Complex networks such as the sexual partnership web or the Internet often show a high degree of redundancy and heterogeneity in their connectivity properties. This peculiar connectivity provides an ideal environment for the spreading of infective agents. Here we show that the random uniform immunization of individuals does not lead to the eradication of infections in all complex networks. Namely, networks with scale-free properties do not acquire global immunity from major epidemic outbreaks even in the presence of unrealistically high densities of randomly immunized individuals. The absence of any critical immunization threshold is due to the unbounded connectivity fluctuations of scale-free networks. Successful immunization strategies can...
The topic of finding effective strategies to restrain epidemic spreading in complex networks is of c...
Epidemics occur in all shapes and forms: infections propagating in our sparse sexual networks, rumou...
The topic of finding effective strategies to restrain epidemic spreading in complex networks is of c...
Complex networks such as the sexual partnership web or the Internet often show a high degree of redu...
We present a detailed analytical and numerical study for the spreading of infections with acquired i...
Epidemics occur in all shapes and forms: infections propagating in our sparse sexual networks, rumou...
Epidemics occur in all shapes and forms: infections propagating in our sparse sexual networks, rumou...
We present a detailed analytical and numerical study for the spreading of infections with acquired ...
We present a detailed analytical and numerical study for the spreading of infections with acquired i...
The way diseases spread through schools, epidemics through countries, and viruses through the Intern...
Abstract. We present a detailed analytical and numerical study for the spreading of infections with ...
Abstract:- The paper propose a model for complex networks with scale-free degree distribution in whi...
preading processes represent a very efficient tool to investigate the structural properties of netwo...
In this paper, a new susceptible-infected-susceptible (SIS) model on complex networks with imperfect...
The topic of finding effective strategies to restrain epidemic spreading in complex networks is of c...
The topic of finding effective strategies to restrain epidemic spreading in complex networks is of c...
Epidemics occur in all shapes and forms: infections propagating in our sparse sexual networks, rumou...
The topic of finding effective strategies to restrain epidemic spreading in complex networks is of c...
Complex networks such as the sexual partnership web or the Internet often show a high degree of redu...
We present a detailed analytical and numerical study for the spreading of infections with acquired i...
Epidemics occur in all shapes and forms: infections propagating in our sparse sexual networks, rumou...
Epidemics occur in all shapes and forms: infections propagating in our sparse sexual networks, rumou...
We present a detailed analytical and numerical study for the spreading of infections with acquired ...
We present a detailed analytical and numerical study for the spreading of infections with acquired i...
The way diseases spread through schools, epidemics through countries, and viruses through the Intern...
Abstract. We present a detailed analytical and numerical study for the spreading of infections with ...
Abstract:- The paper propose a model for complex networks with scale-free degree distribution in whi...
preading processes represent a very efficient tool to investigate the structural properties of netwo...
In this paper, a new susceptible-infected-susceptible (SIS) model on complex networks with imperfect...
The topic of finding effective strategies to restrain epidemic spreading in complex networks is of c...
The topic of finding effective strategies to restrain epidemic spreading in complex networks is of c...
Epidemics occur in all shapes and forms: infections propagating in our sparse sexual networks, rumou...
The topic of finding effective strategies to restrain epidemic spreading in complex networks is of c...