Límites expandidos: intersecciones entre diseño y tecnología en la nueva era industrial

dc.contributor.authorHernández Olave, Juan Sebastián
dc.contributor.authorBarriga Amaya, Santiago
dc.contributor.authorArgüello Vásquez, Andrés Mauricio
dc.contributor.authorÁvila Forero, Juan Sebastián
dc.contributor.authorHerrera Cáceres, Fabian
dc.contributor.authorHolguín Poveda, Laura Carolina
dc.contributor.authorRamírez Nates, Camilo
dc.contributor.authorBenavides Nieves, Julián
dc.contributor.authorTsukamoto Uchida, Beatriz
dc.contributor.authorRonderos Guzmán, Nina Erika
dc.contributor.authorArias Ortiz, Wanderley Augusto
dc.date.accessioned2024-03-28T17:13:57Z
dc.date.available2024-03-28T17:13:57Z
dc.date.issued2024-04
dc.description.abstract«Límites expandidos: intersecciones entre diseño y tecnología en la nueva era industrial» busca orientar a la comunidad académica y a los lectores interesados en el diseño, la tecnología y sus relaciones hacia los diversos enfoques con que puede abordarse esta interacción conceptual, así como ampliar el panorama en el diseño de productos. El libro corresponde a una reflexión situada sobre la visión contempo- ránea de la industrialización con diversas técnicas y orientaciones de vanguardia, que puede constituirse en la visión prospectiva del diseño, desde la academia y la industria, para los próximos años.
dc.description.abstractenglishExpanded Limits: Intersections between Design and Technology in the New Industrial Era seeks to guide the academic community and readers interested in design, technology and their relationships towards the various perspectives with which this conceptual interaction can be approached, as well as expand the panorama in product design. The book corresponds to a situated reflection on the contemporary vision of industrialization with various avant-garde techniques and orientations, which can constitute the prospective vision of design, from academia and industry, for the coming years.
dc.description.sponsorshipUniversidad El Bosque
dc.identifier.instnameinstname:Universidad El Bosquespa
dc.identifier.isbn9789587394269
dc.identifier.reponamereponame:Repositorio Institucional Universidad El Bosquespa
dc.identifier.repourlhttps://repositorio.unbosque.edu.co
dc.identifier.urihttps://hdl.handle.net/20.500.12495/12056
dc.language.isoes
dc.publisher.grantorUniversidad El Bosquespa
dc.relation.referencesAntonelli, P. y Aldersey-Williams, H. (2008). Design and the elastic mind. The Museum of Modern Art
dc.relation.referencesBijker, W. E. (1997). Of bicycles, bakelites, and bulbs: Toward a theory of sociote- chnical change. mit Press.
dc.relation.referencesFundación Española para la Ciencia y la Tecnología (feCyt). (2007). Libro blanco de la interrelación entre Arte, Ciencia y Tecnología en el Estado español.
dc.relation.referencesFindeli, A. y Bousbaci, R. (2005). L'éclipse de l'objet dans les théories du projet en design. The Design Journal, 8(3), 35-49.
dc.relation.referencesFranssen, M., Kroes, P., Reydon, T. A. y Vermaas, P. E. (2014). Artifact kinds. Ontology and the Human-Made World. Springer. https://doi. org/10.1007/978-3-319-00801-1
dc.relation.referencesGray, C. y Malins, J. (2016). Visualizing research: A guide to the research process in art and design. Routledge.
dc.relation.referencesHoukes, W. y Vermaas, P. E. (2010). Technical functions: On the use and design of artefacts (vol. 1). Springer Science & Business Media.
dc.relation.referencesLeach, N. (2014). Parametrics explained. Next Generation Building, 1(1).
dc.relation.referencesMitcham, C. (1994). Thinking through technology: The path between engineering and philosophy. University of Chicago Press.
dc.relation.referencesMoggridge, B. y Atkinson, B. (2007). Designing interactions (vol. 17). mit Press.
