Javascript must be enabled to continue!
On the Optimal Production Capacity for Influenza Vaccine
View through CrossRef
SummaryThis paper analyzes the profit maximizing capacity choice of a monopolistic vaccine producer facing the uncertain event of a pandemic in a homogenous population of forward‐looking individuals. For any capacity level, the monopolist solves the intertemporal price discrimination problem within the dynamic setting generated by the standard mathematical epidemiological model of infectious diseases. Even though consumers are assumed to be identical, the monopolist will be able to exploit the ex post heterogeneity between infected and susceptible individuals by raising the price of vaccine in response to the increasing hazard rate. The monopolist thus bases its investment decision on the expected profits from the optimal price path given the infection dynamics. It is shown that the monopolist will always choose to invest in a lower production capacity than the social planner. Through numerical simulation, it is demonstrated how the loss to society of having a monopoly producer decreases with the speed of infection transmission. Moreover, it is illustrated how the monopolist's optimal vaccination rate increases as its discount rate rises for cost parameters based on Swedish data. However, the effect of the firm discount rate on its investment decision is sensitive to assumptions regarding the cost of production capacity. Copyright © 2014 John Wiley & Sons, Ltd.
Title: On the Optimal Production Capacity for Influenza Vaccine
Description:
SummaryThis paper analyzes the profit maximizing capacity choice of a monopolistic vaccine producer facing the uncertain event of a pandemic in a homogenous population of forward‐looking individuals.
For any capacity level, the monopolist solves the intertemporal price discrimination problem within the dynamic setting generated by the standard mathematical epidemiological model of infectious diseases.
Even though consumers are assumed to be identical, the monopolist will be able to exploit the ex post heterogeneity between infected and susceptible individuals by raising the price of vaccine in response to the increasing hazard rate.
The monopolist thus bases its investment decision on the expected profits from the optimal price path given the infection dynamics.
It is shown that the monopolist will always choose to invest in a lower production capacity than the social planner.
Through numerical simulation, it is demonstrated how the loss to society of having a monopoly producer decreases with the speed of infection transmission.
Moreover, it is illustrated how the monopolist's optimal vaccination rate increases as its discount rate rises for cost parameters based on Swedish data.
However, the effect of the firm discount rate on its investment decision is sensitive to assumptions regarding the cost of production capacity.
Copyright © 2014 John Wiley & Sons, Ltd.
Related Results
Knowledge and Attitudes of Adult Diabetic Patients Attending Primary Health Care in Bahrain about Seasonal Influenza and Influenza Vaccination - A Cross-Sectional Study
Knowledge and Attitudes of Adult Diabetic Patients Attending Primary Health Care in Bahrain about Seasonal Influenza and Influenza Vaccination - A Cross-Sectional Study
Introduction: Influenza is a highly contagious respiratory viral illness that is vaccine-preventable and occurs seasonally. While most cases present with mild respiratory symptoms,...
Burden of the Beast
Burden of the Beast
Introduction
Throughout the COVID-19 pandemic, and its fluctuating waves of infections and the emergence of new variants, Indigenous populations in Australia and worldwide have re...
Peptide amphiphile micelles as a universal influenza vaccine delivery vehicle
Peptide amphiphile micelles as a universal influenza vaccine delivery vehicle
Despite a plethora of influenza vaccines and treatment options, there are millions of cases of influenza each year in the United States alone. Although increasing vaccination rates...
1175. Influenza Vaccine Hesitancy in Hospitalized Children, Before and During the COVID-19 Pandemic
1175. Influenza Vaccine Hesitancy in Hospitalized Children, Before and During the COVID-19 Pandemic
Abstract
Background
Influenza vaccine is recommended for all children ≥6 months, yet uptake is suboptimal. We aimed to quantify ...
U.S. utilization patterns of influenza antiviral medications during the 2009 H1N1 influenza pandemic
U.S. utilization patterns of influenza antiviral medications during the 2009 H1N1 influenza pandemic
Please cite this paper as: Borders‐Hemphill and Mosholder (2012) U.S. utilization patterns of influenza antiviral medications during the 2009 H1N1 influenza pandemic. Influenza and...
Burden and seasonality of medically attended influenza like illness (ILI) in Ethiopia, 2012 to 2017
Burden and seasonality of medically attended influenza like illness (ILI) in Ethiopia, 2012 to 2017
Abstract
Background
The influenza virus spreads rapidly around the world in seasonal epidemics, resulting in significant morbidity and mortality. In...
A severe 2017 influenza season dominated by influenza A(H3N2), Victoria, Australia
A severe 2017 influenza season dominated by influenza A(H3N2), Victoria, Australia
Surveillance for influenza-like illness (ILI) and laboratory-confirmed influenza in Victoria, Australia is undertaken jointly by the Victorian Infectious Diseases Reference Laborat...
The Clinical Effectiveness and Tolerability of Oseltamivir in Unvaccinated against Influenza Pediatric Patients in Two In-fluenza seasons after the COVID-19 pandemic.The Impact of Comorbidities on Hospitalization for Influenza in Children.
The Clinical Effectiveness and Tolerability of Oseltamivir in Unvaccinated against Influenza Pediatric Patients in Two In-fluenza seasons after the COVID-19 pandemic.The Impact of Comorbidities on Hospitalization for Influenza in Children.
Antiviral therapy such as Oseltamivir has been recommended for hospitalized children with suspected and confirmed influenza for almost 20 years. The therapy is officially authorize...

