Abstract This paper aims to investigate the effects of human behavior and contact heterogeneity on the spread of infectious diseases. For this purpose, a network-based SIRS epidemic model with a general feedback mechanism is proposed. In contrast to previous models, we consider the different fear degrees of individuals who have different potential number of contacts with others, when an epidemic prevails. The basic reproductive number that governs the global dynamics of the model is analytically derived. Accordingly, the permanence of the disease and stability conditions of the equilibria are studied in detail. It is shown that the general feedback mechanism cannot change the basic reproductive number, but theoretical and numerical results ...
For many diseases (e.g., sexually transmitted infections, STIs), most individuals are aware of the p...
We consider the spread of infectious disease through contact networks of Configuration Model type. W...
We consider the spread of infectious disease through contact networks of Configuration Model type. W...
Over the past century, mathematical epidemiology has grown to be one of the triumphs of applied math...
Over the past century, mathematical epidemiology has grown to be one of the triumphs of applied math...
Human societies are organized in complex webs that are constantly reshaped by a social dynamic which...
In recent years the research community has accumulated overwhelming evidence for the emergence of co...
In recent years the research community has accumulated overwhelming evidence for the emergence of co...
In recent years the research community has accumulated overwhelming evidence for the emergence of co...
The interplay between disease spreading and personal risk perception is of key importance for modell...
AbstractThe speed and range of epidemic spreading is strongly influenced by the topology and dynamic...
This thesis studies dynamics and control of epidemic spreading in complex networks especially scale-...
This thesis studies dynamics and control of epidemic spreading in complex networks especially scale-...
This paper proposes a novel model combining an epidemic dynamics and an opinion dynamics to investig...
Abstract.We consider the spread of infectious disease through contact networks of Configura-tion Mod...
For many diseases (e.g., sexually transmitted infections, STIs), most individuals are aware of the p...
We consider the spread of infectious disease through contact networks of Configuration Model type. W...
We consider the spread of infectious disease through contact networks of Configuration Model type. W...
Over the past century, mathematical epidemiology has grown to be one of the triumphs of applied math...
Over the past century, mathematical epidemiology has grown to be one of the triumphs of applied math...
Human societies are organized in complex webs that are constantly reshaped by a social dynamic which...
In recent years the research community has accumulated overwhelming evidence for the emergence of co...
In recent years the research community has accumulated overwhelming evidence for the emergence of co...
In recent years the research community has accumulated overwhelming evidence for the emergence of co...
The interplay between disease spreading and personal risk perception is of key importance for modell...
AbstractThe speed and range of epidemic spreading is strongly influenced by the topology and dynamic...
This thesis studies dynamics and control of epidemic spreading in complex networks especially scale-...
This thesis studies dynamics and control of epidemic spreading in complex networks especially scale-...
This paper proposes a novel model combining an epidemic dynamics and an opinion dynamics to investig...
Abstract.We consider the spread of infectious disease through contact networks of Configura-tion Mod...
For many diseases (e.g., sexually transmitted infections, STIs), most individuals are aware of the p...
We consider the spread of infectious disease through contact networks of Configuration Model type. W...
We consider the spread of infectious disease through contact networks of Configuration Model type. W...