dc.relation.referencesNorman, D. A. (1998). La psicología de los objetos cotidianos (vol. 6). Editorial Nerea.
dc.relation.referencesPinch, T. J., Bijker, W., Bijker, F. W., Hughes, T. P. y Pinch, T. J. (2008). 8 “the social construction of facts and artifacts”. Technology and Socie- ty: Building our Sociotechnical Future.
dc.relation.referencesPfaffenberger, B. (1992). Social Anthropology of Technology. Annual Re- view of Anthropology, 21, 491-516.
dc.relation.referencesRead, D. W. (2009). Artifact classification: A conceptual and methodological approach. Left Coast Press.
dc.relation.referencesRogers, E. M. (1995). Lessons for guidelines from the diffusion of in- novations. The Joint Commission journal on quality improvement, 21(7), 324-328.
dc.relation.referencesSchön, D. A. (1987). Educating the reflective practitioner: Toward a new design for teaching and learning in the professions. Jossey-Bass.
dc.relation.referencesSchyfter, P. (2009). The bootstrapped artifact: A collectivist account of technological ontology, functions, and normativity. Studies in His- tory and Philosophy of Science Part A, 40(1), 102-111.
dc.relation.referencesSemper, G., Müller, K. O., Bötticher, K., Mallgrave, H. F., Pelli, C. y Az- piazu, J. I. (2013). Semper: El estilo: El estilo en las artes técnicas y tectó- nicas, o, Estética práctica, y textos complementarios. Azpiazu ediciones.
dc.relation.referencesTomassiello, R. (2014). Tecnología en diseño: hacia una enseñanza innovadora y creativa. ediUnC.
dc.relation.referencesVermaas, P y Houkes, W. (2003). Ascribing Functions to Technical Arte- facts: a Challenge to etiological accounts of functions. British Jour- nal of Philosophy of Science, 54, 261-289
dc.relation.referencesAsimov, I. (2004). I Robot. Spectra.
dc.relation.referencesAsimov, I. (2012). Visiones de Robot. Debolsillo.
dc.relation.referencesBest Crowdfunding Projects. (2022, 16 de septiembre). A Kickstarter Pro- ject We Love: Meet Loona - The Most Intelligent Petbot. https://youtu.be/ tg0CKxLLLAA
dc.relation.referencesColgate, J. E., Peshkin, M. A. y Wannasuphoprasit, W. (1996). Cobots: Robots for Collaboration with Human Operators. En International Mechanical Engineering Congress and Exhibition, (pp. 433-439). Atlanta. Ecuastudio Marketing y Estrategias. (2018, 10 de mayo). Ulo, la cámara búho. https://youtu.be/_wKTaMxeI8M?list=PLW2pRWFZXYb51J-
dc.relation.referencesElectric Teeth. (2022, 8 de noviembre). Oral-B iO Series 6 (iO6) Review. https://youtu.be/rY4QOjCNsmE
dc.relation.referencesEngineering, Y. (2020, 8 de enero). Kickstarter. https://ksr-ugc.imgix.net/ assets/018/681/899/46edc0dfa2e149e9b0f2b45364e7b971_ori- ginal.jpg?ixlib=rb-4.0.2&crop=faces&w=1552&h=873&fit=cro- p&v=1508231060&auto=format&frame=1&q=92&s=85da78c- 8068667377d05c7526847dc7d
dc.relation.referencesFerrovial. (2023, 21 de junio). Robótica.
dc.relation.referencesFonckel Light. (2012, 2 de abril). Fonckel One demonstration. https://you- tu.be/D7kvXDhbRUM?list=PLW2pRWFZXYb7Piwq8Ich8ria- GrR26Y8ZE
dc.relation.referencesGoodrich, M. A. y Schultz, A. C. (2007). Human-Robot Interaction: A Sur- vey. Foundations and Trends in Human-Computer Interaction, 203-275.
