The Impact of the Network Topology on the Viral Prevalence: A Node-Based Approach
Explore this paper's citation graph
Summary
A new epidemic model of computer virus, known as the node-based SLBS model, is proposed, and it is shown that the maximum eigenvalue of the underlying network is a key factor determining the viral prevalence.
- Type
- article
- Published
- 2015-07-29
- Cited by
- 75
- References
- 48
- Access
- Open access
- OpenAlex
- https://openalex.org/W1019741419
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:14682400
Keywords
Eigenvalues and eigenvectors, Node (physics), Network topology, Extinction (optical mineralogy), Topology (electrical circuits)
References
- Infectious diseases of humans: R. M. Anderson & R. M. May. Oxford etc.: Oxford University Press, 1991. viii + 757 pp. Price £50. ISBN 0-19-854599-1
- Epidemic spreading in real networks: an eigenvalue viewpoint
- Graph Spectra for Complex Networks
- Technological Networks and the Spread of Computer Viruses
- Epidemic processes in complex networks
- The effect of network topology on the spread of epidemics
- Scale-free topology of e-mail networks.
- Epidemic spread in human networks
- Epidemic thresholds with external agents
- Epidemic dynamics on semi-directed complex networks.
- Optimal Patching in Clustered Malware Epidemics
- A comparison of three different stochastic population models with regard to persistence time.
- Thresholds for epidemic spreading in networks
- Invariance for ordinary differential equations
- Global analysis of an SIS model with an infective vector on complex networks
- A propagation model of computer virus with nonlinear vaccination probability
- Towards the Epidemiological Modeling of Computer Viruses
- An individual-based approach to SIR epidemics in contact networks.
- The spread of computer viruses over a reduced scale-free network
- Epidemic spreading in scale-free networks.
Cited by
- Modeling and analysis of the effect of network eigenvalue on viral spread
- Diffusion processes of fragmentary information on scale-free networks
- Epidemic models for complex networks with demographics.
- Modeling the Spread of Computer Viruses under the Effects of Infected External Computers and Removable Storage Media
- Reducing the Spectral Radius of a Torus Network by Link Removal
- Heterogeneous virus propagation in networks: a theoretical study
- Structure optimization based on memetic algorithm for adjusting epidemic threshold on complex networks
- Impact of impulsive detoxication on the spread of computer virus
- The Rationality of Four Metrics of Network Robustness: A Viewpoint of Robust Growth of Generalized Meshes
- Propagation Effect of a Virus Outbreak on a Network with Limited Anti-Virus Ability
- The impact of patch forwarding on the prevalence of computer virus: A theoretical assessment approach
- Dynamical Analysis of a Computer Virus Model with Delays
- Dynamic malware containment under an epidemic model with alert
- On the Optimal Dynamic Control Strategy of Disruptive Computer Virus
- The Minimum Spectral Radius of an Edge-Removed Network: A Hypercube Perspective
- A theoretical method for assessing disruptive computer viruses
- Maximizing the overall profit of a word-of-mouth marketing campaign: A modeling study
- A discount strategy in word-of-mouth marketing and its assessment
- Analysis of the effectiveness of the truth-spreading strategy for inhibiting rumors
- Distributed interaction between computer virus and patch: A modeling study
Related papers
- Metagenomics and Its Applications in Agriculture, Biomedicine and Environmental Studies
- Simulating metagenomic stable isotope probing datasets with MetaSIPSim
- New Application of Metagenomics and Metatranscriptomics in Environmental Microbial Research
- Reference-free resolving of long-read metagenomic data
- Simulating metagenomic stable isotope probing datasets with MetaSIPSim
- Metagenomic Data Assembly – The Way of Decoding Unknown Microorganisms
- Reference-free resolution of long-read metagenomic data
- A review of computational tools for generating metagenome-assembled genomes from metagenomic sequencing data
- Improving bacterial metagenomic research through long read sequencing
- Taxonomic and functional profiling of the microbial communities of Arabian Sea: A metagenomics approach.