Realistic image synthesis of plant structures for genetic analysis
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Graham R. Nudd | D. Wang | Darren J. Kerbyson | G. J. King | G. Nudd | D. Kerbyson | D. Wang | G. King | G.J King
[1] John von Neumann,et al. Theory Of Self Reproducing Automata , 1967 .
[2] H. Honda. Description of the form of trees by the parameters of the tree-like body: effects of the branching angle and the branch length on the sample of the tree-like body. , 1971, Journal of theoretical biology.
[3] Grzegorz Rozenberg,et al. Theory of L Systems: from the point of view of formal language theory , 1974, L Systems.
[4] H. Honda,et al. Tree Branch Angle: Maximizing Effective Leaf Area , 1978, Science.
[5] H. Honda,et al. Ratio of tree branch lengths: The equitable distribution of leaf clusters on branches. , 1979, Proceedings of the National Academy of Sciences of the United States of America.
[6] H. Honda,et al. BRANCH GEOMETRY AND EFFECTIVE LEAF AREA: A STUDY OF TERMINAUA‐BRANCHING PATTERN. 1. THEORETICAL TREES , 1979 .
[7] Walter J. Savitch,et al. Growth Functions of Stochastic Lindenmayer Systems , 1980, Inf. Control..
[8] H. Honda,et al. COMPUTER SIMULATION OF BRANCH INTERACTION AND REGULATION BY UNEQUAL FLOW RATES IN BOTANICAL TREES , 1981 .
[9] H. Honda,et al. Two Geometrical Models of Branching of Botanical Trees , 1982 .
[10] B. R. Neal,et al. The morphology and growth of Arctostaphylos uva-ursi (bearberry): an architectural analysis , 1983 .
[11] Ricki Blau,et al. Approximate and probabilistic algorithms for shading and rendering structured particle systems , 1985, SIGGRAPH.
[12] Przemyslaw Prusinkiewicz,et al. Applications of L-systems to computer imagery , 1986, Graph-Grammars and Their Application to Computer Science.
[13] Przemyslaw Prusinkiewicz,et al. Graphical applications of L-systems , 1986 .
[14] Marc Jaeger,et al. Plant models faithful to botanical structure and development , 1988, SIGGRAPH.
[15] Przemyslaw Prusinkiewicz,et al. Development models of herbaceous plants for computer imagery purposes , 1988, SIGGRAPH.
[16] Przemyslaw Prusinkiewicz,et al. The Algorithmic Beauty of Plants , 1990, The Virtual Laboratory.
[17] R. Morelli,et al. L-system representation of speciation in the red algal genus Dipterosiphonia(Ceramiales, Rhodomelaceae) , 1991 .
[18] John M. Norman,et al. FROM ARTIFICIAL LIFE TO REAL LIFE: COMPUTER SIMULATION OF PLANT GROWTH∗ , 1991 .
[19] P. Prusinkiewicz,et al. Modelling compound leaves using implicit contours , 1992 .
[20] R. Walde,et al. L-system computer simulations of branching divergence in some dorsiventral members of the tribe Polysiphonieae (Rhodomelaceae, Rhodophyta) , 1992 .
[21] Przemyslaw Prusinkiewicz,et al. Animation of plant development , 1993, SIGGRAPH.
[22] P. Prusinkiewicz,et al. Modeling the architecture of expanding Fraxinus pennsylvanica shoots using L-systems , 1994 .
[23] Przemyslaw Prusinkiewicz,et al. Subapical Bracketed L-Systems , 1994, TAGT.
[24] Huw Jones,et al. An L-systems approach to the modelling of fungal growth , 1995, Comput. Animat. Virtual Worlds.
[25] R. Engelhardt,et al. EARLY BIOLOGICAL MORPHOGENESIS AND NONLINEAR DYNAMICS , 1995 .
[26] Przemyslaw Prusinkiewicz,et al. Visualization of Developmental Processes by Extrusion in Space-time , 1996, Graphics Interface.
[27] Radomír Mech,et al. Visual models of plants interacting with their environment , 1996, SIGGRAPH.
[28] Przemyslaw Prusinkiewicz,et al. L-systems: from the Theory to Visual Models of Plants , 2001 .