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Gasterosteus aculeatus body sizes vs. experiment setup after 90 days
This dataset has no description
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Gasterosteus aculeatus body sizes vs. experiment setup after 60 days
This dataset has no description
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Gasterosteus aculeatus body sizes vs. experiment setup
This dataset has no description
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Gasterosteus aculeatus hatching success vs. experiment setup
This dataset has no description
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Gasterosteus aculeatus clutch sizes vs. experiment setup
This dataset has no description
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Gasterosteus aculeatus egg sizes vs. experiment setup
This dataset has no description
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Seawater carbonate chemistry and activity, escape response, and muscle physio...
We exposed threespine stickleback (Gasterosteus aculeatus) to pCO2 of ~ 700 µatm (pH 7.9 representing current levels), ~ 1400 µatm (pH 7.6 representing upwelling events) and ~... -
Seawater carbonate chemistry and changes in gill neuroepithelial cells and mo...
In this study, the neuroepithelial cells (NECs) of marine threespine sticklebacks (Gasterosteus aculeatus) were characterized using immunohistochemistry. We then determined if... -
Seawater carbonate chemistry and growth and reproduction of three-spined Stic...
We investigated the joint effect of warming and acidification on three-spined stickleback (Gasterosteus aculeatus) from the juvenile stage to adulthood, focusing on parameters... -
Seawater carbonate chemistry and genes regulating neurogenesis and neuroplast...
The continuous increase of anthropogenic CO2 in the atmosphere resulting in ocean acidification has been reported to affect brain function in some fishes. During adulthood, cell... -
Altered neurotransmitter function in CO2-exposed stickleback (Gasterosteus ac...
Studies on the consequences of ocean acidification for the marine ecosystem have revealed behavioural changes in coral reef fishes exposed to sustained near-future CO2 levels.... -
Counts and mass of different fish species from beam trawl samples in the East...
Depth, water was calculated as mean from bathymetric depths at start/end of trawl -
Counts and mass of different fish species from beam trawl samples in the East...
Depth, water was calculated as mean from bathymetric depths at start/end of trawl -
Counts and mass of different fish species from beam trawl samples in the East...
Depth, water was calculated as mean from bathymetric depths at start/end of trawl -
Counts and mass of different fish species from beam trawl samples in the East...
Depth, water was calculated as mean from bathymetric depths at start/end of trawl -
Counts and mass of different fish species from beam trawl samples in the East...
Depth, water was calculated as mean from bathymetric depths at start/end of trawl -
Counts and mass of different fish species from beam trawl samples in the East...
Depth, water was calculated as mean from bathymetric depths at start/end of trawl -
Counts and mass of different fish species from beam trawl samples in the East...
Depth, water was calculated as mean from bathymetric depths at start/end of trawl -
Counts and mass of different fish species from beam trawl samples in the East...
Depth, water was calculated as mean from bathymetric depths at start/end of trawl -
Counts and mass of different fish species from beam trawl samples in the East...
Depth, water was calculated as mean from bathymetric depths at start/end of trawl
