Understanding the causes of temporal variation in abundance is a fundamental question within population ecology, and one with a number of implications for how we think about and manage our natural systems. In particular, there is much interest in the role of climatic variation, or weather, in determining population processes, due both to the observation that these variables can be substantially involved in regulating demographic and population processes, as well as the current context of climate change, which is forecast to become a major determinant of population change over the course of 21 st century. In this thesis, I address the role of weather in determining variation in abundance of European birds and butterflies, using large-scale m...
Populations at the high latitude edge of species’ geographical ranges are thought to show larger int...
Populations at the high latitude edge of species’ geographical ranges are thought to show larger int...
1. Phenological change is the most widely documented biological impact of climate change, but shows ...
Understanding the causes of temporal variation in abundance is a fundamental question within populat...
Although the effects of climate change on biodiversity are increasingly evident by the shifts in spe...
Although the effects of climate change on biodiversity are increasingly evident by the shifts in spe...
Aim: The aim was to assess the sensitivity of butterfly population dynamics to variation in weather ...
The climatic preferences of the species determine to a large extent their response to climate change...
The climatic preferences of the species determine to a large extent their response to climate change...
Aim: The aim was to assess the sensitivity of butterfly population dynamics to variation in weather ...
Aim The aim was to assess the sensitivity of butterfly population dynamics to variation in weathe...
The climatic preferences of the species determine to a large extent their response to climate change...
We present a model of butterfly abundance on transects in England. The model indicates a significant...
Climate change has caused widespread shifts in species’ phenology, but the consequences for populati...
Climate change has caused widespread shifts in species’ phenology, but the consequences for populati...
Populations at the high latitude edge of species’ geographical ranges are thought to show larger int...
Populations at the high latitude edge of species’ geographical ranges are thought to show larger int...
1. Phenological change is the most widely documented biological impact of climate change, but shows ...
Understanding the causes of temporal variation in abundance is a fundamental question within populat...
Although the effects of climate change on biodiversity are increasingly evident by the shifts in spe...
Although the effects of climate change on biodiversity are increasingly evident by the shifts in spe...
Aim: The aim was to assess the sensitivity of butterfly population dynamics to variation in weather ...
The climatic preferences of the species determine to a large extent their response to climate change...
The climatic preferences of the species determine to a large extent their response to climate change...
Aim: The aim was to assess the sensitivity of butterfly population dynamics to variation in weather ...
Aim The aim was to assess the sensitivity of butterfly population dynamics to variation in weathe...
The climatic preferences of the species determine to a large extent their response to climate change...
We present a model of butterfly abundance on transects in England. The model indicates a significant...
Climate change has caused widespread shifts in species’ phenology, but the consequences for populati...
Climate change has caused widespread shifts in species’ phenology, but the consequences for populati...
Populations at the high latitude edge of species’ geographical ranges are thought to show larger int...
Populations at the high latitude edge of species’ geographical ranges are thought to show larger int...
1. Phenological change is the most widely documented biological impact of climate change, but shows ...