Early life stages of marine crustaceans respond sensitively to elevated seawater PCO2. However, the underlying physiological mechanisms have not been studied well. We therefore investigated the effects of elevated seawater PCO2 on oxygen consumption, dry weight, elemental composition, median developmental time (MDT) and mortality in zoea I larvae of the spider crab Hyas araneus (Svalbard 79°N/11°E; collection, May 2009; hatch, December 2009). At the time of moulting, oxygen consumption rate had reached a steady state level under control conditions. In contrast, elevated seawater PCO2 caused the metabolic rate to rise continuously leading to a maximum 1.5-fold increase beyond control level a few days before moulting into the second stage (zo...
Future scenarios for the oceans project combined developments of CO2 accumulation and global warming...
Anthropogenic CO2 emissions are acidifying the world's oceans. A growing body of evidence is showing...
Anthropogenic CO2 emissions are acidifying the world's oceans. A growing body of evidence demonstrat...
Early life stages of marine crustaceans respond sensitively to elevated seawater P CO 2 . However, t...
Sensitivity of marine crustaceans to anthropogenic CO2 emissions and the associated acidification of...
Sensitivity of marine crustaceans to anthropogenic CO2 emissions and the associated acidification of...
The present thesis investigated the effects of elevated seawater PCO2 and temperature on different l...
The present thesis investigated the effects of elevated seawater PCO2 and temperature on different l...
Exposure to elevated seawater PCO2 limits the thermal tolerance of crustaceans but the underlying me...
The present study evaluated the effects of exposure to different target pCO2 levels: control (C: 370...
Bentho-pelagic life cycles are the dominant reproductive strategy in marine invertebrates, providing...
Future climate change is predicted to alter the physical characteristics of oceans and estuaries, in...
The present study evaluated the effects of exposure to different target pCO2 levels: control (C: 370...
Future climate change is predicted to alter the physical characteristics of oceans and estuaries, in...
Bentho-pelagic life cycles are the dominant reproductive strategy in marine invertebrates, providing...
Future scenarios for the oceans project combined developments of CO2 accumulation and global warming...
Anthropogenic CO2 emissions are acidifying the world's oceans. A growing body of evidence is showing...
Anthropogenic CO2 emissions are acidifying the world's oceans. A growing body of evidence demonstrat...
Early life stages of marine crustaceans respond sensitively to elevated seawater P CO 2 . However, t...
Sensitivity of marine crustaceans to anthropogenic CO2 emissions and the associated acidification of...
Sensitivity of marine crustaceans to anthropogenic CO2 emissions and the associated acidification of...
The present thesis investigated the effects of elevated seawater PCO2 and temperature on different l...
The present thesis investigated the effects of elevated seawater PCO2 and temperature on different l...
Exposure to elevated seawater PCO2 limits the thermal tolerance of crustaceans but the underlying me...
The present study evaluated the effects of exposure to different target pCO2 levels: control (C: 370...
Bentho-pelagic life cycles are the dominant reproductive strategy in marine invertebrates, providing...
Future climate change is predicted to alter the physical characteristics of oceans and estuaries, in...
The present study evaluated the effects of exposure to different target pCO2 levels: control (C: 370...
Future climate change is predicted to alter the physical characteristics of oceans and estuaries, in...
Bentho-pelagic life cycles are the dominant reproductive strategy in marine invertebrates, providing...
Future scenarios for the oceans project combined developments of CO2 accumulation and global warming...
Anthropogenic CO2 emissions are acidifying the world's oceans. A growing body of evidence is showing...
Anthropogenic CO2 emissions are acidifying the world's oceans. A growing body of evidence demonstrat...