Traditional evolutionary theory often treats selective forces from the environment and the adaptation of populations as independent of each other, focusing on the effects of natural selection on population dynamics. The fitness landscape is considered to be static, and adaptation is taken as a process of optimisation. In this thesis, I intend to call attention to the interactions between the environment and biological populations, emphasising the feedbacks from the population to the environment that changes the direction, rate and dynamics of the evolutionary process. Two general approaches through which populations affect their environment are studied in this thesis. The first one is via life history and demographic architecture of the pop...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Traditional evolutionary theory often treats selective forces from the environment and the adaptatio...
One major innovation in this thesis project is to build a system that takes into account both aspect...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Classic life history models are often based on optimization algorithms, focusing on the adaptation o...
Classic life history models are often based on optimization algorithms, focusing on the adaptation o...
Classical evolutionary life history concerns questions such as optimal timing of maturation, life sp...
We study the interplay of population growth and evolutionary dynamics using a stochastic model based...
We study the interplay of population growth and evolutionary dynamics using a stochastic model based...
We study the interplay of population growth and evolutionary dynamics using a stochastic model based...
We study the interplay of population growth and evolutionary dynamics using a stochastic model based...
We study the interplay of population growth and evolutionary dynamics using a stochastic model based...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Traditional evolutionary theory often treats selective forces from the environment and the adaptatio...
One major innovation in this thesis project is to build a system that takes into account both aspect...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Classic life history models are often based on optimization algorithms, focusing on the adaptation o...
Classic life history models are often based on optimization algorithms, focusing on the adaptation o...
Classical evolutionary life history concerns questions such as optimal timing of maturation, life sp...
We study the interplay of population growth and evolutionary dynamics using a stochastic model based...
We study the interplay of population growth and evolutionary dynamics using a stochastic model based...
We study the interplay of population growth and evolutionary dynamics using a stochastic model based...
We study the interplay of population growth and evolutionary dynamics using a stochastic model based...
We study the interplay of population growth and evolutionary dynamics using a stochastic model based...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...
Ecological systems are complex assemblies of large numbers of individuals, interacting competitively...