dc.relation.referencesIgor Gabrielan. (12 de agosto de 2016). Bearbot, emotive universal remote now on Indiegogo. https://youtu.be/iOIjWCySXvQ?list=PLW2pRWFZXYb- 51Jt3pQZ5ZUXgGjpDM2P1C
dc.relation.referencesJoyanes Aguilar, L. (2018, marzo). La industria 4.0: La cuarta revolución indus- trial. Alfaomega Colombia S.A.
dc.relation.referencesKawasaki’s Robots. (2022, 15 de junio). Kawasakirobotics. The Story of the Kawasaki-Unimate: Japan’s First Domestically Manu- factured Industrial Robot. https://kawasakirobotics.com/blog/ the-story-of-the-kawasaki-unimate-japans-first-domestically-ma- nufactured-industrial-robot/
dc.relation.referencesLópez, C. A. (2008). Historia de la Computación. Guatemala.
dc.relation.referencesMerino, M. y Pérez Porto, J. (2022, 13 de julio). Definición de robot. ht- tps://definicion.de/robot/
dc.relation.referencesMLive. (2018, 11 de abril). McDonald’s owner demonstrates new touch-screen kiosks. https://youtu.be/t3Gi1kab-qQ
dc.relation.referencesNutriequipo. (2019, 14 de marzo). Tutorial Tanita RD-901 IronMan. https:// youtu.be/eNDUHRyFIjs
dc.relation.referencesReal Academia Española. (2023). Robot. https://dle.rae.es/robot Ritzer, G. (2007). The Coming of Post-Industrial Society. McGraw-Hill.
dc.relation.referencesRoss, P. (2023). Studio Philip Ross. https://studiophilipross.nl/work#/ phd-research/
dc.relation.referencesSmart Halo 2. (2019, 12 de junio). Sir Apfelot. https://i0.wp.com/www. sir-apfelot.de/wp-content/uploads/2019/06/smarthalo-2-funktio- nen-neuerungen.jpg
dc.relation.referencesSmartHalo. (2019, 29 de mayo). SmartHalo 2 —Make Your Bike Even Smarter. https://youtu.be/ZNDrGw7Bxjw?list=PLW2pRWFZXYb- 7Piwq8Ich8riaGrR26Y8ZE
dc.relation.referencesSmartHalo. (2019, 29 de mayo). SmartHalo 2 —Make Your Bike Even Smarter. https://youtu.be/ZNDrGw7Bxjw?list=PLW2pRWFZXYb- 7Piwq8Ich8riaGrR26Y8ZE
dc.relation.referencesTechTarget. (2022, noviembre). TechTarget. https://www.techtarget.com/ searchenterpriseai/definition/social-robot
dc.relation.referencesYukai Engineering Inc. (2017, 20 de octubre). Qoobo | A Tailed Cus- hion That Heals Your Heart. https://youtu.be/f2heW910o7c?lis- t=PLW2pRWFZXYb7Piwq8Ich8riaGrR26Y8ZE
dc.relation.referencesBurke, M. J. (2020). Applied ergonomics handbook. CRC Press.
dc.relation.referencesChartered Institute of Ergonomics and Human Factors (CieHf). (2023). ¿What is the ergonomis? https://ergonomics.org.uk/learn/what-is-er- gonomics.html
dc.relation.referencesCourage, C. y Baxter, K. (2005). Understanding your users: A practical guide to user requirements methods, tools, and techniques. Gulf Professional Pu- blishing.
dc.relation.referencesDul, J. y Weerdmeester, B. (2008). Ergonomics for beginners: a quick reference guide. CRC press.
dc.relation.referencesElbert, K. K., Kroemer, H. B. y Hoffman, A. D. K. (2018). Ergonomics: how to design for ease and efficiency. Academic Press.
dc.relation.referencesForlizzi, J. (2018). Moving beyond user-centered design. Interactions. International Ergonomic Association. (2000). ¿What is the ergonomics? Defi-
dc.relation.referencesForlizzi, J. (2018). Moving beyond user-centered design. Interactions. International Ergonomic Association. (2000). ¿What is the ergonomics? Definitions and application. https://iea.cc/about/what-is-ergonomics/ International Organization for Standardization (isO). (2019). Ergonomics of human-system interaction - Part 210: Human-centred design for interactive systems (isO 9241-210:2019). International Organization for Standardization. https://www.iso.org/standard/52075.html
dc.relation.referencesNorman, D. A. (2023). Design for a better world: Meaningful, sustainable, huma- nity centered. mit Press.
