The mean conditional fixation time of a mutant is an important measure of stochastic population dynamics, widely studied in ecology and evolution. Here, we investigate the effect of spatial randomness on the mean conditional fixation time of mutants in a constant population of cells, N. Specifically, we assume that fitness values of wild type cells and mutants at different locations come from given probability distributions and do not change in time. We study spatial arrangements of cells on regular graphs with different degrees, from the circle to the complete graph, and vary assumptions on the fitness probability distributions. Some examples include: identical probability distributions for wild types and mutants; cases when only one of th...
We analyze evolutionary dynamics on graphs, where the nodes represent individuals of a population. T...
In evolutionary dynamics, the probability that a mutation spreads through the whole population, havi...
There is a growing interest in the study of evolutionary dynamics on populations with some non-homog...
Understanding how environmental variability (or randomness) affects evolution is of fundamental impo...
Fixation probability, the probability that the frequency of a newly arising mutation in a population...
Evolutionary dynamics on graphs can lead to many interesting and counterintuitive findings. We study...
A population's spatial structure affects the rate of genetic change and the outcome of natural selec...
We study the spreading of a single mutant in graph-structured populations with a birth-death update ...
Evolutionary graph theory is the study of how spatial population structure affects evolutionary proc...
We study how the outcome of evolutionary dynamics on graphs depends on a randomness on the graph str...
The likelihood that a mutant fixates in the wild population, i.e., fixation probability, has been in...
Abstract: The stage of evolution is the population of reproducing individuals. The structure of the ...
For a long time, model populations were generally assumed to be well-mixed. Recently however there h...
In this work we discuss a spatial evolutionary model for a heterogeneous cancer cell population. We ...
Natural selection is usually studied between mutants that differ in reproductive rate, but are subje...
We analyze evolutionary dynamics on graphs, where the nodes represent individuals of a population. T...
In evolutionary dynamics, the probability that a mutation spreads through the whole population, havi...
There is a growing interest in the study of evolutionary dynamics on populations with some non-homog...
Understanding how environmental variability (or randomness) affects evolution is of fundamental impo...
Fixation probability, the probability that the frequency of a newly arising mutation in a population...
Evolutionary dynamics on graphs can lead to many interesting and counterintuitive findings. We study...
A population's spatial structure affects the rate of genetic change and the outcome of natural selec...
We study the spreading of a single mutant in graph-structured populations with a birth-death update ...
Evolutionary graph theory is the study of how spatial population structure affects evolutionary proc...
We study how the outcome of evolutionary dynamics on graphs depends on a randomness on the graph str...
The likelihood that a mutant fixates in the wild population, i.e., fixation probability, has been in...
Abstract: The stage of evolution is the population of reproducing individuals. The structure of the ...
For a long time, model populations were generally assumed to be well-mixed. Recently however there h...
In this work we discuss a spatial evolutionary model for a heterogeneous cancer cell population. We ...
Natural selection is usually studied between mutants that differ in reproductive rate, but are subje...
We analyze evolutionary dynamics on graphs, where the nodes represent individuals of a population. T...
In evolutionary dynamics, the probability that a mutation spreads through the whole population, havi...
There is a growing interest in the study of evolutionary dynamics on populations with some non-homog...