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Refereed Paper

Novel Method to Measure Inference Affordance in Static Small-Multiple Map Displays Representing Dynamic Processes

Pages 201-215 | Published online: 18 Jul 2013

References

  • Abbott, A. (1990). A Primer on Sequence Methods. Organisation Science 1(4): 375–392.
  • Abbott, A. (1995). Sequence Analysis: New Methods for Old Ideas. Annual Review of Sociology 21: 93–113.
  • Andrienko, G., Andrienko, N., and Wrobel, S. (2007). Visual Analytics Tools for Analysis of Movement Data. ACM SIGKDD Explorations 9(2): 38–46.
  • Andrienko, N. and Andrienko, G. (2007). Designing Visual Analytics Methods for Massive Collections ofMovement Data. Cartgraphica 42(2): 117–138.
  • Bertin, J. (1967). Semiologie Graphique: Les Diagraimnes - les Reseaux - les Cartes, Mouton, Paris.
  • Bétrancourt, M. and Tversky, B. (2000). Effect of Computer Animation on Users' Performance: A Review. Le travail Humain 63(4): 311–330.
  • Bétrancourt, M., Morrison Bauer, J., and Tversky, B. (2000). Les Animations Sont-Elles Vraiment Plus Efficaces? Revue D'Intelligence Artificielle 14: 149–166.
  • Brodersen, L., Andersen, H. H. K., and Weber, S. (2002). Applying Eye-Movement Tracking for the Study of Map Perception and Map Design, Kort and Matrikelstyrelsen. National Survey and Cadastre Denmark, Copenhangen, Denmark.
  • Cutler, M. E. (1998). The Effects of Prior knowledge on Children's Ability to Read Static and Animated Maps. Unpublished MS thesis. Department of Geography, University of South Carolina, Columbia, SC.
  • Duchowski (2007). Eye Tracking Methodology, Springer, Berlin, Germany.
  • Encyclopxdia Britannica (2008). Muybridge, Eadweard. (http://www.britannica.com/eb/article-9054508/Eadweard-Muybridge, Jan. 8,2008)
  • Fabrikant, S. I. (2005). Towards an Understanding of Geovisualisation With Dynamic Displays: Issues and Prospects. Proceedings, American Association for Artificial Intelligence (AAAI) 2005 Spring Symposium Series: Reasoning with Mental and External Diagrams: Computational Modeling and Spatial Assistance, Stanford University, Stanford, CA, Mar. 21–23,2005: 6–11.
  • Fabrikant, S. I. and Goldsberry, K. (2005). Thematic Relevance and Perceptual Salience of Dynamic Geovisualisation Displays. Proceedings, 22th ICA/ACI International Cartographic Conference, A Corufia, Spain, Jul. 9–16: (CDROM).
  • Griffin, A. L., MacEachren, A. M., Hardisty, F., Steiner, E., and Li, B. (2004). A Comparison of Animated Maps with Static Small-Multiple Maps for Visually Identifying Space-Time Clusters. Annals of the Association of American Geographers 96(4): 740–753.
  • Grossmann, T. (2007). Ansatz zur Untersuchung der Wahrnelunung bei geographischen Darstellungen. EM Werkz,eug zur visuellen Exploration von Blickregistrierungsdaten. Unpublished Master Thesis. UNIGIS Program, Salzburg.
  • Hacisalihzade, S. S., Stark, L. W., and Allen, J. S. (1992). Visual Perception and Sequences of Eye Movement Fixations: A Atochastic Modeling Approach. IEEE Transactions on Systems, Man and Cybernetics 22(3): 474–481.
  • Harrower, M. (2003). Designing Effective Animated Maps. Cartographic Perspectives 44: 63–65.
  • Harrower, M. (2007). The Cognitive Limits of Animated Maps. Cartographica 42(4): 349–357.
  • Harrower, M. and Fabrikant, S. I. (in press). The Role of Map Animation in Geographic Visualisation. In: Dodge, M., Turner M., and McDerby, M., (eds.), Geographic Visualisation: Concepts, Tools and Applications, Wiley, Chichester, UK, pp. 49–65.
  • Hegarty, M. (1992). Mental Animation: Inferring Motion from Static Displays of Mechanical Systems. Journal of Experimental Psychology: Learning, Memory, and Cognition 18(5): 1084–1102.