dc.relation.referencesSalvendy, G. y Karwowski, W. (Eds.). (2021). Handbook of human factors and ergonomics. John Wiley & Sons.
dc.relation.referencesSoares, M. M. y Rebelo, F. (2016). Ergonomics in design: Methods and techni- ques. CRC Press.
dc.relation.referencesRolston, M. (2018). The myth of human-centered design. FastCompany.
dc.relation.referencesTosi, F. (2020). Designing for People: Design References. http://doi. org/10.1007/978-3-030-33562-5_4.
dc.relation.referencesWorld Design Organization (wdO). (2017). Definition of Industrial Design. Professional Practice Committee. https://wdo.org/about/definition/ Wickens, C. D., Lee, J., Liu, Y. y Gordon-Becker, S. (2003). Designing for
dc.relation.referencesWoodson, W. E., Tillman, B. y Tillman, P. (2016). Human factors design handbook: information and guidelines for the design of systems, facilities, equipment, and products for human use.
dc.relation.referencesConsejo Privado de Competitividad. (2014). Informe nacional de competiti- vidad 2014-2015. Reporte Anual. https://compite.com.co/wp-content/ uploads/2016/07/CPC_INC-2014-2015.pdf
dc.relation.referencesMinisterio de Tecnologías de la Información y las Comunicaciones. (2019). Aspectos básicos de la industria 4.0. República de Colombia.
dc.relation.referencesPerilla, V. (2015). La tecnología en las pymes un paradigma o una visión hacia el futuro [Tesis de grado]. Universidad Militar Nueva Granada.
dc.relation.referencesPerozo, E. (2005, diciembre). El impacto de la gestión tecnológica en el contexto empresarial. Revista Venezolana de Ciencias Sociales, 9(2), 488-504.
dc.relation.referencesPhillips, M. (2004). Estrategias Tecnológicas Competitivas- Editorial Paraninfo. Siller, G. y García, J. (2009, 2007). Main problems faced in implementation of Advanced Manufacturing Technology. ii iCet, 98-102.
dc.relation.referencesWalas, F. (2020, marzo). Implementación de nuevas tecnologías en sis- temas productivos. Impacto sobre los procesos de producción, la organización y los recursos humanos. Semana de Engenharia de produção sul-americana.
dc.relation.referencesAngulo-Valenzuela, C. y Ascuntar-Rivera, M. C. (2020). La enseñanza y aprendizaje del boceto de diseño a través de mediadores tecnoló- gicos. Latinoamericana de Estudios Educativos, 16(2), 137-158. https:// doi.org/10.17151/RLEE.2020.16.2.8
dc.relation.referencesArmstrong, H. (2021). Big Data, Bid Design. Princeton Architectural Press. Boast, R. (2017). The Machine in the Ghost: Digitality and Its Consequences.
dc.relation.referencesBrooker, C. (2011, 1 de diciembre). Charlie Brooker: the dark side of our gadget addiction. https://www.theguardian.com/technology/2011/dec/01/ charlie-brooker-dark-side-gadget-addiction-black-mirror
dc.relation.referencesFiormonte, D., Sukanta, C. y Ricaurte, P. (2022). Introduction. En Global debates in the digital humanities. University of Minnesota Press.
dc.relation.referencesFraillon, J., Ainley, J., Schulz, W., Duckworth, D. y Friedman, T. (2019). iEa International Computer and Information Literacy Study 2018 Assess- ment Framework. https://doi.org/10.1007/978-3-030-19389-8
dc.relation.referencesKevin, H. (2012). Drawing for Product Designers. Laurence King Publishing.
