The evolution of quantitative characters over long timescales is often studied using stochastic diffusion models. The current toolbox available to students of macroevolution is however limited to two main models: Brownian motion and the Ornstein-Uhlenbeck process, plus some of their extensions. Here, we present a very general model for inferring the dynamics of quantitative characters evolving under both random diffusion and deterministic forces of any possible shape and strength, which can accommodate interesting evolutionary scenarios like directional trends, disruptive selection, or macroevolutionary landscapes with multiple peaks. This model is based on a general partial differential equation widely used in statistical mechanics: the Fo...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
Gaussian processes, such as Brownian motion and the Ornstein-Uhlenbeck process, have been popular mo...
We are interested in populations in which the fitness of different genetic types fluctuates in time ...
The evolution of quantitative characters over long timescales is often studied using stochastic diff...
The evolution of quantitative characters over long timescales is often studied using stochastic diff...
The evolution of quantitative characters over long timescales is often studied using stochastic diff...
The evolution of quantitative characters over long timescales is often studied using stochastic diff...
International audienceA distinctive signature of living systems is Darwinian evolution, that is, a p...
International audienceA distinctive signature of living systems is Darwinian evolution, that is, a p...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
Gaussian processes, such as Brownian motion and the Ornstein-Uhlenbeck process, have been popular mo...
We are interested in populations in which the fitness of different genetic types fluctuates in time ...
The evolution of quantitative characters over long timescales is often studied using stochastic diff...
The evolution of quantitative characters over long timescales is often studied using stochastic diff...
The evolution of quantitative characters over long timescales is often studied using stochastic diff...
The evolution of quantitative characters over long timescales is often studied using stochastic diff...
International audienceA distinctive signature of living systems is Darwinian evolution, that is, a p...
International audienceA distinctive signature of living systems is Darwinian evolution, that is, a p...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
International audienceWe are interested in modelling Darwinian evolution, resulting from the interpl...
Gaussian processes, such as Brownian motion and the Ornstein-Uhlenbeck process, have been popular mo...
We are interested in populations in which the fitness of different genetic types fluctuates in time ...