Implications of vector attachment and host grooming behaviour for vector population dynamics and distribution of vectors on their hosts
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Publication:821619
DOI10.1016/j.apm.2019.12.012zbMath1481.92126OpenAlexW2995559658MaRDI QIDQ821619
Publication date: 21 September 2021
Published in: Applied Mathematical Modelling (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.apm.2019.12.012
Epidemiology (92D30) Population dynamics (general) (92D25) Qualitative investigation and simulation of ordinary differential equation models (34C60)
Related Items (4)
Global population dynamics of a single species structured with distinctive time-varying maturation and self-limitation delays ⋮ Global attractivity for nonautonomous delay-differential equations with mixed monotonicity and two delays ⋮ Global exponential stability analysis for tick population model with delayed sub-linear Gamma-Ricker nonlinearities ⋮ Long-term transmission dynamics of tick-borne diseases involving seasonal variation and co-feeding transmission
Cites Work
- Unnamed Item
- Modelling the dynamics of West Nile virus
- A reaction-diffusion malaria model with incubation period in the vector population
- Monotone semiflows generated by functional differential equations
- Developing a temperature-driven map of the basic reproductive number of the emerging tick vector of lyme disease \textit{Ixodes scapularis} in Canada
- Thresholds for disease persistence in models for tick-borne infections including non-viraemic transmission, extended feeding and tick aggregation
- A mathematical model for the dynamics of malaria in a human host and mosquito vector with temporary immunity
- Effects of tick population dynamics and host densities on the persistence of tick-borne infections
- Some Vector Borne Diseases with Structured Host Populations: Extinction and Spatial Spread
- CRITICAL CONTACT RATE FOR VECTOR–HOST–PATHOGEN OSCILLATION INVOLVING CO-FEEDING AND DIAPAUSE
- A Reaction-Diffusion Lyme Disease Model with Seasonality
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