dc.relation.referencesLa Ferla, J. (2008). Artes y medios audiovisuales: Un estado de situación ii: las prác- ticas mediáticas pre digitales y post analógicas (1.a ed.). Nueva Libreria.
dc.relation.referencesLévy, P. (2007). Cibercultura. En La cultura de la sociedad digital. Anthropos. Manovich, L. (2013). El software toma el mando. Editorial UOC. Negroponte, N. (1996). Being Digital. Knopf Doubleday Publishing Group. Radzikowska, M. y Ruecker, S. (2021). Design and Digital Humanities. Intellect. Redondo, E., Fonseca, D., Giménez, L., Santana, G. y Navarro, I. (2012).
dc.relation.referencesAlfabetización digital para la enseñanza de la arquitectura. Un es- tudio de caso. Arquitetura revista, 8(1), 76-87.
dc.relation.referencesRodríguez, N. (2022). Digital Social Sciences and Digital Humanities of the South. En D. Fiormonte, S. Chaudhuri y P. Ricaurte, Global Deba- tes in Digital Humanities. University of Minnesota Press.
dc.relation.referencesAbdelmohsen, S. y Massoud, P. (2021). A material-based computation framework for parametric design education. Open House Internatio- nal, 46(3), 459-475. https://doi.org/10.1108/OHI-02-2021-0043
dc.relation.referencesAguiar, R. y Gonçalves, A. (2015). Programming for Architectu- re: View The Students’ Point of. Proceedings of the Internatio- nal Conference on Education and Research in Computer Aided Architectu- ral Design in Europe, 2, 159-168. https://www.scopus.com/inward/ record.uri?eid=2-s2.0-85127767846&partnerID=40&md5=44ffec- feb17541d92c8a9ef83f47d3ed
dc.relation.referencesAhlquist, S. y Menges, A. (2011). Computational design thinking. In Com- putational Design Thinking. John Wiley and Sons.
dc.relation.referencesAlalouch, C. (2018). A pedagogical approach to integrate parametric thin- king in early design studios. Archnet-iJar, 12(2), 162-181. https:// doi.org/10.26687/archnet-ijar.v12i2.1584
dc.relation.referencesBarczik, G. (2013). Continuous Oscillations A didactic for augmenting architectural design education with computational design techni- ques via integrative feedback loops. Proceedings of the International Conference on Education and Research in Computer Aided Architectural De- sign in Europe, 2, 571-578. https://www.scopus.com/inward/record. uri?eid=2-s2.0-85127847086&partnerID=40&md5=65f09872260c- 8beba85029c57b0d3db7
dc.relation.referencesBarr, D., Harrison, J. y Conery, L. (2011, marzo-abril). Computational Thinking: A Digital Age Skill for Everyone. iStE Learning and Leading with Technology, 5191, 21-22.
dc.relation.referencesCaetano, I., Santos, L. y Leitão, A. (2019). Computational design in archi- tecture: Defining parametric, generative, and algorithmic design. Fron- tiers of Architectural Research, 9(2), 287-300. https://doi.org/10.1016/j. foar.2019.12.008
dc.relation.referencesColakoglu, B. y Yazar, T. (2007). An innovative design education approach: Computational design teaching for architecture. mEtU Journal of the Faculty of Architecture, 24 (Symposium on Computational Design in Architectural Education), 159-168 WE-Arts & amp; Humanities Ci- tation Index.
dc.relation.referencesErhan, H. (2006). Learning from masters: Academic apprenticeship mo- del for computational design education. Caadria 2006 —The Associa- tion for Computer—Aided Architectural Design Research in Asia: Rhythm and Harmony in Digital Space, 53-61.
