International audienceThis article is concerned with the long-time behavior of neutral genetic population models with fixed population size. We design an explicit, finite, exact, genealogical tree based representation of stationary populations that holds both for finite and infinite types (or alleles) models. We analyze the decays to the equilibrium of finite populations in terms of the convergence to stationarity of their first common ancestor. We estimate the Lyapunov exponent of the distribution flows with respect to the total variation norm. We give bounds on these exponents only depending on the stability with respect to mutation of a single individual; they are inversely proportional to the population size parameter
We are interested in the genealogical structure of alleles for a Bienaymé-Galton-Watson branching pr...
AbstractIn the classical model of population genetics for continuous time (Fisher's equation) for n ...
In this paper, we review recent results of ours concerning branching processes with general lifetime...
International audienceThis article is concerned with the long-time behavior of neutral genetic popul...
This article is concerned with the long time behavior of neutral genetic population models, with fix...
We consider a supercritical branching population, where individuals have i.i.d. lifetime du-rations ...
International audienceWe consider a Galton-Watson branching process with neutral mutations (infinite...
Item does not contain fulltextWe introduce and analyze a general model of a population evolving over...
20 pages, 2 figuresInternational audienceIn this paper, we review recent results of ours concerning ...
AbstractWe consider a neutral dynamical model of biological diversity, where individuals live and re...
In a geographically structured population, the interplay among gene migration, genetic drift and nat...
A Polya-like urn arises in studying stationary distributions and stationary sampling distributions i...
AbstractA Polya-like urn arises in studying stationary distributions and stationary sampling distrib...
The nearly neutral theory is a common framework to describe natural selection at the molecular level...
International audienceWe consider a supercritical branching population, where individuals have i.i.d...
We are interested in the genealogical structure of alleles for a Bienaymé-Galton-Watson branching pr...
AbstractIn the classical model of population genetics for continuous time (Fisher's equation) for n ...
In this paper, we review recent results of ours concerning branching processes with general lifetime...
International audienceThis article is concerned with the long-time behavior of neutral genetic popul...
This article is concerned with the long time behavior of neutral genetic population models, with fix...
We consider a supercritical branching population, where individuals have i.i.d. lifetime du-rations ...
International audienceWe consider a Galton-Watson branching process with neutral mutations (infinite...
Item does not contain fulltextWe introduce and analyze a general model of a population evolving over...
20 pages, 2 figuresInternational audienceIn this paper, we review recent results of ours concerning ...
AbstractWe consider a neutral dynamical model of biological diversity, where individuals live and re...
In a geographically structured population, the interplay among gene migration, genetic drift and nat...
A Polya-like urn arises in studying stationary distributions and stationary sampling distributions i...
AbstractA Polya-like urn arises in studying stationary distributions and stationary sampling distrib...
The nearly neutral theory is a common framework to describe natural selection at the molecular level...
International audienceWe consider a supercritical branching population, where individuals have i.i.d...
We are interested in the genealogical structure of alleles for a Bienaymé-Galton-Watson branching pr...
AbstractIn the classical model of population genetics for continuous time (Fisher's equation) for n ...
In this paper, we review recent results of ours concerning branching processes with general lifetime...