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Journal of Theoretical Biology|December 10, 2020
How best can finite-time social distancing reduce epidemic final size?Pierre-Alexandre Bliman, Michel Duprez
Journal of Optimization Theory and Applications|March 8, 2021
Optimal Immunity Control and Final Size Minimization by Social Distancing for the SIR Epidemic ModelPierre-Alexandre Bliman, Michel Duprez, Yannick Privat, et al.
Bulletin of Mathematical Biology|May 8, 2023
Final Size for Epidemic Models with Asymptomatic TransmissionCarles Barril, Pierre-Alexandre Bliman, Sílvia Cuadrado
Mathematical Biosciences|February 26, 2025
A framework for the modelling and the analysis of epidemiological spread in commuting populationsPierre-Alexandre Bliman, Boureima Sangaré, Assane Savadogo
Mathematical Biosciences|June 10, 2019
Implementation of control strategies for sterile insect techniquesPierre-Alexandre Bliman, Daiver Cardona-Salgado, Yves Dumont, et al.
Theoretical Population Biology|August 14, 2020
A class of fast-slow models for adaptive resistance evolutionPastor E Pérez-Estigarribia, Pierre-Alexandre Bliman, Christian E Schaerer
Plos One|September 2, 2016
Behavioral Modulation of Infestation by Varroa destructor in Bee Colonies. Implications for Colony StabilityJoyce de Figueiró Santos, Flávio Codeço Coelho, Pierre-Alexandre Bliman
Mathematical Biosciences and Engineering : MBE|March 5, 2026
On the problem of minimizing the epidemic final size for SIR model by social distancingPierre-Alexandre Bliman, Anas Bouali, Patrice Loisel, et al.
Journal of Mathematical Biology|September 1, 2017
Ensuring successful introduction of Wolbachia in natural populations of Aedes aegypti by means of feedback controlPierre-Alexandre Bliman, M Soledad Aronna, Flávio C Coelho, et al.
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