Fredrick Asenso Wireko
The researcher has focused extensively on several key themes within their work, including optimal control dynamics in infectious diseases such as HIV, gonorrhea, and Ebola, alongside broader research into poxvirus and parasitic disease transmission. Their work integrates mathematical models with advanced methodologies like fractional calculus and optimization techniques to address complex systems across public health, ecology, and environmental science. The researcher's interdisciplinary approach emphasizes the application of these tools in understanding and mitigating outbreaks, while also highlighting their role in advancing innovative modeling approaches that consider multiple factors in disease spread.
COVID-19 epidemiological studies
Disaster Response and Management
Energy and Environment Impacts
Fractional Differential Equations Solutions
Islamic Finance and Banking Studies
Iterative Methods for Nonlinear Equations
Mathematical and Theoretical Epidemiology and Ecology Models
Mathematical Biology Tumor Growth
Numerical methods in inverse problems
Optimization and Mathematical Programming
Parasitic Diseases Research and Treatment
Poxvirus research and outbreaks
Viral Infections and Outbreaks Research
Viral Infections and Vectors
Optimal control and cost-effectiveness analysis of human–dog Ebola transmission dynamics
Open AccessThe Impact of Memory Effects on Lymphatic Filariasis Transmission Using Incidence Data From Ghana
Open AccessAuthor response for "The Impact of Memory Effects on Lymphatic Filariasis Transmission Using Incidence Data From Ghana"
Correction to: Modeling the effect of memory on the spread of Query fever considering humans, animals and the environment
Open AccessModeling the effect of memory on the spread of Query fever considering humans, animals and the environment
A fractional order model of Lymphatic Filariasis and Visceral Leishmaniasis coinfection
Open AccessModeling the Impact of Double‐Dose Vaccination and Saturated Transmission Dynamics on Mpox Control
Open AccessThe maximum range method for finding initial basic feasible solution for transportation problems
Open AccessAuthor response for "Modeling the Impact of Double‐Dose Vaccination and Saturated Transmission Dynamics on Mpox Control"
Modelling the dynamics of exposure to smoke from solid cooking fuels and anaemia among women in rural areas
A dynamical model of drinking and smoking with optimal control analysis
Open AccessMathematical analysis of Ebola considering transmission at treatment centres and survivor relapse using fractal-fractional Caputo derivatives in Uganda
Open AccessModelling the transmission behavior of measles disease considering contaminated environment through a fractal-fractional Mittag-Leffler kernel
Open AccessModelling the dynamics of Ebola disease transmission with optimal control analysis
A fractional order Ebola transmission model for dogs and humans
Open AccessFractional Derivative Technique for Modeling the Dynamics of Social Media Impacts
Open AccessNon-optimal and optimal fractional control analysis of measles using real data
Open AccessOptimal control dynamics of Gonorrhea in a structured population
Open AccessA fractal–fractional model of Ebola with reinfection
Open AccessA fractal–fractional order model for exploring the dynamics of Monkeypox disease
Open AccessMathematical Modelling of Ebola with Optimal Control and Cost-Effectiveness Analysis
Open AccessThe Eigenspace Spectral Regularization Method for Solving Discrete Ill-Posed Systems
Open AccessThe Eigenspace Spectral Regularization Method for solving Discrete Ill-Posed Systems
Open AccessDepartment of Mathematics
Kwame Nkrumah University of Science and Technology