1. Dorr, G.J., et al.: Combining spray drift and plant architecture modeling to minimize environmental and public health risk of pesticide application. In: Proceedings of 2005 International Congress on Modeling and Simulation. Melbourne, Australia, pp. 279–285 (2005)
2. Mercer, G., Sweatman, W.L., Elvin, A., et al.: Process driven models for spray retention by plants. In: Proceedings of the 2006 Mathematics in Industry Study Group, pp. 57–85. Mathematics in Industry study group Press, New Zealand (2006)
3. Robert, C., Fournier, C., Andrieu, B., Ney, B.: Coupling a 3D virtual wheat (Triticum aestivum) plant model with a Septoria tritici epidemic model (Septo3D): a new approach to investigate plant–pathogen interactions linked to canopy architecture. Funct. Plant Biol. 35(1–2), 997–1013 (2008)
4. Li, J., Tang, L., Chen, C.: Visualization of canopy endophytes space distribution based on virtual plant. J. Central South Univ. Forest. Technol. 32(6), 138–141 (2012)
5. Hanan, J., Prusinkiewicz, P., Zalucki, M., et al.: Simulation of insect movement with respect to plant architecture and morphogenesis. Comput. Electron. Agric. 35, 255–269 (2002)