Desde la bio-imitación a la bioextrapolación: Diseño Basado en Simbiogénesis como medio para la resolución creativa biológicamente inspirada

  • Alejandro Durán-Vargas
  • Daniela Rojas-Levy
Palavras-chave: Biologicamente Inspirado Design (BID) ; Design Baseado em Symbiogenesis ; Problem;driven BID ; Solution;driven BID ; symbiont

Resumo

A origem das ideias depende, em muitos casos, da capacidade analógica assumida pelo designer de extrapolar as qualidades da fonte de inspiração. Quando essa inspiração vem do natural, nós o reconhecemos como um design inspirado na biologia. Este artigo apresenta um resumo dessas abordagens, juntamente com o potencial do Design Based on Symbiogenesis como um modelo que, além de reconhecer o valor da analogia biológica, incorpora a dinâmica evolutiva associada à origem das espécies por meio da cooperação e integração, por meio da simbiose.

Referências

Boden, M. A. (1996). Creativity. In Artificial intelligence (pp. 267-291). Academic Press.

Camere, S. & Karana, E. (2018). Fabricating materials from living organisms: An emerging design practice. Journal of Cleaner Production, 186, 570-584.

Cordua, C. (1996). Wittgenstein: análogos del lenguaje. Areté, 8(2), 191-213.

de Bary, A. (1879). Die erscheinung der symbiose. Verlag von Karl J. Trubner, Strassburg.

Dumas, J. S. & Redish, J. (1999). A practical guide to usability testing. Intellect books.

Durán, A. & O’Ryan, L. (2019). Symbiogenesis-Based Design: a novel methodological approach to design based on cooperation and integration. The Design After, Cumulus Conference Proceedings Series Bogota 2019, 554-567.

Fayemi, P. E.; Maranzana, N.; Aoussat, A. & Bersano, G., “Bio-inspired design characterisation and its links with problem solving tools,” Proc. Int. Des. Conf. Des. 2014-Janua, D. Marjanović; M. Štorga; N. Pavković, and N. Bojčetić, Eds., 173-182, The Design Society,

Glasgow, UK. (2014). Fujii, H.; Yoshida, K. & Sugimura, K. (2016). Research and development strategy in biological technologies: A patent data analysis of Japanese manufacturing firms. Sustainability, 8(4), 351. Helms, M.; Vattam, S. S. & Goel, A. K., “Biologically inspired design: process and products,” Des. Stud. 30(5), 606-622 (2009).

ISO 18458 (2015). “Biomimetics-Terminology, Concepts and Methodology,” ISO 2015. Lenau, T. A.; Metze, A. L. & Hesselberg, T. (2018). Paradigms for biologically inspired design. In Bioinspiration, Biomimetics, and Bioreplication VIII (Vol. 10593, p. 1059302). International Society for Optics and Photonics.

Margulis, L. & Fester, R. (Eds.). (1991). Symbiosis as a source of evolutionary innovation: speciation and morphogenesis. Mit Press.

Margulis, L. & Sagan, D. (2008). Acquiring genomes: A theory of the origin of species. Basic books.

Margulis, L. and Dorion, S. (1998). Microcosmos: Four Billion Years of Evolution from Our Microbial Ancestors. University of California Press.

Mironov, V.; Trusk, T.; Kasyanov, V.; Little, S.; Swaja, R. & Markwald, R. (2009). Biofabrication: a 21st century manufacturing paradigm. Biofabrication, 1(2), 022001.

Risbud, A. S. & Bartl, M. H. (2013). Engineered Biomimicry: Chapter 14. Solution-Based Techniques for Biomimetics and Bioreplication. Elsevier Inc. Chapters.

Rojas, D. and Durán, A.(2017). Shelley: Soft-robot sintético-natural acuático, energéticamente sustentable; oxigenador por movimiento y purificador por plantas. Tesis presentada a Escuela de Diseño UC.

Shu, L. H.; Ueda, K.; Chiu, I. & Cheong, H. (2011). Biologically inspired design. CIRP Annals, 60(2), 673-693.

Vandevenne, D.; Verhaegen, P. A.; Dewulf, S. & Duflou, J. R. (2011). A scalable approach for the integration of large knowledge repositories in the biologically-inspired design process. In DS 68-6: Proceedings of the 18th International Conference on Engineering Design (ICED 11), Impacting Society through Engineering Design, Vol. 6: Design Information and Knowledge, Lyngby/Copenhagen, Denmark, 15.-19.08. 2011 (pp. 210-219).

Publicado
2021-08-06
Como Citar
Durán-Vargas, A., & Rojas-Levy, D. (2021). Desde la bio-imitación a la bioextrapolación: Diseño Basado en Simbiogénesis como medio para la resolución creativa biológicamente inspirada. Cuadernos Del Centro De Estudios De Diseño Y Comunicación, (133). https://doi.org/10.18682/cdc.vi133.5004