Behavioural impairment following exposure to ocean acidification-relevant CO2 levels has been noted in a broad array of taxa. The underlying cause of these disruptions is thought to stem from alterations of ion gradients ([HCO3]−/Cl−) across neuronal cell membranes that occur as a consequence of maintaining pH homeostasis via the accumulation of [HCO3]−. While behavioural impacts are widely documented, few studies have measured acid–base parameters in species showing behavioural disruptions. In addition, current studies examining mechanisms lack resolution in targeting specific neural pathways corresponding to a given behaviour. With these considerations in mind, acid–base parameters and behaviour were measured in a model organism used for ...
There are significant questions about how the physiology and behavior of marine fishes will respond ...
Ocean acidification, recognized as a major threat to marine ecosystems, has developed into one of th...
Background: Exposure to future ocean acidification scenarios may alter the behaviour of marine teleo...
Behavioural impairment following exposure to ocean acidification-relevant CO2 levels has been noted ...
Experimental exposure to ocean and freshwater acidification affects the behaviour of multiple aquati...
Neurosensory and behavioural disruptions are some of the most consistently reported responses upon e...
Considered a major environmental concern, ocean acidification has induced a recent research boost in...
Elevated carbon dioxide (CO2) levels can alter ecologically important behaviors in a range of marine...
Recent studies have shown that the behaviour and development of coral reef fish larvae is hampered b...
Ocean acidification can impair an animal’s physiological performance and energetically demanding act...
Increased levels of dissolved carbon dioxide (CO2) drive ocean acidification and have been predicted...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
Predicted future CO2 levels have been found to alter sensory responses and behaviour of marine fishe...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
There are significant questions about how the physiology and behavior of marine fishes will respond ...
Ocean acidification, recognized as a major threat to marine ecosystems, has developed into one of th...
Background: Exposure to future ocean acidification scenarios may alter the behaviour of marine teleo...
Behavioural impairment following exposure to ocean acidification-relevant CO2 levels has been noted ...
Experimental exposure to ocean and freshwater acidification affects the behaviour of multiple aquati...
Neurosensory and behavioural disruptions are some of the most consistently reported responses upon e...
Considered a major environmental concern, ocean acidification has induced a recent research boost in...
Elevated carbon dioxide (CO2) levels can alter ecologically important behaviors in a range of marine...
Recent studies have shown that the behaviour and development of coral reef fish larvae is hampered b...
Ocean acidification can impair an animal’s physiological performance and energetically demanding act...
Increased levels of dissolved carbon dioxide (CO2) drive ocean acidification and have been predicted...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
Predicted future CO2 levels have been found to alter sensory responses and behaviour of marine fishe...
Ocean acidification has the potential to cause dramatic changes in marine ecosystems. Larval damself...
There are significant questions about how the physiology and behavior of marine fishes will respond ...
Ocean acidification, recognized as a major threat to marine ecosystems, has developed into one of th...
Background: Exposure to future ocean acidification scenarios may alter the behaviour of marine teleo...