The stochastic nature of epidemic dynamics on a network makes their direct study very challenging. One avenue to reduce the complexity is a mean-field approximation (or mean-field equation) of the dynamics; however, the classic mean-field equation has been shown to perform sub-optimally in many applications. Here, we adapt a recently developed mean-field equation for SIR epidemics on a network in continuous time to the discrete time case. With this new discrete mean-field approximation, this proof-of-concept study shows that, given the density of the network, there is a strong correspondence between the epidemics on an Erdös–Rényi network and a system of discrete equations. Through this connection, we developed a parameter fitting procedure...
In this work we performed a numerical study of an epidemic model that mimics the endemic state of wh...
Exact solutions of epidemic models are critical for identifying the severity and mitigation possibil...
An adaptive network model using SIS epidemic propagation with link-type-dependent link activation an...
Epidemic propagation on networks represents an important departure from traditional mass-action mode...
Abstract In this article, we develop two independent and new approaches to model epidemic spread in ...
Mean-field approximations (MFAs) are frequently used in physics. When a process (such as an epidemic...
Over the last decade considerable research effort has been invested in an attempt to understand the ...
Modelling epidemics on networks represents an important departure from classical compartmental model...
We propose an approximation framework that unifies and generalizes a number of existing mean-field a...
We study the spread of an SIRS-type epidemic with vaccination on network. Starting from an exact Mar...
The influence of the network characteristics on the virus spread is analyzed in a new-the N-intertwi...
The role of waning immunity in basic epidemic models on networks has been undervalued while being no...
An adaptive network model using SIS epidemic propagation with link-type-dependent link activation an...
An adaptive network model using SIS epidemic propagation with link-type de-pendent link activation a...
Master's thesis in Mathematics and PhysicsThe spread of a virus or the outbreak of an epidemic are n...
In this work we performed a numerical study of an epidemic model that mimics the endemic state of wh...
Exact solutions of epidemic models are critical for identifying the severity and mitigation possibil...
An adaptive network model using SIS epidemic propagation with link-type-dependent link activation an...
Epidemic propagation on networks represents an important departure from traditional mass-action mode...
Abstract In this article, we develop two independent and new approaches to model epidemic spread in ...
Mean-field approximations (MFAs) are frequently used in physics. When a process (such as an epidemic...
Over the last decade considerable research effort has been invested in an attempt to understand the ...
Modelling epidemics on networks represents an important departure from classical compartmental model...
We propose an approximation framework that unifies and generalizes a number of existing mean-field a...
We study the spread of an SIRS-type epidemic with vaccination on network. Starting from an exact Mar...
The influence of the network characteristics on the virus spread is analyzed in a new-the N-intertwi...
The role of waning immunity in basic epidemic models on networks has been undervalued while being no...
An adaptive network model using SIS epidemic propagation with link-type-dependent link activation an...
An adaptive network model using SIS epidemic propagation with link-type de-pendent link activation a...
Master's thesis in Mathematics and PhysicsThe spread of a virus or the outbreak of an epidemic are n...
In this work we performed a numerical study of an epidemic model that mimics the endemic state of wh...
Exact solutions of epidemic models are critical for identifying the severity and mitigation possibil...
An adaptive network model using SIS epidemic propagation with link-type-dependent link activation an...