The non-breeding season presents significant energetic challenges to birds that breed in temperate or polar regions, with clear implications for population dynamics. In seabirds, the environmental conditions at non-breeding sites drive food availability and the energetic cost of regulatory processes, resulting in variation in diet, behaviour and energetics; however, very few studies have attempted to understand if and how these aspects vary between populations. We investigated whether non-breeding location influenced diet, behaviour and energetics in the common guillemot Uria aalge. We studied guillemots from four UK breeding colonies, two located on the west coast of Scotland and two on the east. We quantified non-breeding distribution, fo...
1.Seabirds that consume more than one prey type may adjust their foraging to maintain provisioning r...
Previous studies have shown how endothermic organisms have a range of environmental temperatures in ...
1. Climate warming can reduce food resources for animal populations. In species exhibiting parental ...
The non-breeding season presents significant energetic challenges to birds that breed in temperate o...
For animals that breed in temperate and polar regions, the highest levels of mortality typically occ...
During their annual cycles, animals face a series of energetic challenges as they prioritise differe...
During their annual cycles, animals face a series of energetic challenges as they prioritise differe...
The ability of individual animals to balance their energy budgets throughout the annual cycle is imp...
Energy is the central currency that drives biological processes at every hierarchical level of life ...
International audienceAt the onset of winter, warm-blooded animals inhabiting seasonal environments ...
Many pelagic seabirds moult their feathers while at sea, which is an energetically costly behaviour....
The critical endangered Common and Brünnich guillemot are exhibiting contrasting population trends i...
Migration is a widespread strategy for escaping unfavourable conditions during winter, but the exten...
Identifying drivers of population trends in migratory species is difficult, as they can face many st...
International audienceStudying the energetics of marine top predators such as seabirds is essential ...
1.Seabirds that consume more than one prey type may adjust their foraging to maintain provisioning r...
Previous studies have shown how endothermic organisms have a range of environmental temperatures in ...
1. Climate warming can reduce food resources for animal populations. In species exhibiting parental ...
The non-breeding season presents significant energetic challenges to birds that breed in temperate o...
For animals that breed in temperate and polar regions, the highest levels of mortality typically occ...
During their annual cycles, animals face a series of energetic challenges as they prioritise differe...
During their annual cycles, animals face a series of energetic challenges as they prioritise differe...
The ability of individual animals to balance their energy budgets throughout the annual cycle is imp...
Energy is the central currency that drives biological processes at every hierarchical level of life ...
International audienceAt the onset of winter, warm-blooded animals inhabiting seasonal environments ...
Many pelagic seabirds moult their feathers while at sea, which is an energetically costly behaviour....
The critical endangered Common and Brünnich guillemot are exhibiting contrasting population trends i...
Migration is a widespread strategy for escaping unfavourable conditions during winter, but the exten...
Identifying drivers of population trends in migratory species is difficult, as they can face many st...
International audienceStudying the energetics of marine top predators such as seabirds is essential ...
1.Seabirds that consume more than one prey type may adjust their foraging to maintain provisioning r...
Previous studies have shown how endothermic organisms have a range of environmental temperatures in ...
1. Climate warming can reduce food resources for animal populations. In species exhibiting parental ...