textabstract‘Critical vaccination coverages’ are vaccination allocations that result in an effective reproduction ratio of one. In a population with interacting subpopulations there are many different critical vaccination coverages. To find the most efficient critical vaccination coverage, we define the following optimization problem: minimize the required amount of vaccines to obtain an effective reproduction ratio of exactly one. We prove that this optimization problem is equivalent to the problem of maximizing the proportion of susceptibles that escape infection during an epidemic (i.e., maximizing the herd effect). We propose an efficient general algorithm to solve these optimization problems based on Perron- Frobenius theory. We study...
Pandemic influenza A(H1N1) 2009 began spreading around the globe in April of 2009 and vaccination st...
Meta-populations models that account for population heterogeneities due to age, gender, spatial loca...
International audienceDuring the Covid-19 pandemic a key role is played by vaccination to combat the...
Critical vaccination coverages’ are vaccination allocations that result in an effective reproduction...
Optimization of vaccine allocations among different segments of a heterogeneous population is import...
Optimization of vaccine allocations among different segments of a heterogeneous population is import...
\u3cp\u3eVaccination is an effective way to prevent an epidemic. It results in immunity for the vacc...
Vaccination is an effective way to prevent an epidemic. It results in immunity for the vaccinated in...
A highly effective method for controlling the spread of an infectious disease is vaccination. Howeve...
In previous articles, we formalized the problem of optimal allocation strategies for a (perfect) vac...
AbstractOne of the fundamental problems in public health is how to allocate a limited set of resourc...
Infectious diseases have had a devastating impact on society and the world's population throughout t...
This paper is concerned with stochastic models for the spread of an epidemic among a community of ho...
Developing robust, quantitative methods to optimize resource allocations in response to epidemics ha...
Pandemic influenza A(H1N1) 2009 began spreading around the globe in April of 2009 and vaccination st...
Meta-populations models that account for population heterogeneities due to age, gender, spatial loca...
International audienceDuring the Covid-19 pandemic a key role is played by vaccination to combat the...
Critical vaccination coverages’ are vaccination allocations that result in an effective reproduction...
Optimization of vaccine allocations among different segments of a heterogeneous population is import...
Optimization of vaccine allocations among different segments of a heterogeneous population is import...
\u3cp\u3eVaccination is an effective way to prevent an epidemic. It results in immunity for the vacc...
Vaccination is an effective way to prevent an epidemic. It results in immunity for the vaccinated in...
A highly effective method for controlling the spread of an infectious disease is vaccination. Howeve...
In previous articles, we formalized the problem of optimal allocation strategies for a (perfect) vac...
AbstractOne of the fundamental problems in public health is how to allocate a limited set of resourc...
Infectious diseases have had a devastating impact on society and the world's population throughout t...
This paper is concerned with stochastic models for the spread of an epidemic among a community of ho...
Developing robust, quantitative methods to optimize resource allocations in response to epidemics ha...
Pandemic influenza A(H1N1) 2009 began spreading around the globe in April of 2009 and vaccination st...
Meta-populations models that account for population heterogeneities due to age, gender, spatial loca...
International audienceDuring the Covid-19 pandemic a key role is played by vaccination to combat the...