dc.relation.referencesFricker, P., Kotnik, T. y Borg, K. (2020). Computational Design Peda- gogy for the Cognitive Age. Proceedings of the International Confe- rence on Education and Research in Computer Aided Architectural Design in Europe, 1, 685-692. https://www.scopus.com/inward/record.uri?ei- d=2-s2.0-85128215210&partnerID=40&md5=557a0cd69451617e- df08ab7ac352781a
dc.relation.referencesHacihasanoglu, O. (2019). Architectural Design Studio Culture. In Architec- tural Design Studio Culture, 5(1). https://ssrn.com/abstract=3813068
dc.relation.referencesHysa, D. y Ozkar, M. (2020). Open Design Education: Addressing Accoun- tability in the Age of Computing. Megaron, 15(3), 343-349. https:// doi.org/10.14744/MEGARON.2020.32650 WE - Emerging Sources Citation Index (ESCI).
dc.relation.referencesLecourtois, C. y Guéna, F. (2012). Architectural design education and parametric modeling: An architecturological approach. In Compu- tational Design Methods and Technologies: Applications in Cad, Cam and CaE Education (pp. 338-350). https://doi.org/10.4018/978-1-61350- 180-1.ch019
dc.relation.referencesLyche, W., Berg, A. y Andreassen, K. (2018). Parametric design thinking about digital and material surface patterns. Proceedings of the 20th International Conference on Engineering and Product Design Education, E and PdE 2018. https:// www.scopus.com/inward/record.uri?eid=2-s2.0-85057770011&part- nerID=40&md5=66951f34d5eeee5868561eae74a7ce0b
dc.relation.referencesOxman, R. (2005). Theory and design in the first digital age. Design Studies, 27(3), 229-265. https://doi.org/10.1016/j.destud.2005.11.002
dc.relation.referencesQian, Z., Chen, Y. y Woodbury, R. (2010). Design patterns to support collaborative parametric design. International Journal of Design Scien- ces and Technology, 17(1), 57-75. https://www.scopus.com/inward/ record.uri?eid=2-s2.0-78751670151&partnerID=40&md5=ae- 1f068aa33446ef7fd7e064ecea2048
dc.relation.referencesSanford, J. F. y Naidu, J. T. (2016). Computational Thinking Concepts for Grade School. Contemporary Issues in Education Research (CiEr), 9(1), 23-32. https://doi.org/10.19030/cier.v9i1.9547
dc.relation.referencesSoleimani, A. (2019). Computational Design Thinking and Thinking De- sign Computing. In Education by Design (Issue October 18-20, 2019). https://doi.org/10.1061/ciegag.0000393
dc.relation.referencesSousa, J. P. y Xavier, J. P. (2015). Symmetry-based generative design and fabrication: A teaching experiment. Automation in Construction, 51(C), 113-123. https://doi.org/10.1016/j.autcon.2014.11.001
dc.relation.referencesSperanza, P. (2016). Using parametric methods to understand place in urban design courses. Journal of Urban Design, 21(5), 661-689. https:// doi.org/10.1080/13574809.2015.1092378
dc.relation.referencesTaber, K. (2018). Scaffolding learning: Principles for effective teaching and the design of classroom resources. https://www.researchgate.net/publica- tion/327833000
dc.relation.referencesTerzidis, K. (2006). Algorithmic architecture. In Algorithmic Architecture. ht- tps://doi.org/10.4324/9780080461298
dc.relation.referencesUysal, V. Ş. y Topaloğlu, F. (2017). Bridging the Gap: A Manual Primer into Design Computing in the Context of Basic Design Education. International Journal of Art and Design Education, 36(1), 21-38. https:// doi.org/10.1111/jade.12048
dc.relation.referencesYazar, T. (2015). Design of Dataflow. Nexus Network Journal, 17(1), 311- 325. https://doi.org/10.1007/s00004-014-0222-8
dc.relation.referencesYazici, S. (2020). Rule-based rationalization of form: learning by com- putational making. International Journal of Technology and Design Edu- cation, 30(3), 613-633. https://doi.org/10.1007/s10798-019-09509-5 Zapata-Ros, M. y Pérez-Paredes, P. (2018). El Pensamiento Computacional, análisis de una competencia clave (Kindle Edi). CreateSpace Independent Publishing Platform.
