We investigate the spread of an infection or other malfunction of cascading nature when a system component can recover only if it remains reachable from a functioning central component. We consider the susceptible-infected-susceptible model, typical of mathematical epidemiology, on a network. Infection spreads from infected to healthy nodes, with the addition that infected nodes can only recover when they remain connected to a predefined central node, through a path that contains only healthy nodes. In this system, clusters of infected nodes will absorb their noninfected interior because no path exists between the central node and encapsulated nodes. This gives rise to the simultaneous infection of multiple nodes. Interestingly, the system ...
Power-law behaviors are common in many disciplines, especially in network science. Real-world networ...
Network science studies a complex system as a network to capture the connectivity patterns and topol...
We consider the susceptible - infected - susceptible (SIS) epidemic on a dynamic network model with ...
We investigate the spread of an infection or other malfunction of cascading nature when a system com...
We investigate the spread of an infection or other malfunction of cascading nature when a system com...
We investigate the spread of an infection or other malfunction of cascading nature when a system com...
We present a detailed analytical and numerical study for the spreading of infections with acquired i...
We present a detailed analytical and numerical study for the spreading of infections with acquired ...
Abstract. We present a detailed analytical and numerical study for the spreading of infections with ...
The dynamic nature of a system gives rise to dynamical features of epidemic spreading, such as oscil...
The dynamic nature of a system gives rise to dynamical features of epidemic spreading, such as oscil...
In contrast to previous common wisdom that epidemic activity in heterogeneous networks is dominated ...
In contrast to previous common wisdom that epidemic activity in heterogeneous networks is dominated ...
In contrast to previous common wisdom that epidemic activity in heterogeneous networks is dominated ...
Adaptive networks, which combine topological evolution of the network with dynamics on the network, ...
Power-law behaviors are common in many disciplines, especially in network science. Real-world networ...
Network science studies a complex system as a network to capture the connectivity patterns and topol...
We consider the susceptible - infected - susceptible (SIS) epidemic on a dynamic network model with ...
We investigate the spread of an infection or other malfunction of cascading nature when a system com...
We investigate the spread of an infection or other malfunction of cascading nature when a system com...
We investigate the spread of an infection or other malfunction of cascading nature when a system com...
We present a detailed analytical and numerical study for the spreading of infections with acquired i...
We present a detailed analytical and numerical study for the spreading of infections with acquired ...
Abstract. We present a detailed analytical and numerical study for the spreading of infections with ...
The dynamic nature of a system gives rise to dynamical features of epidemic spreading, such as oscil...
The dynamic nature of a system gives rise to dynamical features of epidemic spreading, such as oscil...
In contrast to previous common wisdom that epidemic activity in heterogeneous networks is dominated ...
In contrast to previous common wisdom that epidemic activity in heterogeneous networks is dominated ...
In contrast to previous common wisdom that epidemic activity in heterogeneous networks is dominated ...
Adaptive networks, which combine topological evolution of the network with dynamics on the network, ...
Power-law behaviors are common in many disciplines, especially in network science. Real-world networ...
Network science studies a complex system as a network to capture the connectivity patterns and topol...
We consider the susceptible - infected - susceptible (SIS) epidemic on a dynamic network model with ...