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Maxime Ignacio
Maxime Ignacio
Associé de recherche, Université d'Ottawa, Ottawa
Подтвержден адрес электронной почты в домене uottawa.ca
Название
Процитировано
Процитировано
Год
Interpreting the Weibull fitting parameters for diffusion-controlled release data
M Ignacio, MV Chubynsky, GW Slater
Physica A: Statistical Mechanics and its Applications 486, 486-496, 2017
462017
Voltage-driven translocation: Defining a capture radius
L Qiao, M Ignacio, GW Slater
The Journal of Chemical Physics 151 (24), 2019
152019
Using fitting functions to estimate the diffusion coefficient of drug molecules in diffusion-controlled release systems
M Ignacio, GW Slater
Physica A: Statistical Mechanics and its Applications 567, 125681, 2021
142021
Physical confinement signals regulate the organization of stem cells in three dimensions
SV Hadjiantoniou, D Sean, M Ignacio, M Godin, GW Slater, AE Pelling
Journal of The Royal Society Interface 13 (123), 20160613, 2016
122016
Wetting of elastic solids on nanopillars
M Ignacio, Y Saito, P Smereka, O Pierre-Louis
Physical Review Letters 112 (14), 146102, 2014
92014
An efficient kinetic Monte Carlo to study analyte capture by a nanopore: transients, boundary conditions and time-dependent fields
L Qiao, M Ignacio, GW Slater
Physical Chemistry Chemical Physics 23 (2), 1489-1499, 2021
72021
Impalement dynamics and Brownian motion of solid islands on nanopillars
M Ignacio, O Pierre-Louis
Physical Review B 86 (23), 235410, 2012
72012
Solid-state wetting on nanopatterned substrates
Y Saito, M Ignacio, O Pierre-Louis
Comptes Rendus Physique 14 (7), 619-628, 2013
62013
Diffusivity interfaces in lattice Monte Carlo simulations: Modeling inhomogeneous delivery and release systems
M Ignacio, M Bagheri, MV Chubynsky, HW de Haan, GW Slater
Physical Review E 105 (6), 064135, 2022
32022
Influence of density and release properties of UCx targets on the fission product yields at ALTO
J Guillot, B Roussière, S Tusseau-Nenez, DS Grebenkov, M Ignacio
Nuclear Instruments and Methods in Physics Research Section B: Beam …, 2020
32020
A Lattice Kinetic Monte Carlo method to study drug release from swelling porous delivery systems
M Ignacio, GW Slater
Physica A: Statistical Mechanics and its Applications 603, 127775, 2022
22022
Spacing Homogenization in Lamellar Eutectic Arrays with Anisotropic Interphase Boundaries
M Ignacio, M Plapp
Physical Review Materials 3 (114302), 2019
22019
The role of Swelling in Diffusion-Controlled Drug Release: a Lattice Monte Carlo Approach
M Ignacio, GW Slater
APS March Meeting Abstracts 2017, S6. 013, 2017
12017
Étude théorique du mouillage de nano-cristaux solides sur des substrats nano-patternés
M Ignacio
Lyon 1, 2014
12014
Estimating the asymptotic characteristic time scales for diffusion-controlled drug release systems using partially sampled data
C Bohémier, M Ignacio, X Lamy, GW Slater
International Journal of Pharmaceutics 634, 122674, 2023
2023
An empirical method to characterize displacement distribution functions for anomalous and transient diffusion
L Qiao, N Ilow, M Ignacio, GW Slater
Physica A: Statistical Mechanics and its Applications 604, 127676, 2022
2022
A Kinetic Lattice Monte Carlo Method to Study Drug Release from Swelling Porous Delivery Systems
M Ignacio, GW Slater
Available at SSRN 4036399, 2022
2022
Extracting the Global Characteristic Time from Partially Sampled Diffusion-Controlled Drug Release Profiles
C Bohémier, M Ignacio, G Slater
APS March Meeting Abstracts 2022, D46. 006, 2022
2022
A Kinetic Monte Carlo algorithm for swelling drug delivery systems
M Ignacio, G Slater
APS March Meeting Abstracts 2021, C02. 007, 2021
2021
How to use fitting functions to estimate the diffusion coefficient of molecules in diffusion-controlled drug release systems
G Slater, M Ignacio
APS March Meeting Abstracts 2021, F06. 005, 2021
2021
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