Frequency dependent selection and demographic fluctuations play important roles in evolutionary and ecological processes. Under frequency dependent selection, the average fitness of the population may increase or decrease based on interactions between individuals within the population. This should be reflected in fluctuations of the population size even in constant environments. Here, we propose a stochastic model, which naturally combines these two evolutionary ingredients by assuming frequency dependent competition between different types in an individual-based model. In contrast to previous game theoretic models, the carrying capacity of the population and thus the population size is determined by pairwise competition of individuals medi...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
We present a general framework to describe the evolutionary dynamics of an arbitrary number of types...
We present a general framework to describe the evolutionary dynamics of an arbitrary number of types...
Frequency-dependent selection and demographic fluctuations play important roles in evolutionary and ...
Frequency dependent selection and demographic fluctuations play important roles in evolutionary and ...
In population genetics, fixation of traits in a demographically changing population under frequency-...
Existing theoretical models of evolution focus on the relative fitness advantages of different mutan...
Existing theoretical models of evolution focus on the relative fitness advantages of different mutan...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Existing theoretical models of evolution focus on the relative fitness advantages of different mutan...
Existing theoretical models of evolution focus on the relative fitness advantages of different mutan...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
We present a general framework to describe the evolutionary dynamics of an arbitrary number of types...
We present a general framework to describe the evolutionary dynamics of an arbitrary number of types...
Frequency-dependent selection and demographic fluctuations play important roles in evolutionary and ...
Frequency dependent selection and demographic fluctuations play important roles in evolutionary and ...
In population genetics, fixation of traits in a demographically changing population under frequency-...
Existing theoretical models of evolution focus on the relative fitness advantages of different mutan...
Existing theoretical models of evolution focus on the relative fitness advantages of different mutan...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Existing theoretical models of evolution focus on the relative fitness advantages of different mutan...
Existing theoretical models of evolution focus on the relative fitness advantages of different mutan...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
Traditionally, frequency dependent evolutionary dynamics is described by deterministic replicator dy...
We present a general framework to describe the evolutionary dynamics of an arbitrary number of types...
We present a general framework to describe the evolutionary dynamics of an arbitrary number of types...