Vitenskapelig artikkel
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Sahar Sartipiyarahmadi; Nina Liland; Antony Jesu Prabhu Philip
et al. (2026). Effects of dietary fermented sugar kelp (Saccharina latissima) on intestinal histology, antioxidant capacity, and immune-related biomarkers of post-smolt Atlantic salmon (Salmo salar). (ekstern lenke)
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Nina Sylvia Liland; Pedro Araujo; X.X. Xu
et al. (2021). A meta-analysis on the nutritional value of insects in aquafeeds. (ekstern lenke)
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Ikram Belghit; Rune Waagbø; Erik-Jan Lock
et al. (2018). Insect-based diets high in lauric acid reduce liver lipids in freshwater Atlantic salmon. (ekstern lenke)
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Bjarne Hatlen; Jan Vidar Jakobsen; V. Crampton
et al. (2015). Growth, feed utilization and endocrine responses in Atlantic salmon (Salmo salar) fed diets added poultry by-product meal and blood meal in combination with poultry oil. (ekstern lenke)
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Nini Sissener; Bente Elisabeth Torstensen; Matthew A.G. Owen
et al. (2017). Temperature modulates liver lipid accumulation in Atlantic salmon (Salmo salar L.) fed low dietary levels of long-chain n-3 fatty acids. (ekstern lenke)
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Sahar Sartipiyarahmadi; Ingvild Lunderød Øverbø; Benjamin Costas
et al. (2026). Effects of dietary fermented sugar kelp (Saccharina latissima) on intestinal histology, antioxidant capacity, and immune-related biomarkers of post-smolt Atlantic salmon (Salmo salar). (ekstern lenke)
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Hundal Bjørg Kristine; Nini Sissener; Jannicke Vigen
et al. (2025). EPA alone cannot sustain the requirement for EPA + DHA in Atlantic salmon (Salmo Salar L.): Insights into the role of EPA:DHA ratio and varying EPA levels on growth and tissue fatty acid composition. (ekstern lenke)
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Nina Liland; Ivar Rønnestad; Marina Azevedo
et al. (2024). Dataset on the performance of Atlantic salmon (Salmo salar) reared at different dissolved oxygen levels under experimental conditions. (ekstern lenke)
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Michel van Spankeren; Nathaniel Sibinga; Øyvind Hagerup Reinshol
et al. (2019). A single meal containing phytosterols does not affect the uptake or tissue distribution of cholesterol in zebrafish (Danio rerio). (ekstern lenke)
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Nina Sylvia Liland; Irene Biancarosa; Pedro Araujo
et al. (2017). Modulation of nutrient composition of black soldier fly (Hermetia illucens) larvae by feeding seaweed-enriched media. (ekstern lenke)
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Ikram Belghit; Nina Sylvia Liland; Anne-Katrine Lundebye
et al. (2024). Aquaculture sludge as feed for black soldier fly: Transfer of chemical and biological contaminants and nutrients. (ekstern lenke)
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Nina Liland; Floriana Lai; Alessandro Sicuro
et al. (2025). On-growing Atlantic salmon (Salmo salar L.) acclimate behaviourally and physiologically to chronic hypoxia, but exhibit reduced feed intake, growth and lipid retention. (ekstern lenke)
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Ikram Belghit; Nina Sylvia Liland; Petter Gjesdal
et al. (2019). Black soldier fly larvae meal can replace fish meal in diets of sea-water phase Atlantic salmon (Salmo salar). (ekstern lenke)
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Irene Biancarosa; Nina Sylvia Liland; Nicola Day
et al. (2018). The chemical composition of two seaweed flies (Coelopa frigida and Coelopa pilipes) reared in the laboratory. (ekstern lenke)
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Mohammad Madani Ibrahim; Lene Secher Myrmel; Ulrike Liisberg
et al. (2013). Intake of Farmed Atlantic Salmon Fed Soybean Oil Increases Insulin Resistance and Hepatic Lipid Accumulation in Mice. (ekstern lenke)
