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Metaphors create theories for users

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Book cover Spatial Information Theory A Theoretical Basis for GIS (COSIT 1993)

Part of the book series: Lecture Notes in Computer Science ((LNCS,volume 716))

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Abstract

The notion of a spatial information theory is often understood in the sense of a theory underlying the design and implementation of geographic information systems (GIS). This paper offers a different perspective on spatial information theories, taking the point of view of people trying to solve spatial problems by using a GIS. It discerns a need for user level theories about spatial information and describes requirements for them. These requirements are then compared with various views on metaphors held in computer science and cognitive linguistics. It is concluded that a cognitive linguistics perspective on metaphors best matches the requirements for user level theories. Therefore, the user's needs for theories of spatial information should be dealt with by explicitly crafting metaphors to handle spatial information by human beings. The paper discusses traditional and possible future metaphor sources for spatial information handling tasks.

Support from Intergraph Corporation for research on user interfaces is gratefully acknowledged.

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References

  • Abler, R. (1987). The National Science Foundation National Center for Geographic Information and Analysis. International Journal Of Geographical Information Systems, 1(4), 303–326.

    Google Scholar 

  • Aukstakalnis, S., & Blatner, D. (1992). Silicon Mirage: The Art and Science of Virtual Reality. Peachpit Press.

    Google Scholar 

  • Beard, K., & Buttenfield, B. (1991). Visualization of the Quality of Spatial Data (Position Papers Initiative 7. National Center for Geographic Information and Analysis (NCGIA).

    Google Scholar 

  • Campari, I. (1990). Accuracy vs. spatial statistical data: the Mediterranean region. In Proc. EGIS'90, (pp. 134–144). Amsterdam: EGIS Foundation.

    Google Scholar 

  • Carroll, J. M., Mack, R. L., & Kellogg, W. A. (1988). Interface Metaphors and User Interface Design. In M. Helander (Eds.), Handbook of Human-Computer Interaction (pp. 67–85). North-Holland: Elsevier Science Publishers.

    Google Scholar 

  • Dangermond, J. (1986). GIS Trends and Experiences. In D. F. Marble (Ed.), Second International Symposium on Spatial Data Handling, (pp. 1–4). Seattle, WA; July 5–10, 1986.

    Google Scholar 

  • Davies, C., & Medyckyj-Scott, D. (1993). The USIS Project: Surveying User Opinion on GIS User Interfaces. In J. Harts, H. F. L. Ottens, & H. J. Scholten (Ed.), Proc. EGIS'93,1 (pp. 474–483). Genoa, Italy: EGIS Foundation.

    Google Scholar 

  • Egenhofer, M. J., & Herring, J. R. (1991). High-level spatial data structures for GIS. In D. Maguire, D. Rhind, & M. Goodchild (Eds.), Geographic Information Systems: Principles and Applications (pp. 227–237). Longman Publishing Co.

    Google Scholar 

  • Frank, A., Campari, I., & Formentini, U. (Ed.). (1992). Theories and Methods of Spatio-Temporal Reasoning in Geographic Space. Springer Verlag, Lecture Notes in Computer Science vol. 639.

    Google Scholar 

  • Frank, A. U. (1987). Towards a spatial theory. In R. T. Aangeenbrug & Y. M. Schiffman (Ed.), International Geographic Information Systems (IGIS) Symposium: The Research Agenda, II. Crystal City, VA, November 15–18: NASA.

    Google Scholar 

  • Frank, A. U., & Mark, D. M. (1991). Language Issues for Geographical Information Systems. In D. Maguire, D. Rhind, & M. Goodchild (Eds.), Geographic Information Systems: Principles and Applications Longman Publishing Co.

    Google Scholar 

  • Goodchild, M. F., & Gopal, S. (Ed.). (1989). Accuracy of Spatial Databases. Bristol: Taylor & Francis.

    Google Scholar 

  • Gould, M. D., & McGranaghan, M. (1990). Metaphor in Geographic Information Systems. In K. Brassel & H. Kishimoto (Ed.), Fourth International Symposium on Spatial Data Handling, (pp. 433–442). Zurich, Switzerland; July 1990.

    Google Scholar 

  • Gradin, J. (1991). CSCW: The convergence of two development contexts. In CHI'91: Conference on Human Factors in Computing Systems, (pp. 91–98). New Orleans, LA: ACM.

    Google Scholar 

  • Günther, O., & Schek, H.-J. (Ed.). (1991). Advances in Spatial Databases (Second Symposium, SSD' 91, Zurich, Switzerland, August 1991). Springer Verlag.

    Google Scholar 

  • Herring, J., Egenhofer, M. J., & Frank, A. U. (1990). Using Category Theory to Model GIS Applications. In K. Brassel & H. Kishimoto (Ed.), 4th International Symposium on Spatial Data Handling, 2 (pp. 820–829). Zurich, Switzerland: IGU.

    Google Scholar 

  • Johnson, M. (1987). The Body in the Mind: The Bodily Basis of Meaning, Imagination, and Reason. Chicago: The University of Chicago Press.

