Non-systemic transmission of tick-borne diseases: a network approach
arXiv:1603.03752 · doi:10.1016/j.cnsns.2016.02.034
Abstract
Tick-Borne diseases can be transmitted via non-systemic (NS) transmission. This occurs when tick gets the infection by co-feeding with infected ticks on the same host resulting in a direct pathogen transmission between the vectors, without infecting the host. This transmission is peculiar, as it does not require any systemic infection of the host. The NS transmission is the main efficient transmission for the persistence of the Tick-Borne Encephalitis virus in nature. By describing the heterogeneous ticks aggregation on hosts through a \hyphenation{dynamical} bipartite graphs representation, we are able to mathematically define the NS transmission and to depict the epidemiological conditions for the pathogen persistence. Despite the fact that the underlying network is largely fragmented, analytical and computational results show that the larger is the variability of the aggregation, and the easier is for the pathogen to persist in the population.
15 pages, 4 figures, to be published in Communications in Nonlinear Science and Numerical Simulation
References in corpus (7)
- What's in a crowd? Analysis of face-to-face behavioral networks
- Activity driven modeling of time varying networks
- Small But Slow World: How Network Topology and Burstiness Slow Down Spreading
- Temporal Heterogeneities Increase the Prevalence of Epidemics on Evolving Networks
- Epidemic spreading and risk perception in multiplex networks: a self-organized percolation method
- Infection propagator approach to compute epidemic thresholds on temporal networks: impact of immunity and of limited temporal resolution
- Interplay of network dynamics and ties heterogeneity on spreading dynamics