The interplay between disease spreading and personal risk perception is of key importance for modelling the spread of infectious diseases. We propose a planar system of ordinary differential equations (ODEs) to describe the co-evolution of a spreading phenomenon and the average link density in the personal contact network. Contrary to standard epidemic models, we assume that the contact network changes based on the current prevalence of the disease in the population, i.e. the network adapts to the current state of the epidemic. We assume that personal risk perception is described using two functional responses: one for link-breaking and one for link-creation. The focus is on applying the model to epidemics, but we also highlight other possi...
The dynamics of contact networks and epidemics of infectious diseases often occur on comparable time...
The study of epidemics on static networks has revealed important effects on disease prevalence of n...
The spread of an infectious disease depends on intrinsic properties of the disease as well as the co...
The interplay between disease spreading and personal risk perception is of key importance for modell...
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...
Abstract This paper aims to investigate the effects of human behavior and contact heterogeneity on t...
Modelling the spread of contagious diseases among people has been a research topic for over a hundre...
Epidemic models are increasingly applied in real-world networks to understand various kinds of diffu...
In real-world networks of disease transmission, the incidence of infection among individuals conform...
Master's thesis in Mathematics and PhysicsThe spread of a virus or the outbreak of an epidemic are n...
AbstractWe study the uncorrelated Susceptible-Infected-Susceptible (SIS) model in epidemiology on to...
Epidemic models are increasingly applied in real-world networks to understand various kinds of diffu...
AbstractThe speed and range of epidemic spreading is strongly influenced by the topology and dynamic...
The dynamics of contact networks and epidemics of infectious diseases often occur on comparable time...
The study of epidemics on static networks has revealed important effects on disease prevalence of n...
The spread of an infectious disease depends on intrinsic properties of the disease as well as the co...
The interplay between disease spreading and personal risk perception is of key importance for modell...
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...
Abstract This paper aims to investigate the effects of human behavior and contact heterogeneity on t...
Modelling the spread of contagious diseases among people has been a research topic for over a hundre...
Epidemic models are increasingly applied in real-world networks to understand various kinds of diffu...
In real-world networks of disease transmission, the incidence of infection among individuals conform...
Master's thesis in Mathematics and PhysicsThe spread of a virus or the outbreak of an epidemic are n...
AbstractWe study the uncorrelated Susceptible-Infected-Susceptible (SIS) model in epidemiology on to...
Epidemic models are increasingly applied in real-world networks to understand various kinds of diffu...
AbstractThe speed and range of epidemic spreading is strongly influenced by the topology and dynamic...
The dynamics of contact networks and epidemics of infectious diseases often occur on comparable time...
The study of epidemics on static networks has revealed important effects on disease prevalence of n...
The spread of an infectious disease depends on intrinsic properties of the disease as well as the co...