the newly hatched larvae, in particular the…”
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The effect of a warmer climate on the salmon lice infection pressure from Norwegian aquaculture
Published in ICES journal of marine science (01-08-2021)“…Abstract Climate change can hamper sustainable growth in the aquaculture industry by amplifying and adding to other environmental challenges. In Norway, salmon…”
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Transport of North Sea cod larvae into the Skagerrak coastal populations
Published in Proceedings of the Royal Society. B, Biological sciences (07-07-2004)“…The Atlantic cod (…”
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Prediction of the salmon lice infestation pressure in a Norwegian fjord
Published in ICES journal of marine science (01-03-2020)“…Abstract A further growth in the Norwegian aquaculture industry might potentially be hampered by the conclusion that it is not environmentally sustainable. As…”
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7
Ocean climate and hydrodynamics drive decadal shifts in Northeast Atlantic dinoflagellates
Published in Global change biology (01-02-2024)“…The abundance of large marine dinoflagellates has declined in the North Sea since 1958. Although hypotheses have been proposed to explain this diminution…”
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Ecological and genetic impact of Atlantic cod larval drift in the Skagerrak
Published in Proceedings of the Royal Society. B, Biological sciences (07-05-2006)“…We evaluate the hypothesis that Atlantic cod larvae are passively transported by sea currents from off-shore spawning areas to settle in coastal waters, a…”
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Barents Sea plankton production and controlling factors in a fluctuating climate
Published in ICES journal of marine science (01-09-2021)“…Abstract The Barents Sea and its marine ecosystem is exposed to many different processes related to the seasonal light variability, formation and melting of…”
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The combined effects of warming, ocean acidification, and fishing on the northeast Atlantic cod ( Gadus morhua ) in the Barents Sea
Published in ICES journal of marine science (05-07-2024)“…Abstract With a biomass of ∼4 million tonnes, and annual catches of 900 000 tonnes, the northeast Atlantic (NEA) cod stock in the Barents Sea is the world’s…”
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A multi‐scenario analysis of climate impacts on plankton and fish stocks in northern seas
Published in Fish and fisheries (Oxford, England) (01-07-2024)“…Globally, impacts of climate change display an increasingly negative development of marine biomass, but there is large regional variability. In this analysis…”
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Assessing the state of the Barents Sea using indicators: how, when, and where?
Published in ICES journal of marine science (01-11-2021)“…Abstract Two end-to-end ecosystem models, NORWECOM.E2E and NoBa Atlantis, have been used to explore a selection of indicators from the Barents Sea Management…”
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A standard protocol for describing the evaluation of ecological models
Published in Ecological modelling (01-09-2022)“…•Complex ecological models are increasingly used for societal purpose.•It is challenging for users to appraise the performance of model applications.•The OPE…”
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Variation in life-history traits of European anchovy along a latitudinal gradient: a bioenergetics modelling approach
Published in Marine ecology. Progress series (Halstenbek) (16-05-2019)“…Anchovy Engraulis encrasicolus distribution in European waters spans from the Mediterranean Sea to the North Sea, and is expected to expand further north with…”
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Evaluating acoustic-trawl survey strategies using an end-to-end ecosystem model
Published in ICES journal of marine science (01-12-2020)“…Abstract Fisheries independent surveys support science and fisheries assessments but are costly. Evaluating the efficacy of a survey before initiating it could…”
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Model validation: Issues regarding comparisons of point measurements and high-resolution modeling results
Published in Ocean modelling (Oxford) (01-10-2016)“…•Comparison between a high resolution model and temperature observations.•Temporal variability not resolved in observations.•Suggested acceptance level from…”
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Clupeoid larval growth and plankton production in the Benguela upwelling system
Published in Fisheries oceanography (01-01-2005)“…Upwelling is a characteristic feature of the Benguela system. Strong upwelling leads to high primary production, which, in turn, supports large biomass of…”
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A North Sea and Baltic Sea Model Ensemble Eutrophication Assessment
Published in Ambio (01-02-2010)“…A method to combine observations and an ensemble of ecological models is suggested to produce a eutrophication assessment. Using threshold values and…”
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Phytoplankton production and growth regulation in the Subarctic North Atlantic: A comparative study of the Labrador Sea-Labrador/Newfoundland shelves and Barents/Norwegian/Greenland seas and shelves
Published in Progress in oceanography (01-07-2013)“…A study was made of phytoplankton (distribution, phenology, physiology, productivity and community composition) and environment properties that influence their…”
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Responses of summer phytoplankton biomass to changes in top-down forcing: Insights from comparative modelling
Published in Ecological modelling (24-05-2018)“…•We applied the same change in top-down forcing to different 3D ecosystem models.•Phytoplankton showed dampened responses compared to the highest trophic…”
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