28 results on '"Sissener, Nini H."'
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2. Dietary electrolyte balance of Atlantic salmon (Salmo salar) freshwater feeds : Impact on osmoregulation, mineral metabolism and performance in seawater
3. Increasing dietary levels of the n-3 long-chain PUFA, EPA and DHA, improves the growth, welfare, robustness and fillet quality of Atlantic salmon in sea cages
4. Long-term feeding of Atlantic salmon with varying levels of dietary EPA + DHA alters the mineral status but does not affect the stress responses after mechanical delousing stress
5. Increasing dietary levels of the n -3 long-chain PUFA, EPA and DHA, improves the growth, welfare, robustness and fillet quality of Atlantic salmon in sea cages.
6. 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
7. Increasing dietary n-6 fatty acids while keeping n-3 fatty acids stable decreases EPA in polar lipids of farmed Atlantic salmon (Salmo salar)
8. n-3 Canola oil effectively replaces fish oil as a new safe dietary source of DHA in feed for juvenile Atlantic salmon
9. Recommendations for dietary level of micro-minerals and vitamin D3 to Atlantic salmon (Salmo salar) parr and post-smolt when fed low fish meal diets
10. Increasing dietary n -6 fatty acids while keeping n -3 fatty acids stable decreases EPA in polar lipids of farmed Atlantic salmon (Salmo salar).
11. Correction: Are we what we eat? Changes to the feed fatty acid composition of farmed salmon and its effects through the food chain (doi: 10.1242/jeb.161521)
12. Are we what we eat? Changes to the feed fatty acid composition of farmed salmon and its effects through the food chain
13. Tissue sterol composition in Atlantic salmon (Salmo salarL.) depends on the dietary cholesterol content and on the dietary phytosterol:cholesterol ratio, but not on the dietary phytosterol content
14. Recommendations for dietary level of micro-minerals and vitamin D3 to Atlantic salmon (Salmo salar) parr and post-smolt when fed low fish meal diets.
15. Antioxidant nutrition in Atlantic salmon (Salmo salar) parr and post-smolt, fed diets with high inclusion of plant ingredients and graded levels of micronutrients and selected amino acids
16. Atlantic salmon (Salmo salar) require increased dietary levels of B-vitamins when fed diets with high inclusion of plant based ingredients
17. Atlantic salmon require long-chain n-3 fatty acids for optimal growth throughout the seawater period
18. 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.
19. Cross-generational feeding of Bt (Bacillus thuringiensis)-maize to zebrafish (Danio rerio) showed no adverse effects on the parental or offspring generations
20. Zebrafish (Danio rerio) as a model for investigating dietary toxic effects of deoxynivalenol contamination in aquaculture feeds
21. Effects of oral Bt-maize (MON810) exposure on growth and health parameters in normal and sensitised Atlantic salmon, Salmo salar L.
22. Are apparent negative effects of feeding GM MON810 maize to Atlantic salmon,Salmo salar, caused by confounding factors?
23. Zebrafish (Danio rerio) as a model for investigating the safety of GM feed ingredients (soya and maize); performance, stress response and uptake of dietary DNA sequences
24. Effects of oral Bt-maize (MON810) exposure on growth and health parameters in normal and sensitised Atlantic salmon, Salmo salar L.
25. Are apparent negative effects of feeding GM MON810 maize to Atlantic salmon, Salmo salar, caused by confounding factors?
26. Erucic Acid (22:1n-9) in Fish Feed, Farmed, and Wild Fish and Seafood Products.
27. Recommendations for dietary level of micro-minerals and vitamin D 3 to Atlantic salmon ( Salmo salar ) parr and post-smolt when fed low fish meal diets.
28. Zebrafish ( Danio rerio) as a model for investigating the safety of GM feed ingredients (soya and maize); performance, stress response and uptake of dietary DNA sequences.
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