Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the existing reaction–diffusion equations for infectious disease are unable to characterize this effect. Thus, we here propose an extended susceptible-infected-recovered model by incorporating contact rate into the standard SIR model, and concentrate on investigating its impact on epidemic transmission. We analytically derive the epidemic thresholds on homogeneous and heterogeneous networks, respectively. The effects of contact rate on spreading speed, scale and outbreak threshold are explored on ER and SF networks. Simulations results show that epidemic dissemination is significantly mitigated when contact rate is reduced. Importantly, epidemic sprea...
We consider the spread of infectious disease through contact networks of Configuration Mod...
The participation of individuals in multi-layer networks allows for feedback between network layers,...
Accurate identification of effective epidemic threshold is essential for understanding epidemic dyn...
Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the exist...
In real-world networks of disease transmission, the incidence of infection among individuals conform...
Heterogeneity in the number of potentially infectious contacts amongst members of a population incre...
In this paper, we propose a modified susceptible-infected-recovered (SIR) model, in which each node ...
Human societies are organized in complex webs that are constantly reshaped by a social dynamic which...
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...
We consider the spread of infectious disease through contact networks of Configuration Mod...
We consider the spread of infectious disease through contact networks of Configuration Mod...
We consider the spread of infectious disease through contact networks of Configuration Mod...
Abstract.We consider the spread of infectious disease through contact networks of Configura-tion Mod...
Previous studies revealed that the susceptibility, contacting preference, and recovery probability m...
We consider the spread of infectious disease through contact networks of Configuration Mod...
The participation of individuals in multi-layer networks allows for feedback between network layers,...
Accurate identification of effective epidemic threshold is essential for understanding epidemic dyn...
Contact reduction is an effective strategy to mitigate the spreading of epidemic. However, the exist...
In real-world networks of disease transmission, the incidence of infection among individuals conform...
Heterogeneity in the number of potentially infectious contacts amongst members of a population incre...
In this paper, we propose a modified susceptible-infected-recovered (SIR) model, in which each node ...
Human societies are organized in complex webs that are constantly reshaped by a social dynamic which...
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...
We consider the spread of infectious disease through contact networks of Configuration Mod...
We consider the spread of infectious disease through contact networks of Configuration Mod...
We consider the spread of infectious disease through contact networks of Configuration Mod...
Abstract.We consider the spread of infectious disease through contact networks of Configura-tion Mod...
Previous studies revealed that the susceptibility, contacting preference, and recovery probability m...
We consider the spread of infectious disease through contact networks of Configuration Mod...
The participation of individuals in multi-layer networks allows for feedback between network layers,...
Accurate identification of effective epidemic threshold is essential for understanding epidemic dyn...