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Nina Sylvia Liland; Karin Pittman; Paul Whatmore
et al. (2018). Fucosterol causes small changes in lipid storage and brassicasterol affects some markers of lipid metabolism in Atlantic salmon hepatocytes. (ekstern lenke)
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Irene Biancarosa; Nina Sylvia Liland; Daan Biemans
et al. (2017). Uptake of heavy metals and arsenic in black
soldier fly (Hermetia illucens) larvae grown on
seaweed-enriched media. (ekstern lenke)
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Nina Sylvia Liland; Bjarne Hatlen; Harald Rune Takle
et al. (2015). Including processed poultry and porcine by-products in diets high in plant ingredients reduced liver TAG in Atlantic salmon, Salmo salar L.. (ekstern lenke)
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Nina Sylvia Liland; Einar Nesse Johnsen; Hege Hellberg
et al. (2018). Effects of dietary vegetable oils and varying dietary EPA and DHA levels on intestinal lipid accumulations in Atlantic salmon. (ekstern lenke)
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Gopika Radhakrishnan; Antony Jesu Prabhu Philip; Christian Caimi
et al. (2024). Evaluating the fillet quality and sensory characteristics of Atlantic salmon (Salmo salar) fed black soldier fly larvae meal for whole production cycle in sea cages. (ekstern lenke)
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Nina Sylvia Liland; Grethe Rosenlund; Marc Berntssen
et al. (2013). Net production of Atlantic salmon (FIFO, Fish in Fish out < 1) with dietary plant proteins and vegetable oils. (ekstern lenke)
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Chandrasekar Selvam; Mark Darryn Powell; Nina Sylvia Liland
et al. (2021). Impact of dietary level and ratio of n-6 and n-3 fatty acids on disease progression and mRNA expression of immune and inflammatory markers in Atlantic salmon (Salmo salar) challenged with Paramoeba perurans. (ekstern lenke)
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Oda Kvalsvik Stenberg; Elisabeth Holen; Luisa Piemontese
et al. (2019). Effect of dietary replacement of fish meal with insect meal on in vitro bacterial and viral induced gene response in Atlantic salmon (Salmo salar) head kidney leukocytes. (ekstern lenke)
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Nini Sissener; Grethe Rosenlund; Ingunn Stubhaug
et al. (2018). Tissue sterol composition in Atlantic salmon (Salmo salar L.) depends on the dietary cholesterol content and on the dietary phytosterol:cholesterol ratio, but not on the dietary phytosterol content. (ekstern lenke)
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Bjørg Kristine Hundal; Nina Sylvia Liland; Grethe Rosenlund
et al. (2021). Increasing the dietary n-6/n-3 ratio alters the hepatic eicosanoid production after acute stress in Atlantic salmon (Salmo salar). (ekstern lenke)
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Irene Biancarosa; Marit Espe; Christian Guido Bruckner
et al. (2016). Amino acid composition, protein content, and nitrogen-to-protein conversion factors of 21 seaweed species from Norwegian waters. (ekstern lenke)
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Bjørg Kristine Hundal; Nina Sylvia Liland; Grethe Rosenlund
et al. (2020). Increasing dietary n-6 FA while keeping n-3 FA stable decreases EPA in polar lipids of farmed Atlantic salmon (Salmo salar). (ekstern lenke)
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Ikram Belghit; Josef Daiel Rasinger; Svenja Heesch
et al. (2017). In-depth metabolic profiling of marine macroalgae confirms strong biochemical differences between brown, red and green algae. (ekstern lenke)
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Nina Sylvia Liland; Adam C. Simonsen; Lars Duelund
et al. (2014). Polyaromatic hydrocarbons do not disturb liquid-liquid phase coexistence, but increase the fluidity of model membranes. (ekstern lenke)
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Arne Malzahn; Veronika Sele; Ikram Belghit
