The dynamics of disease transmission strongly depends on the properties of the population contact network. Pair-approximation models and individual-based network simulation have been used extensively to model contact networks with non-trivial properties. In this paper, using a continuous time Markov chain, we start from the exact formulation of a simple epidemic model on an arbitrary contact network and rigorously derive and prove some known results that were previously mainly justified based on some biological hypotheses. The main result of the paper is the illustration of the link between graph automorphisms and the process of lumping whereby the number of equations in a system of linear differential equations can be significantly reduced...
Metapopulation dynamics and epidemiology of some diseases on sessile hosts (like pathogen fungi/tree...
Infectious disease remains, despite centuries of work to control and mitigate its effects, a major p...
We extrapolate from the exact master equations of epidemic dynamics on fully connected graphs to non...
We will first provide a brief introduction to models of disease transmission on so-called contact ne...
In this paper we introduce a general Markov chain model of dynamical processes on networks. In this ...
2Stochastic processes on complex networks, where each node is in one of several compartments, and ne...
Infectious diseases typically spread over a contact network with millions of individuals, whose shee...
This textbook provides an exciting new addition to the area of network science featuring a stronger ...
Infectious diseases typically spread over a contact network with millions of individuals, whose shee...
Many if not all models of disease transmission on networks can be linked to the exact state-based Ma...
We will first provide a brief introduction to models of disease transmission on so-called contact ne...
Many if not all models of disease transmission on networks can be linked to the exact state-based Ma...
International audienceWe propose a new model that describes the dynamics of epidemic spreading on co...
International audienceWe propose a new model that describes the dynamics of epidemic spreading on co...
Abstract In this article, we develop two independent and new approaches to model epidemic spread in ...
Metapopulation dynamics and epidemiology of some diseases on sessile hosts (like pathogen fungi/tree...
Infectious disease remains, despite centuries of work to control and mitigate its effects, a major p...
We extrapolate from the exact master equations of epidemic dynamics on fully connected graphs to non...
We will first provide a brief introduction to models of disease transmission on so-called contact ne...
In this paper we introduce a general Markov chain model of dynamical processes on networks. In this ...
2Stochastic processes on complex networks, where each node is in one of several compartments, and ne...
Infectious diseases typically spread over a contact network with millions of individuals, whose shee...
This textbook provides an exciting new addition to the area of network science featuring a stronger ...
Infectious diseases typically spread over a contact network with millions of individuals, whose shee...
Many if not all models of disease transmission on networks can be linked to the exact state-based Ma...
We will first provide a brief introduction to models of disease transmission on so-called contact ne...
Many if not all models of disease transmission on networks can be linked to the exact state-based Ma...
International audienceWe propose a new model that describes the dynamics of epidemic spreading on co...
International audienceWe propose a new model that describes the dynamics of epidemic spreading on co...
Abstract In this article, we develop two independent and new approaches to model epidemic spread in ...
Metapopulation dynamics and epidemiology of some diseases on sessile hosts (like pathogen fungi/tree...
Infectious disease remains, despite centuries of work to control and mitigate its effects, a major p...
We extrapolate from the exact master equations of epidemic dynamics on fully connected graphs to non...