We present a lattice gas cellular automaton (LGCA) to study spatial and temporal dynamics of an epidemic of SIR (susceptible-infected-removed) type. The automaton is fully discrete, i.e., space, time and number of individuals are discrete variables. The automaton can be applied to study spread of epidemics in both human and animal populations. We investigate effects of spatial inhomogeneities in initial distribution of infected and vaccinated populations on the dynamics of epidemic of SIR type. We discuss vaccination strategies which differ only in spatial distribution of vaccinated individuals. Also, we derive an approximate, mean-field type description of the automaton, and discuss differences between the mean-field dynamics and the resul...
This paper describes work in progress studying a cellular automata model of epidemic dynamics on a s...
Two-dimensional cellular automata are a powerful tool for the simulation of complex discrete systems...
Compartmental models are very popular in epidemiology, they provide excellent results when the popul...
We present a lattice gas cellular automaton (LGCA) to study spatial and temporal dynamics of an epid...
We present techniques that allow for the statistical identification of the infection front and for t...
AbstractThe main goal of this work is to propose a mathematical model, based on two-dimensional cell...
Currently, the world has been facing the brunt of a pandemic due to a disease called COVID-19 for th...
In this work we show two different approaches to model virus spread in a large population of individ...
In this paper a Spatial Markov Chain Cellular Automata model for the spread of viruses is proposed. ...
In this work, a novel model to simulate epidemic spreading is in-troduced. It is based on the use of...
International audienceThis work aims at developing a general methodology to determine the spatial ch...
Addressing population heterogeneity and distribution in epidemics models using a cellular automata a...
The aim of this comparison is to numerically solve the classical Kermack McKendrick epidemic-model, ...
Compartmental models are very popular in epidemiology, they provide excellent results when the popul...
The results of Kermack-McKendrick SIR model are planned to be reproduced by cellular automata (CA) l...
This paper describes work in progress studying a cellular automata model of epidemic dynamics on a s...
Two-dimensional cellular automata are a powerful tool for the simulation of complex discrete systems...
Compartmental models are very popular in epidemiology, they provide excellent results when the popul...
We present a lattice gas cellular automaton (LGCA) to study spatial and temporal dynamics of an epid...
We present techniques that allow for the statistical identification of the infection front and for t...
AbstractThe main goal of this work is to propose a mathematical model, based on two-dimensional cell...
Currently, the world has been facing the brunt of a pandemic due to a disease called COVID-19 for th...
In this work we show two different approaches to model virus spread in a large population of individ...
In this paper a Spatial Markov Chain Cellular Automata model for the spread of viruses is proposed. ...
In this work, a novel model to simulate epidemic spreading is in-troduced. It is based on the use of...
International audienceThis work aims at developing a general methodology to determine the spatial ch...
Addressing population heterogeneity and distribution in epidemics models using a cellular automata a...
The aim of this comparison is to numerically solve the classical Kermack McKendrick epidemic-model, ...
Compartmental models are very popular in epidemiology, they provide excellent results when the popul...
The results of Kermack-McKendrick SIR model are planned to be reproduced by cellular automata (CA) l...
This paper describes work in progress studying a cellular automata model of epidemic dynamics on a s...
Two-dimensional cellular automata are a powerful tool for the simulation of complex discrete systems...
Compartmental models are very popular in epidemiology, they provide excellent results when the popul...