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Bulletin of Mathematical Biology|October 7, 2018
A Continuum Mechanics Model of Enzyme-Based Tissue Degradation in Cancer TherapiesManon Deville, Roberto Natalini, Clair PoignardJournal of Mathematical Biology|June 28, 2023
Phase-field model of bilipid membrane electroporationPedro Jaramillo-Aguayo, Annabelle Collin, Clair PoignardJournal of Mathematical Biology|December 7, 2016
Free boundary problem for cell protrusion formations: theoretical and numerical aspectsOlivier Gallinato, Masahito Ohta, Clair Poignard, et al.Journal of Mathematical Biology|December 15, 2012
"Classical" electropermeabilization modeling at the cell scaleOtared Kavian, Michael Leguèbe, Clair Poignard, et al.Journal of Theoretical Biology|July 4, 2017
Tumor growth model of ductal carcinoma: from in situ phase to stroma invasionOlivier Gallinato, Thierry Colin, Olivier Saut, et al.Journal of Mathematical Biology|February 28, 2022
Macro-scale models for fluid flow in tumour tissues: impact of microstructure propertiesCristina Vaghi, Raphaëlle Fanciullino, Sébastien Benzekry, et al.Scientific Reports|February 2, 2016
Impact of external medium conductivity on cell membrane electropermeabilization by microsecond and nanosecond electric pulsesAude Silve, Isabelle Leray, Clair Poignard, et al.Physics in Medicine and Biology|January 23, 2019
Numerical workflow of irreversible electroporation for deep-seated tumorOlivier Gallinato, Baudouin Denis de Senneville, Olivier Seror, et al.Bioelectrochemistry (Amsterdam, Netherlands)|August 14, 2020
Physiological changes may dominate the electrical properties of liver during reversible electroporation: Measurements and modellingTomás García-Sánchez, Damien Voyer, Clair Poignard, et al.Computer Methods and Programs in Biomedicine|November 25, 2019
Numerical optimization of plasmid DNA delivery combined with hyaluronidase injection for electroporation protocolDaniele Peri, Manon Deville, Clair Poignard, et al.Pageof 3