Dynamic models in disease ecology have historically evaluated vaccination strategies under the assumption that they are implemented homogeneously in space and time. However, this approach fails to formally account for operational and logistical constraints inherent in the distribution of vaccination to the population at risk. Thus, feedback between the dynamic processes of vaccine distribution and transmission might be overlooked. Here, we present a spatially explicit, stochastic Susceptible-Infected-Recovered-Vaccinated model that highlights the density-dependence and spatial constraints of various diffusive strategies of vaccination during an outbreak. The model integrates an agent-based process of disease spread with a partial differenti...
Abstract Background Human behavior influences infectious disease transmission, and numerous "prevale...
A vaccinated diffusive compartmental epidemic model is developed to explore the impact of vaccinatio...
We present a stochastic model for the spread of smallpox after a small number of index cases are int...
<div><p>Dynamic models in disease ecology have historically evaluated vaccination strategies under t...
Real-time vaccination following an outbreak can effectively mitigate the damage caused by an infecti...
<p>Population densities are simulated from 2000 to 10201 at intervals of 200. Time step <i>τ =</i> 0...
Present hopes to conquer the Covid-19 epidemic are largely based on the expectation of a rapid avail...
<p>a) Fraction of population infected, i.e. outbreak size (red) and duration (blue) as a function of...
Vaccination is an effective way to prevent an epidemic. It results in immunity for the vaccinated in...
Vaccination is an effective way to prevent an epidemic. It results in immunity for the vaccinated in...
As recently pointed out by the Institute of Medicine, the existing pandemic mitigation models lack t...
Assessing the risk of disease spread between communities is important in our highly connected modern...
We investigate game-theory based decisions on vaccination uptake and its effects on the spread of an...
Mathematical modeling is an essential tool in epidemiology. Models are constructed to describe the s...
Developing robust, quantitative methods to optimize resource allocations in response to epidemics ha...
Abstract Background Human behavior influences infectious disease transmission, and numerous "prevale...
A vaccinated diffusive compartmental epidemic model is developed to explore the impact of vaccinatio...
We present a stochastic model for the spread of smallpox after a small number of index cases are int...
<div><p>Dynamic models in disease ecology have historically evaluated vaccination strategies under t...
Real-time vaccination following an outbreak can effectively mitigate the damage caused by an infecti...
<p>Population densities are simulated from 2000 to 10201 at intervals of 200. Time step <i>τ =</i> 0...
Present hopes to conquer the Covid-19 epidemic are largely based on the expectation of a rapid avail...
<p>a) Fraction of population infected, i.e. outbreak size (red) and duration (blue) as a function of...
Vaccination is an effective way to prevent an epidemic. It results in immunity for the vaccinated in...
Vaccination is an effective way to prevent an epidemic. It results in immunity for the vaccinated in...
As recently pointed out by the Institute of Medicine, the existing pandemic mitigation models lack t...
Assessing the risk of disease spread between communities is important in our highly connected modern...
We investigate game-theory based decisions on vaccination uptake and its effects on the spread of an...
Mathematical modeling is an essential tool in epidemiology. Models are constructed to describe the s...
Developing robust, quantitative methods to optimize resource allocations in response to epidemics ha...
Abstract Background Human behavior influences infectious disease transmission, and numerous "prevale...
A vaccinated diffusive compartmental epidemic model is developed to explore the impact of vaccinatio...
We present a stochastic model for the spread of smallpox after a small number of index cases are int...