Living systems are organised in space. This imposes constraints on both their structural form and, consequently, their dynamics. While artificial life research has demonstrated that embedding an adaptive system in space tends to have a significant impact on its behaviour, we do not yet have a full account of the relevance of spatiality to living self-organisation. Here, we extend the REDS model of spatial networks with self-organised community structure to include the “small world” effect. We demonstrate that REDS networks can become small worlds with the introduction of a small amount of random rewiring. We then explore how this rewiring influences a simple dynamic process representing the contagious spread of infection or information. We ...
Even though transitivity is a central structural feature of social networks, its influence on epidem...
Analytical description of propagation phenomena on random networks has flourished in recent years, y...
In this thesis we explore how the structure of a network impacts upon spreading behaviours on that n...
The study of complex networks, and in particular of social networks, has mostly concentrated on rela...
The study of complex networks, and in particular of social networks, has mostly concentrated on rela...
I will discuss a class of random spatial networks and show that they have small world-like propertie...
I will discuss a class of random spatial networks and show that they have small world-like propertie...
In this paper, we study an adaptive spatial network. We consider a susceptible-infected-susceptible ...
The organisation of living systems is neither random nor reg-ular, but tends to exhibit complex stru...
Epidemics and evolution of many pathogens occur on similar timescales so that their dynamics are oft...
Epidemics and evolution of many pathogens occur on similar timescales so that their dynamics are oft...
Complex networks emerging in natural and human-made systems tend to assume small-world structure. Is...
Complex networks emerging in natural and human-made systems tend to assume small-world structure. Is...
\u3cp\u3eComplex networks emerging in natural and human-made systems tend to assume small-world stru...
Branching processes are used to model diverse social and physical scenarios, from extinction of fami...
Even though transitivity is a central structural feature of social networks, its influence on epidem...
Analytical description of propagation phenomena on random networks has flourished in recent years, y...
In this thesis we explore how the structure of a network impacts upon spreading behaviours on that n...
The study of complex networks, and in particular of social networks, has mostly concentrated on rela...
The study of complex networks, and in particular of social networks, has mostly concentrated on rela...
I will discuss a class of random spatial networks and show that they have small world-like propertie...
I will discuss a class of random spatial networks and show that they have small world-like propertie...
In this paper, we study an adaptive spatial network. We consider a susceptible-infected-susceptible ...
The organisation of living systems is neither random nor reg-ular, but tends to exhibit complex stru...
Epidemics and evolution of many pathogens occur on similar timescales so that their dynamics are oft...
Epidemics and evolution of many pathogens occur on similar timescales so that their dynamics are oft...
Complex networks emerging in natural and human-made systems tend to assume small-world structure. Is...
Complex networks emerging in natural and human-made systems tend to assume small-world structure. Is...
\u3cp\u3eComplex networks emerging in natural and human-made systems tend to assume small-world stru...
Branching processes are used to model diverse social and physical scenarios, from extinction of fami...
Even though transitivity is a central structural feature of social networks, its influence on epidem...
Analytical description of propagation phenomena on random networks has flourished in recent years, y...
In this thesis we explore how the structure of a network impacts upon spreading behaviours on that n...