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18 results on '"Gadus morhua physiology"'

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1. Land use change and coastal water darkening drive synchronous dynamics in phytoplankton and fish phenology on centennial timescales.

2. Otolith "spawning zones" across multiple Atlantic cod populations: Do they accurately record maturity and spawning?

3. Possible adverse impact of contaminants on Atlantic cod population dynamics in coastal ecosystems.

4. Contaminant accumulation and biological responses in Atlantic cod (Gadus morhua) caged at a capped waste disposal site in Kollevåg, Western Norway.

5. Ticket to spawn: Combining economic and genetic data to evaluate the effect of climate and demographic structure on spawning distribution in Atlantic cod.

6. Seasonal dynamics of spatial distributions and overlap between Northeast Arctic cod (Gadus morhua) and capelin (Mallotus villosus) in the Barents Sea.

7. Environmental, population and life-stage plasticity in the visual system of Atlantic cod.

8. Harvest Pressure on Coastal Atlantic Cod (Gadus morhua) from Recreational Fishing Relative to Commercial Fishing Assessed from Tag-Recovery Data.

9. Gene regulation of lipid and phospholipid metabolism in Atlantic cod (Gadus morhua) larvae.

10. Long-term change in a behavioural trait: truncated spawning distribution and demography in Northeast Arctic cod.

11. Deep vision: an in-trawl stereo camera makes a step forward in monitoring the pelagic community.

12. Distinction among North Atlantic cod Gadus morhua stocks by tissue fatty acid profiles.

13. Electrophysiological differences between fshb- and lhb-expressing gonadotropes in primary culture.

14. Molecular genetic analysis of stomach contents reveals wild Atlantic cod feeding on piscine reovirus (PRV) infected Atlantic salmon originating from a commercial fish farm.

15. The evolution of spawning migrations: state dependence and fishing-induced changes.

16. Northeast Arctic cod population persistence in the Lofoten-Barents Sea system under fishing.

17. Spatial anatomy of species survival: effects of predation and climate-driven environmental variability.

18. Muscle fibre number varies with haemoglobin phenotype in Atlantic cod as predicted by the optimal fibre number hypothesis.

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