dc.relation.referencesAdargoma-Suarez García, L., Espinosa-Escudero, M., Domínguez, M. (2020). Sustainable Design in 3D Printing: State of the Art. dYna,
dc.relation.referencesHira, A. y Hynes, M. (2021). How do designers and engineers practice design while Making? A narrative inquiry of designers who Make. Information and Learning Sciences, 122(11/12), 749-773. https://doi- org.ezproxy.unbosque.edu.co/10.1108/ILS-08-2020-0195
dc.relation.referencesLee, J., Sing, S., Zhou, M. y Yeong, W. (2018). 3D bioprinting processes: A perspective on classification and terminology. International Jour- nal of Bioprinting, 4(2), 151. http://dx.doi.org/10.18063/ijb.v4i2.151
dc.relation.referencesPedgley, O. (2009). Influence of stakeholders on industrial design ma- terials and manufacturing selection. International Journal of Design, 3(1), 1-15.
dc.relation.referencesPrashar, G., Vasudev, H. y Bhuddhi, D. (2022). Additive manufacturing: expanding 3D printing horizon in industry 4.0. Int J Interact Des Manuf. https://doi-org.ezproxy.unbosque.edu.co/10.1007/s12008- 022-00956-4
dc.relation.referencesRayna, T. y Striukova, L. (2016). From rapid prototyping to home fabri- cation: How 3D printing is changing business model innovation. Technological Forecasting and Social Change, Elsevier, 102(C), 214-224.
dc.relation.referencesSun, H. (2021). Innovation strategy of 3D printing in industrial design based on vision sensor. Journal of Sensors, 1-11.
dc.relation.referencesWei Liu, J. M. y Songhe, Y. (2019). The Customer-Dominated Innovation Process: Involving Customers as Designers and Decision-Makers in Developing New Product. The Design Journal, 223, 299-324. https:// doi.org/10.1080/14606925.2019.1592324
dc.relation.referencesBürdek B. E., Dale, M., Richter S. y Hausmann, N. (2015). Design: history, theory and practice of product design.
dc.relation.referencesCastillo Hewstone, C. (2019). La Mesa de Mayo. https://www.puntomedic. cl/la-mesa-mayo/
dc.relation.referencesCross, N. (1982). Designerly ways of knowing. Design Studies, 3(4), 221-227.
dc.relation.referencesJacobson, R. Jautelat, S., Raabe, J. y Wienke, L. (2019). El uso de Agile para la atención a clientes. https://www.mckinsey.com/capabilities/opera- tions/our-insights/bringing-agile-to-customer-care/es-CL
dc.relation.referencesPlattner, H. (2018). Guía del proceso creativo. Mini guía: una introducción al Design Thinking + Bootcamp bootleg. https://repositorio.uesiglo21.edu. ar/handle/ues21/14439
dc.relation.referencesSchon, D. A. (1968). The reflective practitioner. https://studenthublive.open. ac.uk/sites/studenthublive.open.ac.uk/files/reflective%20practitio- ner%20-%20schon.pdf
dc.relation.referencesShedroff, N., Lavín, C., Martín, R. S., Rosales, P., Mondragón, S. y Ver- gara, M. (2008). Las emociones están en camino a la innovación significativa. Revista Faz, 2, 8-19.
dc.relation.referencesRudd, J., Stern, K. y Isensee, S. (1996). Low vs. high-fidelity prototy- ping debate. Interactions, 3(1), 76-85. https://dl.acm.org/doi/ pdf/10.1145/223500.223514
dc.relation.referencesWeed, B. (1996). The industrial design of the software industry. aCm SigChi Bulletin, 28(3), 8-11.
dc.relation.referencesAriès, P. (1981). The Hour of Our Death: The Classic History of Western Attitudes Toward Death over the Last One Thousand Years. Barnes & Noble.
dc.relation.referencesBarbancho, J. R. (2007). De cuerpo presente. Narrativas del cuerpo en Andalucía. Junta de Andalucía, Consejería de Cultura.
