id |
sigradi2016_637 |
authors |
Castro Arenas, Cristhian; Miralles, Monica |
year |
2016 |
title |
Naturaleza, Sinergia, Tensegridad y Biotensegridad, ?es 1 + 1 = 4? [Nature, Sinergy, Tensegrity and Biotensegrity, ?is 1 + 1 = 4?] |
source |
SIGraDi 2016 [Proceedings of the 20th Conference of the Iberoamerican Society of Digital Graphics - ISBN: 978-956-7051-86-1] Argentina, Buenos Aires 9 - 11 November 2016, pp.118-122 |
summary |
The optimization of resources in nature has stimulated the creation of strategies to facilitate the interchange of energy, matter and information. Observation of these natural phenomena allowed Fuller to develop the concept of Tensegrity Systems in the 50's, generating a growing integration of multidisciplinary views on this subject. In this paper Tensegrity is postulated, given its peculiar synergistic qualities, as a paradigmatic and emergent concept in the projectual disciplines, both as a type of system displaying reciprocal interactions between a given number of nodes, and as a structural system with potential applications in multiple, evolving, scientific-technological fields. |
keywords |
Sinergy; Tensegrity; Biotensegrity; Fuller; Systems |
series |
SIGRADI |
email |
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full text |
file.pdf (430,594 bytes) |
references |
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(1961)
Tensegrity
, Portfolio and Art News Annual, 4, 112-127, 144-148
|
|
|
|
(1965)
Continuous Tension, Discontinuous Compression Structure
, Patente estadounidense, No. 3,169,611. 6 Feb 1965
|
|
|
|
(1968)
General systems theory
, New York, 41973, 40
|
|
|
|
(1970)
Open-systems theory. Readings on Organization Theory
, Open-Systems Approaches, 13-32
|
|
|
|
(1975)
Synergetics: Explorations in the Geometry of Thinking
, Macmillan Publishing Co. Inc
|
|
|
|
(1993)
Cellular tensegrity: defining new rules of biological design that govern the cytoskeleton
, Journal of cell science, 104, 613-613
|
|
|
|
(1997)
Tensegrity: the architectural basis of cellular mechanotransduction
, Annual review of physiology, 59(1), 575-599
|
|
|
|
(1998)
In the laboratory of constructivism: Karl Ioganson's cold structures
, October, 84, 91-117
|
|
|
|
(2000)
Put the shoulder to the wheel: a new biomechanical model for the shoulder girdle
, MechanoTransduction. Societe biomechanique, Paris, 131-136
|
|
|
|
(2003)
Tensegrity II. How structural networks influence cellular information processing networks
, Journal of cell science, 116(8), 1397-1408
|
|
|
|
(2003)
Tensegrity I. Cell structure and hierarchical systems biology
, Journal of cell science, 116(7), 1157-1173
|
|
|
|
(2005)
Biomimetism and bioinspiration as tools for the design of innovative materials and systems
, Nature materials, 4(4), 277-288
|
|
|
|
(2006)
Tensegrity: the new biomechanics
, Textbook of musculoskeletal medicine, 9
|
|
|
|
(2008)
Mechanism as Mind-What Tensegrities and Caterpillars Can Teach Us about Soft Robotics
, ALIFE, 506-512
|
|
|
|
(2009)
Controversial origins of Tensegrity
, International Association of Spatial Structures IASS Symposium 2009, Editorial Universitat Polit?cnica de Valencia
|
|
|
|
(2015)
Super Ball Bot - Structures for Planetary Landing and Exploration
, NIAC Phase 2 - Final Report. NASA Innovative Advanced Concepts (NIAC) Program. NASA Ames Research Center. Intelligent Systems Division. Recuperado de NASA Technical Report Server (NTRS)
|
|
|
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last changed |
2021/03/28 19:58 |
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