    Google Scholar 

  • Kuhn, T. (1962). The Structure of Scientific Revolutions. Chicago: University of Chicago Press.

    Google Scholar 

  • Kuhn, W. (1990). From Constructing Towards Editing Geometry. In ACSM/ASPRS Annual Convention, 1 (pp. 153–164). Denver, CO; March 18–23, 1990.

    Google Scholar 

  • Kuhn, W. (1991). Are Displays Maps or Views? In D. Mark & D. White (Ed.), Tenth International Symposium on Computer-Assisted Cartography (Auto Carlo 10), (pp. 261–274). Baltimore, MD.

    Google Scholar 

  • Kuhn, W. (1992). Paradigms of GIS Use. In Proc, 5th Int. Symp. on Spatial Data Handling, 1 (pp. 91–103). Charleston, S.C.

    Google Scholar 

  • Kuhn, W., & Frank, A. U. (1991). A Formalization of Metaphors and Image-Schemas in User Interfaces. In D. M. Mark & A. U. Frank (Eds.), Cognitive and Linguistic Aspects of Geographic Space (pp. 419–434). Dordrecht, The Netherlands: Kluwer Academic Publishers.

    Google Scholar 

  • Lakoff, G. (1987). Women, Fire, and Dangerous Things: What Categories Reveal About the Mind. Chicago: The University of Chicago Press.

    Google Scholar 

  • Lakoff, G., & Johnson, M. (1980). Metaphors We Live By. Chicago: The University of Chicago Press.

    Google Scholar 

  • Mark, D. M., & Frank, A. U. (Ed.). (1991). Cognitive and Linguistic Aspects of Geographic Space. Dordrecht, The Netherlands: Kluwer Academic Publishers.

    Google Scholar 

  • Mark, D. M., Frank, A. U., Kuhn, W., & Willauer, L. (1992). NCGIA Research Initiative 13, Report on the Specialist Meeting: User Interfaces for Geographic Information Systems. Technical Report 92-3. NCGIA Santa Barbara.

    Google Scholar 

  • Mendelson, E. (1964). Introduction to Mathematical Logic. D. Van Nostrand.

    Google Scholar 

  • Negroponte, N. (1989). An Iconoclastic View Beyond the Desktop Metaphor. International Journal on Human-Computer Interaction, 1(1), 109–113.

    Google Scholar 

  • Nelson, T. H. (1990). The Right Way to Think About Software Design. In B. Laurel (Eds.), The Art of Human-Computer Interface Design (pp. 235–243). Addison-Wesley.

    Google Scholar 

  • Norman, D. A. (1988). The Design of Everyday Things.

    Google Scholar 

  • Doubleday. Norman, D. A., & Draper, S. W. (1986). User Centered System Design — New Perspectives in Human-Machine Interaction. Hillsdale N.J.: Lawrence Erlbaum.

    Google Scholar 

  • Onsrud, H., & Masser, I. (Ed.). (in press). Diffusion and Use of Geographic Information Technologies. Kluwer Academic Publishers.

    Google Scholar 

  • Onsrud, H., & Rushton, G. (1992). Institutions Sharing Geographic Information: Report of the Initiative 9 Specialist Meeting (Technical Paper No. 92-5). National Center for Geographic Information and Analysis.

    Google Scholar 

  • Oosterom, P. v., & Bos, J. v. d. (1989). An Object-Oriented Approach to the Design of Geographic Information Systems. Computers & Graphics, 13(4), 409–418.

    Google Scholar 

  • Owen, P. K. (1993). Dynamic Function Triggers in an on-line Topology Environment. In J. Harts, H. F. L. Ottens, & H. J. Schölten (Ed.), EGIS'93,2 (pp. 1249–1256). Genoa, Italy: EGIS Foundation.

    Google Scholar 

  • Shepherd, J. W., Masser, I., Blakemore, M., & Rhind, D. W. (1989). The ESRC's regional research laboratories: An alternative approach to NCGIA? In E. Anderson (Ed.), Auto-Carto 9, (pp. 764–774). Baltimore, MA: ASPRS & ACSM.

    Google Scholar 

  • Smith, D. C. S., Irby, C., Kimball, R., Verplank, B., & Harslam, E. (1982). Designing the Star User Interface. BYTE, p. 242–282.

    Google Scholar 

  • Ziegler, J., & Fähnrich, K. P. (1988). Direct Manipulation. In M. Helander (Eds.), Handbook of Human-Computer Interaction (pp. 123–133). North-Holland: Elsevier Science Publishers.

    Google Scholar 

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Andrew U. Frank Irene Campari

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© 1993 Springer-Verlag Berlin Heidelberg

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Kuhn, W. (1993). Metaphors create theories for users. In: Frank, A.U., Campari, I. (eds) Spatial Information Theory A Theoretical Basis for GIS. COSIT 1993. Lecture Notes in Computer Science, vol 716. Springer, Berlin, Heidelberg. https://doi.org/10.1007/3-540-57207-4_24

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  • DOI: https://doi.org/10.1007/3-540-57207-4_24

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