et al. (2024). Transfer and bioaccumulation of chemical and biological contaminants in the marine polychaete Hediste diversicolor (OF müller 1776) when reared on salmon aquaculture sludge. (ekstern lenke)
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Gopika Radhakrishnan; Marta Sofia Silva; Nina Sylvia Liland
et al. (2024). Does the processing of black soldier fly larvae meal affect the amino acid solubility in Atlantic salmon (Salmo salar)?. (ekstern lenke)
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Marina Linhares Azevedo; Tomé Silva; Filipe Soares
et al. (2025). Improving feed intake predictions in aquaculture: Integrating dissolved oxygen, body weight, and temperature for Atlantic salmon and meagre. (ekstern lenke)
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Nina Sylvia Liland; Marit Espe; Grethe Rosenlund
et al. (2013). High levels of dietary phytosterols affect lipid metabolism and increase liver and plasma TAG in Atlantic salmon (Salmo salar L.). (ekstern lenke)
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Monica Sanden; Nina Sylvia Liland; Øystein Sæle
et al. (2016). Minor lipid metabolic perturbations in the liver of Atlantic salmon (Salmo salar L.) caused by suboptimal dietary content of nutrients from fish oil. (ekstern lenke)
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Irene Biancarosa; Ikram Belghit; Christian Guido Bruckner
et al. (2018). Chemical characterization of 21 species of marine macroalgae common in Norwegian waters: benefits of and limitations to their potential use in food and feed. (ekstern lenke)
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Xinxin Xu; Hong Ji; Ikram Belghit
et al. (2021). Effects of black soldier fly oil rich in n-3 HUFA on growth performance, metabolism and health response of juvenile mirror carp (Cyprinus carpio var. specularis). (ekstern lenke)
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Sylvie L. Benestad; Linh Dinh Thoai Tran; Arne Malzahn
et al. (2024). Retention of prions in the polychaete Hediste diversicolor and black soldier fly, Hermetia illucens, larvae after short-term experimental immersion and feeding with brain homogenate from scrapie infected sheep. (ekstern lenke)
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Veronika Sele; Aasim Musa Mohamed Ali; Nina Sylvia Liland
et al. (2024). Characterization of nutrients and contaminants in fish sludge from Atlantic salmon (Salmo salar L.) production sites - A future resource. (ekstern lenke)
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Lisa Kolden Midtbø; Mohammad Madani Ibrahim; Lene Secher Myrmel
et al. (2013). Intake of farmed atlantic salmon fed soybean oil increases insulin resistance and hepatic lipid accumulation in mice. (ekstern lenke)
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Nina Sylvia Liland; Mette Sørensen; Ikram Belghit
et al. (2023). Closing the gap – producing black soldier fly larvae on aquaculture side streams. (ekstern lenke)
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Ikram Belghit; Nina Sylvia Liland; Rune Waagbø
et al. (2018). Potential of insect-based diets for Atlantic salmon (Salmo salar). (ekstern lenke)
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Nini Sissener; Nina Sylvia Liland; Elisabeth Holen
et al. (2017). Phytosterols are not involved in the development of fatty liver in plant oil fed Atlantic salmon (Salmo salar) at high or low water temperature. (ekstern lenke)
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Gopika Radhakrishnan; Nina Sylvia Liland; Marianne Wethe Koch
et al. (2023). Evaluation of black soldier fly larvae meal as a functional feed ingredient in Atlantic salmon (Salmo salar) under farm-like conditions. (ekstern lenke)
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Bjørg Kristine Hundal; Esmail Lutfi Royo; Trygve Sigholt
et al. (2022). A Piece of the Puzzle—Possible Mechanisms for Why Low Dietary EPA and DHA Cause Hepatic Lipid Accumulation in Atlantic Salmon (Salmo salar). (ekstern lenke)
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