Statistical methods for fitting dengue disease models, and related issues
Explore this paper's citation graph
Summary
It is demonstrated that the proposed vSEIR ODE model provides a better fit to the data than the other existing ODE models, and two discretization methods for initial value problems: derivative-free mesh adaptive direct search method with quadratic models (MADSQ) and derivative trust region (DTR) method.
- Type
- article
- Published
- 2015-01-28
- Cited by
- 1
- References
- 49
- Access
- Open access
- OpenAlex
- https://openalex.org/W20559562
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:7629602
Keywords
Ode, Ordinary differential equation, Computer science, Discretization, Dengue fever
References
- Detection of multiple blood feeding in Aedes aegypti (Diptera: Culicidae) during a single gonotrophic cycle using a histologic technique.
- A simulation model of the epidemiology of urban dengue fever: literature analysis, model development, preliminary validation, and samples of simulation results.
- The Mathematical Theory of Infectious Diseases and its applications
- Trust Region Methods
- Parameter Estimation for Differential Equations: a Generalized Smoothing Approach
- A model of dengue fever
- Convergence of the Nelder-Mead Simplex Method to a Nonstationary Point
- On Periodicity in Series of Related Terms
- The seasonal pattern of dengue in endemic areas: mathematical models of mechanisms.
- Use of quadratic models with mesh-adaptive direct search for constrained black box optimization
- Nonsmooth optimization through Mesh Adaptive Direct Search and Variable Neighborhood Search
- Mesh Adaptive Direct Search Algorithms for Constrained Optimization
- Sieve bootstrap for smoothing in nonstationary time series
- Crossing the hopf bifurcation in a live predator-prey system.
- Agent-based modeling to simulate the dengue spread
- Controlling Dengue with Vaccines in Thailand
- Dengue vector-control services: how do they work? A systematic literature review and country case studies.
- SEIR MODEL FOR TRANSMISSION OF DENGUE FEVER IN SELANGOR MALAYSIA
- The Growth of Populations
- An agent-based model for the spread of the Dengue fever: a swarm platform simulation approach
Cited by
Related papers
- Parameterization and sensitivity analysis of a complex simulation model for mosquito population dynamics, dengue transmission, and their control.
- A comparison between a deterministic, compartmental model and an individual based-stochastic model for simulating the transmission dynamics of pandemic influenza
- Fitting deterministic population models to stochastic data: from trajectory matching to state-space models
- A study of Population MCMC for estimatingBayes Factors over nonlinear ODE models
- Principled simulation of agent-based models in epidemiology
- New Data and Tools for Integrating Discrete and Continuous Population Modeling Strategies
- An Optimal Control Approach to Learning in SIDARTHE Epidemic model