<p>Results of simulating our model at equilibrium as a function of varying network size and structure. All results are given as the means and three standard deviations of 24 individual one-year simulations at equilibrium. Each simulation is based on a randomly generated network of the given architecture. For prevalence rates only, results denoted by an asterix indicate mean values significantly different from the mean values given in the baseline column. (Student's <i>t</i>-test with significance accepted if <i>p</i><0.001).</p><p>BL: Baseline network (Boldface, <i>N</i> = 200, clustered, broad degree distribution).</p><p>A: <i>N</i> = 200; clustered, broad degree distribution, low degree.</p><p>B: <i>N</i> = 200; clustered, regular.</p><p>...
We compare two broad types of empirically grounded random network models in terms of their abilities...
<p>For each network model, shown are the mean (with 95% confidence intervals) over 100 simulated net...
<p>*For each network structure, transmission probability was chosen so as to ensure that the average...
<p>Results of simulating our model at equilibrium as a function of varying network size and structur...
<p>Vertical coordinate shows the mean incidence rate of total infection in weeks 131–156, calculated...
<p>Vertical coordinate shows the mean incidence rate of re-infection infection in weeks 131–156, cal...
<div><p>We compare two broad types of empirically grounded random network models in terms of their a...
We compare two broad types of empirically grounded random network models in terms of their abilities...
We compare two broad types of empirically grounded random network models in terms of their abilities...
Scenario1, the red open circles, is a process with α = 0.4, ϕ = 0.6 and η = 0.8. Scenario2, the gree...
<p><i>Note.</i><i>n</i> = number of nodes; <i>m</i> = number of edges; <i>n</i><sub><i>CC</i></sub> ...
We compare two broad types of empirically grounded random network models in terms of their abilities...
We compare two broad types of empirically grounded random network models in terms of their abilities...
We compare two broad types of empirically grounded random network models in terms of their abilities...
<p>Watts-Strogatz, Romantic, and fully connected networks. Results for (A) time to the epidemic peak...
We compare two broad types of empirically grounded random network models in terms of their abilities...
<p>For each network model, shown are the mean (with 95% confidence intervals) over 100 simulated net...
<p>*For each network structure, transmission probability was chosen so as to ensure that the average...
<p>Results of simulating our model at equilibrium as a function of varying network size and structur...
<p>Vertical coordinate shows the mean incidence rate of total infection in weeks 131–156, calculated...
<p>Vertical coordinate shows the mean incidence rate of re-infection infection in weeks 131–156, cal...
<div><p>We compare two broad types of empirically grounded random network models in terms of their a...
We compare two broad types of empirically grounded random network models in terms of their abilities...
We compare two broad types of empirically grounded random network models in terms of their abilities...
Scenario1, the red open circles, is a process with α = 0.4, ϕ = 0.6 and η = 0.8. Scenario2, the gree...
<p><i>Note.</i><i>n</i> = number of nodes; <i>m</i> = number of edges; <i>n</i><sub><i>CC</i></sub> ...
We compare two broad types of empirically grounded random network models in terms of their abilities...
We compare two broad types of empirically grounded random network models in terms of their abilities...
We compare two broad types of empirically grounded random network models in terms of their abilities...
<p>Watts-Strogatz, Romantic, and fully connected networks. Results for (A) time to the epidemic peak...
We compare two broad types of empirically grounded random network models in terms of their abilities...
<p>For each network model, shown are the mean (with 95% confidence intervals) over 100 simulated net...
<p>*For each network structure, transmission probability was chosen so as to ensure that the average...