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Vaccination

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Provider Recommendations For Human Papillomavirus Vaccine (Hpv) Among Adolescent Males In Southwest Georgia Counties And The Associated Hpv Prevalence In This Population, Benjamin K. Poku Jan 2015

Provider Recommendations For Human Papillomavirus Vaccine (Hpv) Among Adolescent Males In Southwest Georgia Counties And The Associated Hpv Prevalence In This Population, Benjamin K. Poku

Electronic Theses and Dissertations

Objective: The purpose of this research study was to examine the variation in healthcare providers’ behavior in recommending the Human Papillomavirus (HPV) vaccine to young male adolescents (aged 11-12), middle male adolescents (aged 13-17) and late male adolescents (aged 18-26) in rural Southwest Georgia counties. This research also aimed to identify factors associated with providers’ behaviors concerning HPV vaccination recommendation to youth in various age groups.

Methods: Upon IRB approval, secondary data were obtained from Albany Area Primary Care for a paper-based survey that was conducted in 2014 using a representative random sample of family physicians (n=12), pediatricians (n=6), and …


Mathematical Modeling, Simulation, And Time Series Analysis Of Seasonal Epidemics., Eric Shu Numfor Dec 2010

Mathematical Modeling, Simulation, And Time Series Analysis Of Seasonal Epidemics., Eric Shu Numfor

Electronic Theses and Dissertations

Seasonal and non-seasonal Susceptible-Exposed-Infective-Recovered-Susceptible (SEIRS) models are formulated and analyzed. It is proved that the disease-free steady state of the non-seasonal model is locally asymptotically stable if Rv < 1, and disease invades if Rv > 1. For the seasonal SEIRS model, it is shown that the disease-free periodic solution is locally asymptotically stable when v < 1, and I(t) is persistent with sustained oscillations when v > 1. Numerical simulations indicate that the orbit representing I(t) decays when v < 1 < Rv. The seasonal SEIRS model with routine and pulse vaccination is simulated, and results depict an unsustained decrease …