C. Montanvert-a, Géométrie discrète en analyse d'images, Hermès, 1991.

C. J. Messéan-a, « Impact du colza transgénique dans les systèmes de culture : étude du flux de gènes, pp.111-113, 1997.

C. N. Clermont-dauphin, M. , and «. Genesys-rape, A model of the influence of cropping system on gene escape from herbicide tolerant rapeseed crops to rape volunteers, Agric. Ecosyst. Environ, vol.83, pp.235-270, 2001.

C. N. Molinari-n and M. Messéan-a, « Spatial aspects of gene flow between rapeseed varieties and volunteers », Agronomy for sustainable development, pp.355-368, 2005.

. Crawley-m and . Brown-s, Seed Limitation and the Dynamics of Feral Oilseed Rape on the M25 Motorway, Proc. of the Royal Society of London, pp.49-54, 1995.
DOI : 10.1098/rspb.1995.0008

D. C. Lavigne-c, . Falentin-guyomarc-'h-h, L. J. Vautrin-s, and . Klein-e, « High diversity of oilseed rape pollen clouds over an agro-ecosystem indicates long-distance dispersal, Molecular Ecology, vol.14, pp.2269-228, 2005.

F. T. Wenzel-g and . Schwarz-g, « Outcrossing frequencies and distribution of transgenic oilseed rape (Brassica napus L.) in the nearest neighbourhood, European journal of agronomy, vol.24, pp.26-34, 2006.

G. C. Giboire-n, . Viaud-v, . Houet-t, . J. Baudry, and . Burel-f, « A domain-specific language for patchy landscape modelling : The Brittany agricultural mosaic as a case study, Ecological Modelling, vol.194, pp.1-3, 2006.

K. E. Lavigne-c, P. H. , M. R. , and G. , « Pollen dispersal of oilseed rape : estimation of the dispersal function and effects of field dimension, Journal of Applied Ecology, vol.43, issue.1, pp.141-151, 2006.

L. Ber, F. Benoît-m, M. Schott-c, and . Mignolet-c, Studying crop sequences with CarrotAge, a HMM-based data mining software, Ecological Modelling, vol.191, issue.1, pp.170-185, 2006.
DOI : 10.1016/j.ecolmodel.2005.08.031

URL : https://hal.archives-ouvertes.fr/hal-00017169

L. D. , C. F. , and M. Mesmin-d, « Anticiper l'assolement pour mieux gérer les ressources en eau : comment valoriser les données d'occupation du sol ?, Ingénieries eau agriculture territoires, pp.42-55, 2005.

D. Von and . M. Lippe, « Dispersal of arable crops by vehicles-a potential vector for the spread of genetically modified organisms, Proceedings of the 34th Annual Conference of the Ecological Society, p.276, 2004.

. Mac and M. M. Mackisack, « Homogeneous rectangular tessellations », Advances in Applied Probability, vol.28, pp.993-1013, 1996.

M. A. Angevin-f, . M. Gómez-barbero, . Menrad-k, and . E. Rodríguez-cerezo, « New case studies on the coexistence of GM and non-GM crops in European agriculture, Technical Report Series of the Joint Research Center of the European Commission, 2006.

P. F. , L. J. Emeriau-v, . Krouti-m, and G. Messéan-a, « Persistence of oilseed rape (Brassica napus L.) outside of cultivated fields, Theor. appl. Genet, vol.102, pp.841-846, 2001.

R. M. Lamond-m and P. C. , « Pollen-mediated movement of herbicide resistance between commercial canola fields, Science, vol.296, pp.2386-2388, 2002.

. J. Scheffler and D. P. Parkinson-r, Frequency and distance of pollen dispersal from transgenic oilseed rape (Brassica napus), Transgenic Research, vol.103, issue.6, pp.356-364, 1993.
DOI : 10.1007/BF01976177

S. G. , C. J. , and R. G. Thompson-c, Gene flow and agriculture : relevance for transgenic crops, de British Crop Protection Council Symposium Proceedings, pp.57-64, 1999.

. Wei and C. S. Weiten, « Pavage de l'espace suivant des contraintes de forme et de taille, 2005.