STUDY OF A CARRIER DEPENDENT INFECTIOUS DISEASE — CHOLERA
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Publication:5468579
DOI10.1142/S0218339005001495zbMath1100.92052MaRDI QIDQ5468579
No author found.
Publication date: 10 May 2006
Published in: Journal of Biological Systems (Search for Journal in Brave)
Epidemiology (92D30) Probabilistic models, generic numerical methods in probability and statistics (65C20) Global stability of solutions to ordinary differential equations (34D23) Asymptotic properties of solutions to ordinary differential equations (34D05)
Related Items (10)
An efficient algorithm for solving the fractional optimal control of SIRV epidemic model with a combination of vaccination and treatment ⋮ Qualitative analysis of a cholera bacteriophage model ⋮ Modeling the effect of time delay in controlling the carrier dependent infectious disease -- Cholera ⋮ Study of an S-I epidemic model with nonlinear incidence rate: Discrete and stochastic version ⋮ Modeling the spread of an infectious disease with bacteria and carriers in the environment ⋮ A REACTION–DIFFUSION MODEL FOR THE CONTROL OF CHOLERA EPIDEMIC ⋮ A PREY–PREDATOR MODEL WITH MICROPARASITE INFECTION IN THE PREDATOR ⋮ A mathematical model for the control of carrier-dependent infectious diseases with direct transmission and time delay ⋮ DETERMINISTIC AND STOCHASTIC MODELS FOR THE SPREAD OF CHOLERA ⋮ A delay mathematical model for the spread and control of water borne diseases
Cites Work
- Persistence in models of three interacting predator-prey populations
- Globally stable vaccine-induced eradication of horizontally and vertically transmitted infectious diseases with periodic contact rates and disease-dependent demographic factors in the population
- The Mathematics of Infectious Diseases
- Modeling and Analysis of the Spread of Carrier Dependent Infectious Diseases with Environmental Effects
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