In this paper, we study the dynamical behaviour of an epidemic on complex networks with population mobility. In our model, the number of people on each node is unrestricted as the nodes of the network are considered as cities, communities, and so on. Because people can travel between different cities, we study the effect of a population's mobility on the epidemic spreading. In view of the population's mobility, we suppose that the susceptible individual can be infected by an infected individual in the same city or other connected cities. Simulations are presented to verify our analysis.Department of Electronic and Information Engineerin
In this paper, the process of the infectious diseases among cities is studied in metapopulation netw...
We propose a theoretical framework for the study of spreading processes in structured metapopulation...
In this paper we extend previous work deriving dynamic equations governing infectious disease spread...
In this paper, we study the dynamical behaviour of epidemic on complex networks with population mobi...
Open Access funding provided thanks to the CRUE-CSIC agreement with Springer Nature. Fund ing was pr...
We investigate a model for spatial epidemics explicitly taking into account bidirectional movements ...
We investigate a model for spatial epidemics explicitly taking into account bidirectional movements ...
We investigate a model for spatial epidemics explicitly taking into account bidirectional movements ...
We investigate a model for spatial epidemics explicitly taking into account bidirectional movements ...
We investigate a model for spatial epidemics explicitly taking into account bidirectional movements ...
Abstract We review and introduce a generalized reaction-diffusion approach to epidemic spreading in ...
We investigate the role of migration patterns on the spread of epidemics in complex networks. We enh...
Host mobility plays a fundamental role in the spatial spread of infectious diseases. Previous theore...
Abstract The study of complex networks sheds light on the relation between the structure and functio...
In this paper, we propose a Boltzmann-type kinetic model of the spreading of an infectious disease o...
In this paper, the process of the infectious diseases among cities is studied in metapopulation netw...
We propose a theoretical framework for the study of spreading processes in structured metapopulation...
In this paper we extend previous work deriving dynamic equations governing infectious disease spread...
In this paper, we study the dynamical behaviour of epidemic on complex networks with population mobi...
Open Access funding provided thanks to the CRUE-CSIC agreement with Springer Nature. Fund ing was pr...
We investigate a model for spatial epidemics explicitly taking into account bidirectional movements ...
We investigate a model for spatial epidemics explicitly taking into account bidirectional movements ...
We investigate a model for spatial epidemics explicitly taking into account bidirectional movements ...
We investigate a model for spatial epidemics explicitly taking into account bidirectional movements ...
We investigate a model for spatial epidemics explicitly taking into account bidirectional movements ...
Abstract We review and introduce a generalized reaction-diffusion approach to epidemic spreading in ...
We investigate the role of migration patterns on the spread of epidemics in complex networks. We enh...
Host mobility plays a fundamental role in the spatial spread of infectious diseases. Previous theore...
Abstract The study of complex networks sheds light on the relation between the structure and functio...
In this paper, we propose a Boltzmann-type kinetic model of the spreading of an infectious disease o...
In this paper, the process of the infectious diseases among cities is studied in metapopulation netw...
We propose a theoretical framework for the study of spreading processes in structured metapopulation...
In this paper we extend previous work deriving dynamic equations governing infectious disease spread...