Zooplankton in Kongsfjorden, Svalbard, is shaped by irregular advection of seawater from the West Spitsbergen Current as well as input of freshwater of glacial and riverine origin. The zooplankton community reflects contributions of Arctic vs. Atlantic water masses in the fjord, and is changing with increasing temperature and declining sea ice. Here, we review zooplankton studies from Kongsfjorden, and present new data from a 20-year time series (1996–2016) of zooplankton abundance/biomass in the fjord based on annual surveys during summer. During the last decade, the marine environment of the West Spitsbergen Shelf and adjacent fjords has undergone changes with increasing temperatures and volume of inflowing Atlantic Water and declining se...
This thesis investigates mesozooplankton abundance, composition and distribution in Svalbard waters ...
The spatial variation in mesozooplankton biomass, abundance and species composition in relation to o...
Climate change has the potential to significantly affect zooplankton communities. Increasing seawate...
Seasonal changes in the zooplankton composition of the glacially influenced Kongsfjorden, Svalbard (...
Zooplankton abundance and community structures were studied in three west Spitsbergen fjords at the ...
Seasonal changes in the zooplankton composition of the glacially influenced Kongsfjorden, Svalbard (...
Svalbard fjords are facing a significant increase in Atlantic water inflow, which influences all eco...
Zooplankton inhabiting the Hornsund and Kongsfjorden fjords on Spitsbergen (Svalbard) were investiga...
International audienceCurrent climate change is significantly modifying Arctic ecosystems and their ...
The retreat of glaciers, melting of permafrost, and increased riverine runoff influence Arctic fjord...
We conducted a year-round mesozooplankton study in the Arctic Kongsfjord from August 1998 until July...
Marine ecosystems in Arctic regions are expected to undergo large changes, driven by sea ice retreat...
Abstract: Zooplankton was investigated at fixed site in 24 hours in Kongsfjorden, a glacial fjord si...
Kongsfjorden is a glacial fjord in the Arctic (Svalbard) that is influenced by both Atlantic and Arc...
Marine ecosystems in Arctic regions are expected to undergo large changes, driven by sea ice retreat...
This thesis investigates mesozooplankton abundance, composition and distribution in Svalbard waters ...
The spatial variation in mesozooplankton biomass, abundance and species composition in relation to o...
Climate change has the potential to significantly affect zooplankton communities. Increasing seawate...
Seasonal changes in the zooplankton composition of the glacially influenced Kongsfjorden, Svalbard (...
Zooplankton abundance and community structures were studied in three west Spitsbergen fjords at the ...
Seasonal changes in the zooplankton composition of the glacially influenced Kongsfjorden, Svalbard (...
Svalbard fjords are facing a significant increase in Atlantic water inflow, which influences all eco...
Zooplankton inhabiting the Hornsund and Kongsfjorden fjords on Spitsbergen (Svalbard) were investiga...
International audienceCurrent climate change is significantly modifying Arctic ecosystems and their ...
The retreat of glaciers, melting of permafrost, and increased riverine runoff influence Arctic fjord...
We conducted a year-round mesozooplankton study in the Arctic Kongsfjord from August 1998 until July...
Marine ecosystems in Arctic regions are expected to undergo large changes, driven by sea ice retreat...
Abstract: Zooplankton was investigated at fixed site in 24 hours in Kongsfjorden, a glacial fjord si...
Kongsfjorden is a glacial fjord in the Arctic (Svalbard) that is influenced by both Atlantic and Arc...
Marine ecosystems in Arctic regions are expected to undergo large changes, driven by sea ice retreat...
This thesis investigates mesozooplankton abundance, composition and distribution in Svalbard waters ...
The spatial variation in mesozooplankton biomass, abundance and species composition in relation to o...
Climate change has the potential to significantly affect zooplankton communities. Increasing seawate...