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Methods in Molecular Biology (Clifton, N.J.)|November 25, 2021
Gene Regulatory Network Investigation Using Ordinary Differential EquationsEtienne Farcot, Nathan MellorJournal of Mathematical Biology|December 31, 2005
Geometric properties of a class of piecewise affine biological network modelsEtienne FarcotActa Biotheoretica|October 20, 2009
Periodic solutions of piecewise affine gene network models with non uniform decay rates: the case of a negative feedback loopEtienne Farcot, Jean-Luc GouzéCurrent Opinion in Plant Biology|August 7, 2015
Modeling plant development: from signals to gene networksCyril Lavedrine, Etienne Farcot, Teva VernouxPlos One|March 4, 2015
Self-organization of plant vascular systems: claims and counter-claims about the flux-based auxin transport modelChrystel Feller, Etienne Farcot, Christian MazzaPlos One|March 26, 2015
A modular analysis of the auxin signalling networkEtienne Farcot, Cyril Lavedrine, Teva VernouxCurrent Opinion in Plant Biology|December 11, 2012
Plant hormone signaling during development: insights from computational modelsMarina Oliva, Etienne Farcot, Teva VernouxPlos Computational Biology|September 21, 2017
The logic of the floral transition: Reverse-engineering the switch controlling the identity of lateral organsJean-Louis Dinh, Etienne Farcot, Charlie HodgmanBulletin of Mathematical Biology|October 12, 2012
Probabilistic approach for predicting periodic orbits in piecewise affine differential modelsMadalena Chaves, Etienne Farcot, Jean-Luc GouzéPlos One|February 6, 2013
The flux-based PIN allocation mechanism can generate either canalyzed or diffuse distribution patterns depending on geometry and boundary conditionsMichael Luke Walker, Etienne Farcot, Jan Traas, et al.Pageof 5