dc.relation.referencesBarnitz, J. (2001). Arte latinoamericano en el siglo xx. University of Texas. Bourdieu, P. (1992). Las reglas del arte. Anagrama.
dc.relation.referencesÇaşkurlu, M. (2014). The Interaction of Technology and Art: New Media Art, The Current Situation in Turkey and Recommendations. Gazi Üniversitesi Sanat ve Tasarım Dergisi, 14, 45-62.
dc.relation.referencesClark, K. (1956). El desnudo: un estudio de la forma ideal. Editorial Phaidon. Clarke, M. (2007). Verbalizing the visual: translating art and design into words. AVA Publishing.
dc.relation.referencesColt, H. (2009). Appreciation of the Aesthetic: A New Dimension for a Medicine and Movies program.
dc.relation.referencesDolev, J., Friedlaender, L. y Braverman, I. (2001). Use of fine art to en- hance visual diagnostic skills. Jama: the journal of the American Medical Association, 286, 1020-1.
dc.relation.referencesElkins, J. (2004). On the Strange Place of Religion in Contemporary Art. Routledge. Garland-Thomson, R. (2009). Staring: How We Look. Editorial Oxford University Press.
dc.relation.referencesGergen, K. J. (2000). The Self in the Age of Information. The mit Press. Gere, C. (2008). Digital Culture. Reacktion Books.
dc.relation.referencesGombrich, E. H., (1995). La historia del arte. Editorial Phaidon. Grondlund, M. (2017). Contemporary art and digital culture. Routledge, Taylor & Francis Group.
dc.relation.referencesJones, C. A. (2012). Sensorium: Embodied Experience, Technology, and Contem- porary Art. mit Press.
dc.relation.referencesKemp, M. y Wallace, M. (2000). Spectacular Bodies: The Art and Science of the Human Body from Leonardo to Now. Hayward Gallery Publishing.
dc.relation.referencesMacneill, P. U. (2011). The arts and medicine: a challenging relationship. Med. Humanit.
dc.relation.referencesNagy, P. y Neff, G. (2015). Imagined Affordance: Reconstructing a Keyword for Communication Theory. Social Media.
dc.relation.referencesPerry, M., Maffulli, N., Willson, S. y Morrissey, D. (2011). The effective- ness of arts-based interventions in medical education: a literature review. Medical Education, 45(2), 141-148.
dc.relation.referencesPerry, M., Maffulli, N., Willson, S. y Morrissey, D. (2011). The effective- ness of arts-based interventions in medical education: a literature review. Medical Education, 45(2), 141-148.
dc.relation.referencesPreece, D., Williams, S. B., Lam, R. y Weller, R. (2013). “Let's Get Phy- sical”: Advantages of a physical model over 3d computer models and textbooks in learning imaging anatomy. Anatomical Sciences Edu- cation, 6(4), 216-224.
dc.relation.referencesRamírez M., C. (2016). Contingent Beauty: Contemporary Art from Latin Ameri- ca. Museum of Fine Arts Houston.
dc.relation.referencesSchwartz, H. (1996). The Culture of the Copy: Striking Likenesses, Unreasonable Facsimilies. Zone Books.
dc.relation.referencesTurkle, S. (1997). Life on the Screen: Identity in the Age of the Internet. Simon & Schuster.
dc.relation.referencesVan Dijck, J. (2013). The Culture of Connectivity: A Critical History of Social Media. Oxford University Press.
dc.subjectDiseño industrial
dc.subjectDiseño de producto
dc.subjectDiseño – Innovaciones tecnológicas
dc.subjectDiseñadores
dc.subjectArte y diseño
dc.titleLímites expandidos: intersecciones entre diseño y tecnología en la nueva era industrial
dc.title.translatedExpanded Limits: Intersections between Design and Technology in the New Industrial Era
dc.typebook
dc.type.coarhttps://purl.org/coar/resource_type/c_2f33
dc.type.driverinfo:eu-repo/semantics/book
dc.type.hasversioninfo:eu-repo/semantics/publishedVersion
dc.type.locallibrospa

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