Qualitative simulation of genetic regulatory networks using piecewise-linear models H De Jong, JL Gouzé, C Hernandez, M Page, T Sari, J Geiselmann Bulletin of mathematical biology 66 (2), 301-340, 2004 | 557 | 2004 |
A class of piecewise linear differential equations arising in biological models JL Gouzé, T Sari Dynamical systems 17 (4), 299-316, 2002 | 258 | 2002 |
The chemostat: Mathematical theory of microorganism cultures J Harmand, C Lobry, A Rapaport, T Sari John Wiley & Sons, 2017 | 157 | 2017 |
On Tykhonov's theorem for convergence of solutions of slow and fast systems. C Lobry, T Sari, S Touhami Electronic Journal of Differential Equations (EJDE)[electronic only] 1998 …, 1998 | 92 | 1998 |
Is dispersal always beneficial to carrying capacity? New insights from the multi-patch logistic equation R Arditi, C Lobry, T Sari Theoretical population biology 106, 45-59, 2015 | 88 | 2015 |
The reuse of reclaimed water for irrigation around the Mediterranean Rim: a step towards a more virtuous cycle? N Ait-Mouheb, A Bahri, BB Thayer, B Benyahia, G Bourrié, B Cherki, ... Regional environmental change 18, 693-705, 2018 | 87 | 2018 |
Bifurcation and stability analysis of a two step model for monitoring anaerobic digestion processes B Benyahia, T Sari, B Cherki, J Harmand Journal of Process Control 22 (6), 1008-1019, 2012 | 85 | 2012 |
Hybrid modeling and simulation of genetic regulatory networks: A qualitative approach H De Jong, JL Gouzé, C Hernandez, M Page, T Sari, J Geiselmann International Workshop on Hybrid Systems: Computation and Control, 267-282, 2003 | 85 | 2003 |
Extensions of the chemostat model with flocculation R Fekih-Salem, J Harmand, C Lobry, A Rapaport, T Sari Journal of Mathematical Analysis and Applications 397 (1), 292-306, 2013 | 64 | 2013 |
The mathematical analysis of a syntrophic relationship between two microbial species in a chemostat T Sari, M El Hajji, J Harmand Mathematical Biosciences and Engineering 9 (3), p. 627-p. 645, 2012 | 59 | 2012 |
Non-standard analysis and representation of reality C Lobry, T Sari International Journal of Control 81 (3), 519-536, 2008 | 58 | 2008 |
Perspectives in mathematical modelling for microbial ecology MJ Wade, J Harmand, B Benyahia, T Bouchez, S Chaillou, B Cloez, ... Ecological Modelling 321, 64-74, 2016 | 56 | 2016 |
Asymmetric dispersal in the multi-patch logistic equation R Arditi, C Lobry, T Sari Theoretical population biology 120, 11-15, 2018 | 55 | 2018 |
Global dynamics of the chemostat with different removal rates and variable yields T Sari, F Mazenc Mathematical Biosciences & Engineering 8 (3), 827-840, 2011 | 53 | 2011 |
A model of a syntrophic relationship between two microbial species in a chemostat including maintenance T Sari, J Harmand Mathematical Biosciences 275, 1-9, 2016 | 51 | 2016 |
A density-dependent model of competition for one resource in the chemostat R Fekih-Salem, C Lobry, T Sari Mathematical biosciences 286, 104-122, 2017 | 48 | 2017 |
Anaerobic membrane bioreactor modeling in the presence of Soluble Microbial Products (SMP)–the Anaerobic Model AM2b B Benyahia, T Sari, B Cherki, J Harmand Chemical Engineering Journal 228, 1011-1022, 2013 | 48 | 2013 |
Generalised approach to modelling a three-tiered microbial food-web T Sari, MJ Wade Mathematical Biosciences 291, 21-37, 2017 | 45 | 2017 |
On the Blasius problem B Brighi, A Fruchard, T Sari | 45 | 2008 |
Competition for a single resource and coexistence of several species in the chemostat N Abdellatif, R Fekih-Salem, T Sari Mathematical Biosciences & Engineering 13 (4), 631-652, 2016 | 43 | 2016 |