Accurate identification of effective epidemic threshold is essential for understanding epidemic dynamics on complex networks. In this paper, we systematically study how the recovery rate affects the susceptible-infected-removed spreading dynamics on complex networks, where synchronous and asynchronous updating processes are taken into account. We derive the theoretical effective epidemic threshold and final outbreak size based on the edge-based compartmental theory. To validate the proposed theoretical predictions, extensive numerical experiments are implemented by using asynchronous and synchronous updating methods. When asynchronous updating method is used in simulations, recovery rate does not affect the final state of spreading...
Pairwise models are used widely to model epidemic spread on networks. These include the modelling of...
We investigate a fermionic susceptible-infected-susceptible model with the mobility of infected indi...
We study the effect of heterogeneous temporal activations on epidemic spreading in temporal networks...
In this paper, we propose a modified susceptible-infected-recovered (SIR) model, in which each node ...
Researchers have developed several theoretical methods for predicting epidemic thresholds, including...
Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the exist...
Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the exist...
In this paper we present a model describing susceptible-infected-susceptible-type epidemics spreadin...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
We focus on the node-based epidemic modeling for networks, introduce the propagation medium, and pro...
Pairwise models are used widely to model epidemic spread on networks. These include the modelling of...
We investigate a fermionic susceptible-infected-susceptible model with the mobility of infected indi...
We study the effect of heterogeneous temporal activations on epidemic spreading in temporal networks...
In this paper, we propose a modified susceptible-infected-recovered (SIR) model, in which each node ...
Researchers have developed several theoretical methods for predicting epidemic thresholds, including...
Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the exist...
Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the exist...
In this paper we present a model describing susceptible-infected-susceptible-type epidemics spreadin...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
Infectious diseases that incorporate presymptomatic transmission are challenging to monitor, model, ...
We focus on the node-based epidemic modeling for networks, introduce the propagation medium, and pro...
Pairwise models are used widely to model epidemic spread on networks. These include the modelling of...
We investigate a fermionic susceptible-infected-susceptible model with the mobility of infected indi...
We study the effect of heterogeneous temporal activations on epidemic spreading in temporal networks...