In this experimental study, we compared the embryonic respiration rate in air and water of six East African sesarmid species with intertidal, supratidal and arboreal habits, to highlight possible adaptations in embryonic metabolism to their different lifestyles. The embryos of all analysed crabs showed bimodal respiration, but we did not find a trend towards an enhanced embryonic oxygen uptake in air from the intertidal to the arboreal and supratidal species. However, the late-stage embryos of the most land-adapted species, Chiromantes spp., showed an enhanced metabolism when immersed in sea water that we interpreted as an adaptive recovery mechanism to cope with the storage of by-products due to marine-based metabolic pathways during long ...
Paralithodes platypus is a large decapod that inhabits Alaskan and North Pacific waters. Females exh...
Climate change has a strong impact on marine ecosystems, through warming, acidification and hypoxia ...
Background: The transition from water to air is a key event in the evolution of many marine organism...
The efficiency of aerial respiration and the overall dependence on water availability during embryon...
Several decapod groups independently colonized freshwater and terrestrial habitats and became indepe...
The oxygen consumption, ventilation and blood gas transport were investigated in the tropical land c...
Morphological, ecological and physiological adaptations of ovigerous crabs and their developing eggs...
The principle of oxygen limitation of thermal tolerance in ectotherm (OLTT) theorises that the highe...
In land-locked limnic and terrestrial habitats on the island of Jamaica, a guild of sesarmid crabs h...
Rapid climate change has a strong impact on marine ecosystems, through warming, acidification, hypox...
Abstract The Caribbean island of Jamaica is home to a lineage of crabs (Crustacea: Decapoda: Brachyu...
Certain brachyura exhibit homing instincts which appear entirely equivalent to those of purely terre...
Daily rhythms in activity have been reported for marine and terrestrial organisms, including broodin...
Decapod crustaceans such as sesarmid and ocypodid crabs and thalassinid lobsters are conspicuous in ...
Due to the chemico-physical differences between air and water, the transition from aquatic life to t...
Paralithodes platypus is a large decapod that inhabits Alaskan and North Pacific waters. Females exh...
Climate change has a strong impact on marine ecosystems, through warming, acidification and hypoxia ...
Background: The transition from water to air is a key event in the evolution of many marine organism...
The efficiency of aerial respiration and the overall dependence on water availability during embryon...
Several decapod groups independently colonized freshwater and terrestrial habitats and became indepe...
The oxygen consumption, ventilation and blood gas transport were investigated in the tropical land c...
Morphological, ecological and physiological adaptations of ovigerous crabs and their developing eggs...
The principle of oxygen limitation of thermal tolerance in ectotherm (OLTT) theorises that the highe...
In land-locked limnic and terrestrial habitats on the island of Jamaica, a guild of sesarmid crabs h...
Rapid climate change has a strong impact on marine ecosystems, through warming, acidification, hypox...
Abstract The Caribbean island of Jamaica is home to a lineage of crabs (Crustacea: Decapoda: Brachyu...
Certain brachyura exhibit homing instincts which appear entirely equivalent to those of purely terre...
Daily rhythms in activity have been reported for marine and terrestrial organisms, including broodin...
Decapod crustaceans such as sesarmid and ocypodid crabs and thalassinid lobsters are conspicuous in ...
Due to the chemico-physical differences between air and water, the transition from aquatic life to t...
Paralithodes platypus is a large decapod that inhabits Alaskan and North Pacific waters. Females exh...
Climate change has a strong impact on marine ecosystems, through warming, acidification and hypoxia ...
Background: The transition from water to air is a key event in the evolution of many marine organism...