Second look at the spread of epidemics on networks
arXiv:q-bio/0610057 · doi:10.1103/PhysRevE.76.036113
Abstract
In an important paper, M.E.J. Newman claimed that a general network-based stochastic Susceptible-Infectious-Removed (SIR) epidemic model is isomorphic to a bond percolation model, where the bonds are the edges of the contact network and the bond occupation probability is equal to the marginal probability of transmission from an infected node to a susceptible neighbor. In this paper, we show that this isomorphism is incorrect and define a semi-directed random network we call the epidemic percolation network that is exactly isomorphic to the SIR epidemic model in any finite population. In the limit of a large population, (i) the distribution of (self-limited) outbreak sizes is identical to the size distribution of (small) out-components, (ii) the epidemic threshold corresponds to the phase transition where a giant strongly-connected component appears, (iii) the probability of a large epidemic is equal to the probability that an initial infection occurs in the giant in-component, and (iv) the relative final size of an epidemic is equal to the proportion of the network contained in the giant out-component. For the SIR model considered by Newman, we show that the epidemic percolation network predicts the same mean outbreak size below the epidemic threshold, the same epidemic threshold, and the same final size of an epidemic as the bond percolation model. However, the bond percolation model fails to predict the correct outbreak size distribution and probability of an epidemic when there is a nondegenerate infectious period distribution. We confirm our findings by comparing predictions from percolation networks and bond percolation models to the results of simulations. In an appendix, we show that an isomorphism to an epidemic percolation network can be defined for any time-homogeneous stochastic SIR model.
29 pages, 5 figures
References in corpus (2)
Cited by in corpus (104)
- Epidemic processes in complex networks
- Multilayer Networks
- Temporal Networks
- Spatial Networks
- Critical phenomena in complex networks
- A message passing approach for general epidemic models
- Unification of theoretical approaches for epidemic spreading on complex networks
- The dynamical strength of social ties in information spreading
- Edge-Based Compartmental Modeling for Infectious Disease Spread Part I: An Overview
- Spreading processes in Multilayer Networks
- Epidemic threshold for the SIS model on networks
- Competing for Attention in Social Media under Information Overload Conditions
- Dynamical Systems on Networks: A Tutorial
- Generation interval contraction and epidemic data analysis
- Heterogeneous Bond Percolation on Multitype Networks with an Application to Epidemic Dynamics
- Pairwise-like models for non-Markovian epidemics on networks
- On the critical behavior of the Susceptible-Infected-Recovered (SIR) model on a square lattice
- Intermittent social distancing strategy for epidemic control
- Leveraging percolation theory to single out influential spreaders in networks
- Multiscale Analysis of Spreading in a Large Communication Network
- Network-based analysis of stochastic SIR epidemic models with random and proportionate mixing
- Predicting the epidemic threshold of the susceptible-infected-recovered model
- Synergy in spreading processes: from exploitative to explorative foraging strategies
- Biased Percolation on Scale-free Networks
- Contact intervals, survival analysis of epidemic data, and estimation of R_0
- Co-circulation of infectious diseases on networks
- Epidemic spreading on modular networks: The fear to declare a pandemic
- Layer-switching cost and optimality in information spreading on multiplex networks
- Criticality in spreading processes without time-scale separation and the critical brain hypothesis
- Asymmetric percolation drives a double transition in sexual contact networks
- Cavity analysis on the robustness of random networks against targeted attacks: Influences of degree-degree correlations
- Efficient sampling of spreading processes on complex networks using a composition and rejection algorithm
- Temporal percolation of the susceptible network in an epidemic spreading
- Traffic-driven SIR epidemic model on networks
- Epidemic fronts in complex networks with metapopulation structure
- General and exact approach to percolation on random graphs
- Modelling the spreading rate of controlled communicable epidemics through an entropy-based thermodynamic model
- Information Propagation in Clustered Multilayer Networks
- Pattern formation and coexistence domains for a nonlocal population dynamics
- Suppression of epidemic outbreaks with heavy-tailed contact dynamics
- Effects of epidemic threshold definition on disease spread statistics
- Criterion for explosive percolation transitions on complex networks
