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Self-organizing primitives for automated shape composition.

, , and . Shape Modeling International, page 147-154. IEEE Computer Society, (2008)

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Chemotaxis-Inspired Cellular Primitives for Self-Organizing Shape Formation., and . Morphogenetic Engineering, Toward Programmable Complex Systems, Springer, (2012)Self-organizing primitives for automated shape composition., , and . Shape Modeling International, page 147-154. IEEE Computer Society, (2008)An Emergent System for Self-Aligning and Self-Organizing Shape Primitives., , and . SASO, page 445-454. IEEE Computer Society, (2008)Cell-level 3D reconstruction and quantification of the Drosophila wing imaginal disc., , , , and . IJBRA, 15 (2): 174-189 (2019)Directing Chemotaxis-Based Spatial Self-Organization via Biased, Random Initial Conditions., , , and . CoRR, (2018)Calculating Center of Mass in an Unbounded 2D Environment., and . J. Graphics Tools, 13 (4): 53-60 (2008)Chemotaxis-based sorting of self-organizing heterotypic agents., , , and . SAC, page 1315-1322. ACM, (2010)Automated shape composition based on cell biology and distributed genetic programming., , and . GECCO, page 1179-1186. ACM, (2008)3D surface reconstruction and visualization of the Drosophila wing imaginal disc at cellular resolution., , , , and . Visualization and Data Analysis, volume 8654 of SPIE Proceedings, page 86540D. SPIE, (2013)Epithelial cell reconstruction and visualization of the developing Drosophila wing imaginal disc., , , , and . BioVis, page 77-84. IEEE Computer Society, (2012)