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  • Danish Institute for Fisheries Research  (1)
  • Institut für Meereskunde, Kiel  (1)
  • Springer  (1)
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  • 1
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    Danish Institute for Fisheries Research
    In:  Dana, 10 . pp. 163-177.
    Publication Date: 2018-06-15
    Description: The influence of ambient temperature (2-7°C) and oxygen level (1.0-8.3 ml· l- 1) on the development of Baltic cod eggs was investigated in laboratory experiments. The incubation period, i.e. the time from fertilization to 50% hatching, decreased from 27.5 days at 2°C to 13.0 days at 7°C. Reduced oxygen levels did not significantly affect the time of hatching. Throughout the incubation period highest mortality rates were found during gastrulation and immediately prior to hatching at all tested oxygen levels. Egg survival decreased from around 30% at an oxygen level of 8 ml· 1- 1 to less than 10% at 2 ml· 1- 1 oxygen content. At oxygen concentrations below 2 ml 0 2 • l- 1 the development ceased at a very early stage. Field observations revealed that in the past years Baltic cod eggs were most abundant below the halocline, depth with unfavourable oxygen condition. Besides the effect on egg survival, low environmental oxygen may also affect the initial viability of larvae and consequently their ability to approach the feeding areas close to the sea surface. Thus, the effective reproduction volume of water for cod in the central Baltic may have been smaller than expected and it is suggested that oxygen depletion was the limiting factor determining the reproductive success of cod in this area during the last decade.
    Type: Article , PeerReviewed
    Format: text
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  • 2
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    Institut für Meereskunde, Kiel
    In:  Institut für Meereskunde, Kiel, Kiel, Germany, 38 pp.
    Publication Date: 2015-02-23
    Type: Report , NonPeerReviewed
    Format: text
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  • 3
    Publication Date: 2024-02-07
    Description: Global studies imply that cephalopods have benefited from climate change. However, in most areas, species-specific long-term cephalopod data sets do not exist to support this implication and to analyse the response of cephalopods to environmental changes. Our results illustrate that historical studies, in combination with recent data sets, can fill this gap, enabling descriptions of ecological changes over a long time. We show substantial changes in the cephalopod biodiversity of the North Sea at species level over the past 100 years. Some species, which seemed to migrate into the North Sea only for spawning or foraging in the nineteenth century, occur permanently in the North Sea nowadays. This applies, for example, to the loliginids Loligo forbesii and Alloteuthis subulata. The ommastrephids Todaropsis eblanae and Illex coindetii, now constantly present as well, had been described only as accidental migrants 100 years ago.
    Type: Article , PeerReviewed
    Format: text
    Location Call Number Limitation Availability
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