about
On the final size of epidemics with seasonality.Genealogy with seasonality, the basic reproduction number, and the influenza pandemic.Assessment of epidemic projections using recent HIV survey data in South Africa: a validation analysis of ten mathematical models of HIV epidemiology in the antiretroviral therapy era.Evaluating the cost-effectiveness of pre-exposure prophylaxis (PrEP) and its impact on HIV-1 transmission in South AfricaPeriodic matrix population models: growth rate, basic reproduction number, and entropy.The epidemic threshold of vector-borne diseases with seasonality: the case of cutaneous leishmaniasis in Chichaoua, Morocco.Feasibility of achieving the 2025 WHO global tuberculosis targets in South Africa, China, and India: a combined analysis of 11 mathematical models.The model of Kermack and McKendrick for the plague epidemic in Bombay and the type reproduction number with seasonality.On the stochastic SIS epidemic model in a periodic environment.Le modèle stochastique SIS pour une épidémie dans un environnement aléatoire.On the probability of extinction in a periodic environment.Modeling the HIV/AIDS epidemic among injecting drug users and sex workers in Kunming, China.Approximation of the basic reproduction number R0 for vector-borne diseases with a periodic vector population.On the biological interpretation of a definition for the parameter R₀ in periodic population models.A reaction-diffusion system modeling the spread of resistance to an antimalarial drug.An age-structured model for the potential impact of generalized access to antiretrovirals on the South African HIV epidemic.On the basic reproduction number in a random environment.Modeling the joint epidemics of TB and HIV in a South African township.On the relationship between age, annual rate of infection, and prevalence of mycobacterium tuberculosis in a South African township.Resonance of the epidemic threshold in a periodic environment.Sur la probabilité d’extinction dans des modèles mathématiques d’épidémies.Sur les processus linéaires de naissance et de mort sous-critiques dans un environnement aléatoire.Sur la vitesse d'extinction d'une population dans un environnement aléatoire.On linear birth-and-death processes in a random environment.Persistence in seasonally forced epidemiological models.On the basic reproduction number R0 in sexual activity models for HIV/AIDS epidemics: example from Yunnan, China.Growth rate and basic reproduction number for population models with a simple periodic factor.Fuelwood harvesting in Niger and a generalization of Faustmann's formula[On the extinction of populations with several types in a random environment]
P50
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P50
name
Nicolas Bacaër
@en
type
label
Nicolas Bacaër
@en
prefLabel
Nicolas Bacaër
@en