Hémaho Beaugard Taboe

Hémaho Beaugard Taboe
University of Abomey-Calavi | UAC · Laboratoire de Biomathématiques et d'Estimations Forestières (LABEF)

About

9
Publications
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Introduction
Biomathematics and mathematical modeling • Modeling infectious diseases. Formulating and using statistical and dynamical (deterministic and stochastic) models to understand the transmission and control existing, emerging, and re-emerging infectious diseases. • Exploring connections between human behavior, infectious diseases of humans, Land use, environmental change, and economic growth. • Developing new efficient algorithms for parameters estimations in infectious diseases modeling.

Publications

Publications (9)
Article
Full-text available
The ongoing COVID-19 pandemic has been a major global health challenge since its emergence in 2019. Contrary to early predictions that sub-Saharan Africa (SSA) would bear a disproportionate share of the burden of COVID-19 due to the region's vulnerability to other infectious diseases, weak healthcare systems, and socioeconomic conditions, the pande...
Preprint
The effectiveness of control interventions against COVID-19 is threatened by the emergence of SARS-CoV-2 variants of concern. We present a mathematical model for studying the transmission dynamics of two of these variants (Delta and Omicron) in the United States, in the presence of vaccination, treatment of individuals with clinical symptoms of the...
Preprint
The effectiveness of control interventions against COVID-19 is threatened by the emergence of SARS-CoV-2 variants of concern. We present a mathematical model for studying the transmission dynamics of two of these variants (Delta and Omicron) in the United States, in the presence of vaccination, treatment of individuals with clinical symptoms of the...
Preprint
Full-text available
The 2019 coronavirus (COVID-19) pandemic continues to have a devastating impact on health systems and economies across the globe, with the United States (U.S.) among the worse impacted nations. Implementing public health measures in tandem with effective vaccination strategies is instrumental in halting the transmission of the virus and curtailing...
Preprint
Full-text available
The ongoing COVID-19 pandemic has been a major global health challenge since its emergence in 2019. Contrary to early predictions that sub-Saharan Africa (SSA) would bear a disproportionate share of the burden of COVID-19 due to the region's vulnerability to other infectious diseases, weak healthcare systems, and socioeconomic conditions, the pande...
Preprint
The effectiveness of control interventions against COVID-19 is threatened by the emergence of SARS-CoV-2 variants of concern. We present a mathematical model for studying the transmission dynamics of two of these variants (Delta and Omicron) in the United States, in the presence of vaccination, treatment of individuals with clinical symptoms of the...
Preprint
Full-text available
Multiple safe and effective vaccines and antiviral drugs have been approved or authorized for use against the COVID-19 pandemic in the United States. The effectiveness of these and other intervention measures is threatened by the emergence of numerous SARS-CoV-2 variants of concern. We present a model for studying the transmission dynamics of two o...
Preprint
Full-text available
The COVID-19 pandemic is currently causing several damages to the world, especially in the public health sector. Due to identifiability problems in parameters' estimation of complex compartmental models, this study considered a simple deterministic susceptible-infectious-recovered (SIR)-type model to characterize and predict the future course of th...
Article
The novel coronavirus (COVID-19) pandemic is causing devastating demographic, social, and economic damage globally. Understanding current patterns of the pandemic spread and forecasting its long-term trajectory is essential in guiding policies aimed at curtailing the pandemic. This is particularly important in regions with weak economies and fragil...

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Projects

Project (1)
Project
This project aims to (i) critically analyze the modeling techniques used to understand epidemic outbreaks, (ii) develop new modeling techniques and (iii) use the best existing ones to understand and predict the COVID-19 dynamics in the West African countries and the whole West Africa as well. It is led by the Laboratoire de Biomathematiques et d'Estimations Forestières (LABEF) of the University of Abomey-Calavi (Benin, West Africa).