- Dynamics of multi-stage infections on networks
- Cumulative Merging Percolation and the epidemic transition of the Susceptible-Infected-Susceptible model in networks
- Effects of local and global network connectivity on synergistic epidemics
- Epidemic Spreading and Digital Contact Tracing: Effects of Heterogeneous Mixing and Quarantine Failures
- Percolation on Isotropically Directed Lattice
- FastSIR Algorithm: A Fast Algorithm for simulation of epidemic spread in large networks by using SIR compartment model
- Complexity and anisotropy in host morphology make populations safer against epidemic outbreaks
- Optimizing Hybrid Spreading in Metapopulations
- Effects of variable neighbourhood on spreading processes
- Simulating SIR processes on networks using weighted shortest paths
- On the numerical study of percolation and epidemic critical properties in networks
- Social distancing strategies against disease spreading
- Percolation on bipartite scale-free networks
- Time allocation in social networks: correlation between social structure and human communication dynamics
- Epidemic control in networks with cliques
- Infection percolation: A dynamic network model of disease spreading
- Directed Percolation in Temporal Networks
- Two-pathogen model with competition on clustered networks
- An Exact Relationship Between Invasion Probability and Endemic Prevalence for Markovian SIS Dynamics on Networks
- Directed Percolation in Random Temporal Network Models with Heterogeneities
- Impact of assortative mixing by mask-wearing on the propagation of epidemics in networks
- Unifying continuous, discrete, and hybrid susceptible-infected-recovered processes on networks
- Statistical inference framework for source detection of contagion processes on arbitrary network structures
- Percolation phase transition by removal of -mers from fully occupied lattices
- Disease spreading with social distancing: A prevention strategy in disordered multiplex networks
- Predicting the diversity of early epidemic spread on networks
- Dynamics of infectious disease in clustered networks with arbitrary degree distributions
- Controlling distant contacts to reduce disease spreading on disordered complex networks
- Cooperative coinfection dynamics on clustered networks
- Digital Herd Immunity and COVID-19
- Discontinuous Transition of a Multistage Independent Cascade Model on Networks
- Compact pairwise models for epidemics with multiple infectious stages on degree heterogeneous and clustered networks
- Epidemics in Networks of Spatially Correlated Three-dimensional Root Branching Structures
- The Cost of an Epidemic over a Complex Network: A Random Matrix Approach
- Finite-time scaling for epidemic processes with power-law superspreading events
- Mean-field models for non-Markovian epidemics on networks: from edge-based compartmental to pairwise models
- Effectiveness of Contact Tracing on Networks with Cliques
- Standard and inverse site percolation of straight rigid rods on triangular lattices: Isotropic and nematic deposition/removal
- Critical behavior of the diffusive susceptible-infected-recovered model
- Symbiotic and antagonistic disease dynamics on networks using bond percolatio
- Robustness of networks against propagating attacks under vaccination strategies
- Crossover from weak to strong disorder regime in the duration of epidemics
- Survival Dynamical Systems for the Population-level Analysis of Epidemics
- Path-dependent course of epidemic: are two phases of quarantine better than one?
- The Configuration Model for Partially Directed Graphs
- Degree-dependent network growth: From preferential attachment to explosive percolation
- Peak fraction of infected in epidemic spreading for multi-community networks
- Distribution of outbreak sizes for SIR disease in finite populations
- Generating functions for message-passing on weighted networks: directed bond percolation and SIR epidemics
- Strength and weakness of disease-induced herd immunity in networks
- Complex Contagions and hybrid phase transitions in unclustered and clustered random networks
- Temporal and probabilistic comparisons of epidemic interventions
- Decision-Making Frameworks for Network Resilience -- Managing and Mitigating Systemic (Cyber) Risk
- An exact N-strain epidemic model using bond percolation
- A note on a paper by Erik Volz [arXiv:0705.2092]: SIR dynamics in random networks
- Percolation in clustered networks
- Epidemics on evolving networks with varying degrees
- Finding an individual's probability of infection in an SIR network is NP-hard
- The advantage of self-protecting interventions in mitigating epidemic circulation at the community level
- Real-time growth rate for general stochastic SIR epidemics on unclustered networks
- How universal is the mean-field universality class for percolation in complex networks?
- A stochastic SIR network epidemic model with preventive dropping of edges