|
|
- Remmler L. and Rolland-Lagan A.-G. (2012) Computational method for quantifying growth patterns at the adaxial leaf surface in three dimensions. Plant Physiol. accepté. Programmes et Guide de l'utilisateur
- Rolland-Lagan A.-G., Paquette M., Tweedle V. and Akimenko, M.-A. (2012) Morphogen-based simulation model of ray growth and joint patterning during fin development and regeneration. Development 139:1188-1197. Programmes
- Rolland-Lagan A.-G. (2010) Organ size: the role of mobile signals. Curr. Biol. 20:R268-R269.
- Rolland-Lagan A.-G. (2009) Modelling of plant growth and development. In: Encyclopedia of Life Sciences (ELS). John Wiley & Sons, Ltd: Chichester.DOI: 10.1002/9780470015902.a0020107
- Rolland-Lagan A.-G., Amin M., Pakulska M. (2009) Quantifying leaf venation patterns: two-dimensional maps. Plant J. 57:195-205.
- Rolland-Lagan A.-G. (2008) Vein patterning in growing leaves: axes and polarities. Curr. Opin. Genet. Dev. 18:348-353.
- Prusinkiewicz P. and Rolland-Lagan A.-G. (2006) Modeling plant morphogenesis. Curr. Opin. Plant Biol. 9: 83-88.
- Rolland-Lagan A.-G. and Prusinkiewicz P. (2005) Reviewing models of auxin canalization in the context of leaf vein pattern formation in Arabidopsis. Plant J. 44: 854-865.
- Runions A., Fuhrer M., Lane B., Federl P., Rolland-Lagan A.-G. and Prusinkiewicz P. (2005). Modeling and visualization of leaf venation patterns. ACM Transactions on Graphics 24(3): 702-711.
- Rolland-Lagan, A.-G., Coen, E., Impey, S. and Bangham, J.A. (2005) A computational method for inferring growth parameters and shape changes during development based on clonal analysis. J. Theor. Biol. 232:157-177.
- Coen, E., Rolland-Lagan, A.-G., Matthews, M., Bangham, A. and Prusinkiewicz, P. (2004) The genetics of geometry. Proc. Natl. Acad. Sci. U.S.A. 101:4728-4735.
- Rolland-Lagan, A.-G., Bangham,J.A. and Coen, E. (2003) Growth Dynamics underlying petal shape and asymmetry. Nature 422:161-163 News and Views
- Thompson, J.D., Rolland, A.-G., Prugnolle, F. (2002) Genetic variation for sexual dimorphism in flower size within and between populations of gynodioecious Thymus vulgaris. J. Evol. Biol. 15: 362-372.
|