AbstractWe introduce two models of biological aggregation, based on randomly moving particles with individual stochasticity depending on the perceived average population density in their neighborhood. In the first-order model the location of each individual is subject to a density-dependent random walk, while in the second-order model the density-dependent random walk acts on the velocity variable, together with a density-dependent damping term. The main novelty of our models is that we do not assume any explicit aggregative force acting on the individuals; instead, aggregation is obtained exclusively by reducing the individual stochasticity in response to higher perceived density. We formally derive the corresponding mean-field limits, lea...
From a mathematical point of view, living systems such as cell aggregates, crowd and swarms, can be ...
In this article, we introduce and study a new nonlocal hyperbolic model for the formation and moveme...
We consider a stochastic aggregation model on Zd. Start with particles distributed according to the ...
AbstractWe introduce two models of biological aggregation, based on randomly moving particles with i...
In this paper, we derive and analyse mean-field models for the dynamics of groups of individuals und...
In this paper, we derive and analyse mean-field models for the dynamics of groups of individuals und...
In this paper we investigate the stochastic modelling of a spatially structured biological populatio...
This talk will discuss recent developments concerning the long-term behavior of possibly finite-dime...
Abstract We construct a continuum model for biological aggregations in which in-dividuals experience...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPESThe mechanisms that can lead to t...
This thesis is concerned with a class of mathematical models for the collective behaviour of autonom...
We consider stochastic individual-based models for social behaviour of groups of animals. In these m...
As a mathematical model for the biological aggregation phenomena, we consider a density-dependent di...
This thesis is dedicated to the variational and numerical study of a particular class of continuity ...
On the d-dimensional torus we consider the drift-diffusion equation, where the diffusion coefficient...
From a mathematical point of view, living systems such as cell aggregates, crowd and swarms, can be ...
In this article, we introduce and study a new nonlocal hyperbolic model for the formation and moveme...
We consider a stochastic aggregation model on Zd. Start with particles distributed according to the ...
AbstractWe introduce two models of biological aggregation, based on randomly moving particles with i...
In this paper, we derive and analyse mean-field models for the dynamics of groups of individuals und...
In this paper, we derive and analyse mean-field models for the dynamics of groups of individuals und...
In this paper we investigate the stochastic modelling of a spatially structured biological populatio...
This talk will discuss recent developments concerning the long-term behavior of possibly finite-dime...
Abstract We construct a continuum model for biological aggregations in which in-dividuals experience...
Coordenação de Aperfeiçoamento de Pessoal de Nível Superior - CAPESThe mechanisms that can lead to t...
This thesis is concerned with a class of mathematical models for the collective behaviour of autonom...
We consider stochastic individual-based models for social behaviour of groups of animals. In these m...
As a mathematical model for the biological aggregation phenomena, we consider a density-dependent di...
This thesis is dedicated to the variational and numerical study of a particular class of continuity ...
On the d-dimensional torus we consider the drift-diffusion equation, where the diffusion coefficient...
From a mathematical point of view, living systems such as cell aggregates, crowd and swarms, can be ...
In this article, we introduce and study a new nonlocal hyperbolic model for the formation and moveme...
We consider a stochastic aggregation model on Zd. Start with particles distributed according to the ...