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Jacques Demongeot

Showing results (51-60 of 145) with videos related to

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Mathematical Medicine and Biology : a Journal of the IMA|August 20, 2024
Forecasting the changes between endemic and epidemic phases of a contagious disease, with the example of COVID-19Jacques Demongeot, Pierre Magal, Kayode Oshinubi
IEEE Transactions on Bio-Medical Engineering|January 25, 2003
A system for automatic measurement of circadian activity deviations in telemedicineGilles Virone, Norbert Noury, Jacques Demongeot
Acta Biotheoretica|April 5, 2003
Numerical simulations of microtubule self-organisation by reaction and diffusionNicolas Glade, Jacques Demongeot, James Tabony
IEEE Transactions on Neural Networks|September 25, 2004
Positive and negative circuits in discrete neural networksJulio Aracena, Jacques Demongeot, Eric Goles
Scientific Reports|December 9, 2020
Novel statistical approach for assessing the persistence of the circadian rhythms of social activity from telephone call detail records in older adultsTimothée Aubourg, Jacques Demongeot, Nicolas Vuillerme
Infectious Disease Reports|June 1, 2022
A Model for the Lifespan Loss Due to a Viral Disease: Example of the COVID-19 OutbreakKayode Oshinubi, Cécile Fougère, Jacques Demongeot
Bulletin of Mathematical Biology|June 28, 2006
Cellular modelling of secondary radial growth in conifer trees: application to Pinus radiata (D. Don)Loïc Forest, Jacques Demongeot, Jacques Demongeota
Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|November 4, 2009
Synchrony in reaction-diffusion models of morphogenesis: applications to curvature-dependent proliferation and zero-diffusion front wavesLamia Abbas, Jacques Demongeot, Nicolas Glade
Mathematical Biosciences and Engineering : MBE|February 2, 2024
Combinatorial and frequency properties of the ribosome ancestorsJacques Demongeot, Jules Waku, Olivier Cohen
Comptes Rendus Biologies|August 7, 2002
Comparison of reaction-diffusion simulations with experiment in self-organised microtubule solutionsNicolas Glade, Jacques Demongeot, James Tabony
Pageof 15

Showing results (51-60 of 145) with videos related to

Sort By:
Pageof 15
Mathematical Medicine and Biology : a Journal of the IMA|August 20, 2024
Forecasting the changes between endemic and epidemic phases of a contagious disease, with the example of COVID-19Jacques Demongeot, Pierre Magal, Kayode Oshinubi
IEEE Transactions on Bio-Medical Engineering|January 25, 2003
A system for automatic measurement of circadian activity deviations in telemedicineGilles Virone, Norbert Noury, Jacques Demongeot
Acta Biotheoretica|April 5, 2003
Numerical simulations of microtubule self-organisation by reaction and diffusionNicolas Glade, Jacques Demongeot, James Tabony
IEEE Transactions on Neural Networks|September 25, 2004
Positive and negative circuits in discrete neural networksJulio Aracena, Jacques Demongeot, Eric Goles
Scientific Reports|December 9, 2020
Novel statistical approach for assessing the persistence of the circadian rhythms of social activity from telephone call detail records in older adultsTimothée Aubourg, Jacques Demongeot, Nicolas Vuillerme
Infectious Disease Reports|June 1, 2022
A Model for the Lifespan Loss Due to a Viral Disease: Example of the COVID-19 OutbreakKayode Oshinubi, Cécile Fougère, Jacques Demongeot
Bulletin of Mathematical Biology|June 28, 2006
Cellular modelling of secondary radial growth in conifer trees: application to Pinus radiata (D. Don)Loïc Forest, Jacques Demongeot, Jacques Demongeota
Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|November 4, 2009
Synchrony in reaction-diffusion models of morphogenesis: applications to curvature-dependent proliferation and zero-diffusion front wavesLamia Abbas, Jacques Demongeot, Nicolas Glade
Mathematical Biosciences and Engineering : MBE|February 2, 2024
Combinatorial and frequency properties of the ribosome ancestorsJacques Demongeot, Jules Waku, Olivier Cohen
Comptes Rendus Biologies|August 7, 2002
Comparison of reaction-diffusion simulations with experiment in self-organised microtubule solutionsNicolas Glade, Jacques Demongeot, James Tabony
Pageof 15