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Tangible interfaces in perspective

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References

  1. Ullmer B (2002) Tangible interfaces for manipulating aggregates of digital information. PhD Thesis, MIT Media Laboratory, Cambridge, Massachusetts

  2. Ishii H, Ullmer B (1997) Tangible bits: towards seamless interfaces between people, bits, and atoms. In: Proceedings of the CHI’97 conference on human factors in computing systems, Atlanta, Georgia, March 1997, pp 234–241

  3. Weiser M (1991) The computer for the 21st century. Scientific American 265(3):94–104

    Google Scholar 

  4. Weiser M, Brown J (1995) Designing calm technology. Available at http://www.ubiq.com/weiser/calmtech/calmtech.htm

  5. Wellner P, Mackay W, Gold R (eds) (1993) Special issue on computer-augmented environments. Commun ACM 36(7)

  6. Polynor R (1995) The hand that rocks the cradle. ID Magazine, May/June, pp 60–65

    Google Scholar 

  7. Cohen J, Withgott M, Piernot P (1999) Logjam: a tangible multi-person interface for video logging. In: Proceedings of the CHI’99 conference on human factors in computing systems, Pittsburgh, Pennsylvania, May 1999, pp 128–135

  8. Singer A, Hindus D, Stifelman L, White S (1999) Tangible progress: less is more in Somewire audio spaces. In: Proceedings of the CHI’99 conference on human factors in computing systems, Pittsburgh, Pennsylvania, May 1999, pp 104–111

  9. Fitzmaurice G, Ishii H, Buxton W (1995) Bricks: laying the foundations for graspable user interfaces. In: Proceedings of the CHI’95 conference on human factors in computing systems, Denver, Colorado, May 1995, pp 442–449

  10. Hinckley K, Pausch R, Goble J, Kassel N (1994) Passive real-world interface props for neurosurgical visualization. In: Proceedings of the CHI’94 conference on human factors in computing systems, Boston, Massachusetts, April 1994, pp 452–458

  11. Suzuki H, Kato H (1993) AlgoBlock: a tangible programming language, a tool for collaborative learning. In: Proceedings of the 4th European logo conference (Eurologo’93), Athens, Greece, August 1993, pp 297–303

  12. Perlman R (1976) Using computer technology to provide a creative learning environment for preschool children. MIT AI Lab memo 360, Logo memo 24, 1976

  13. Aish R (1979) Three-dimensional input for CAAD systems. Comput Aided Des 11(2):66–70

    Google Scholar 

  14. Aish R, Noakes P (1984) Architecture without numbers—CAAD based on a 3D modelling system. Comput Aided Des 16(6):321–328

    Article  Google Scholar 

  15. Frazer J (1982) Three-dimensional data input devices. In: Computers/graphics in the building process, National Academy of Sciences, Washington

    Google Scholar 

  16. Frazer J (1994) An evolutionary architecture. Architectural Association, London

    Google Scholar 

  17. Anagnostou G, Dewey D, Patera A (1989) Geometry-defining processors for engineering design and analysis. Vis Comput 5:304–315

    Google Scholar 

  18. Oba H (1990) Environment audio system for the future. Sony concept video

  19. Naimark M (1984) Spatial correspondence in motion picture display. In: SPIE Proceedings 1984, vol 462

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Correspondence to Lars Erik Holmquist.

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Holmquist, L.E., Schmidt, A. & Ullmer, B. Tangible interfaces in perspective. Pers Ubiquit Comput 8, 291–293 (2004). https://doi.org/10.1007/s00779-004-0292-9

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