  • Hegarty, M. and Sims, V. K. (1994). Individual Differences in Mental Animation During Mechanical Reasoning. Memory and Cognition 22: 411–430.
  • Henderson, J. M. (2007). Regarding Scenes. Current Directions in Psychological Science 16: 219–222.
  • Henderson, J. M. and Hollingworth, A. (1998). Eye Movements During Scene Viewing: An Overview. In: Underwood, G., (ed.), Eye Guidance in Reading and Scene Perception: Eye Guidance while Reading and While Watching Dynamic Scenes, Elsevier, Oxford, UK: 269–293.
  • Irwin, E. (2004). Fixation Location and Fixation Duration as Indices of Cognitive Processing. In: Henderson, J. M., and Ferreira, F., (eds.), The Integration of Language, Vision, and Action: Eye Movements and the Visual World, Psychology Press, New York, NY: 105–134.
  • Joh, C.-H., Arentze, T., Hofman, F., and Timmermans, H. (2002). Activity Pattern Similarity: A Multidimensional Sequence Alignment Method. Transportation Research Part B 36: 385–403.
  • Koussoulakou, A. and Kraak, M. J. (1992). Spatio-temporal Maps and Cartographic Communication. The Cartographic Journal 29: 101–108.
  • Kriz, S. and Hegarty, M. (2007). Top-down and Bottom-up Influences on Learning from Animations. International Journal of Human-Computer Studies 65: 911–930.
  • Krygier, J. B., Reeves, C., DiBiase, D., and J. Cupp, J. (1997). Multimedia in Geographic Education: Design, Implementation, and Evaluation. Journal of Geography in Higher Education 21(1): 17–39.
  • Laube, P. and Purves, R. (2006). An Approach to Evaluating Motion Pattern Detection Techniques in Spatio-Temporal Data. Computers, Environment and Urban Systems 30(3): 347–374.
  • Laube, P., Dennis, T., Forer, P., and Walker, M. (2007). Movement Beyond the Snapshot - Dynamic Analysis of Geospatial Lifelines. Computers, Environment and Urban Systems 31(5): 481–501.
  • Lowe, R. K. (1999). Extracting Information from an Animation during Complex Visual Learning. European Journal of Psychology of Education 14(2): 225–244.
  • MacEachren, A. M. and Kraak, M.-J. (2001). Research Challenges in Geovisualisation. Cartography and Geographic Information Science 28(1), 13–28.
  • MacEachren, A. M., Dai, X., Hardisty, F., Guo, D., and D. L. (2003). Exploring High-D Spaces with Multiform Matrices and Small Multiples. Proceedings, IEEE Symposium on Information Visualisation, Seattle, WA, Oct. 19–24,2005: (CDROM).
  • Montello, D. R. (2002). Cognitive Map-Design Research in the 20th Century: Theoretical and Empirical Approaches. Cartography and Geographic Information Science. Special Issue on The History of Cartography in the 20th Century 29(3): 283–304.
  • Morrison, J. B. and Tversky, B. (2001). The (in)effectiveness of Animation in Instruction. Proceedings, Jacko J., and Sears, A., (eds.), Extended Abstracts of the ACM Conference on Human Factors in Computing Systems, Seattle, WA: 377–378.
  • Morrison, J. B., Bétrancourt, M., and Tverksy, B. (2000). Animation: Does it Facilitate Learning? Proceedings, Papers from the 2000 AAAI Spring Symposium, Smart Graphics: 53–60.
  • Rayner, K., (ed.). (1992). Eye Movements and Visual Cognition: Scene Perception and Reading, Springer Verlag, New York, N.Y.
  • Rayner, K. (1998). Eye Movements in Reading and Information Processing: 20 Years of Research. Psychological Bulletin 124(3): 372–422.
  • Rensink, R. A., O'Regan, J. K., and Clark, J. J. (1997). To See or Not to See: The Need for Attention to Perceive Changes in Scenes. Psychological Science 8: 368–373.
  • Saitou, N. and Nei, M. (1987). The Neighbor-Joining Method: A New Method for Reconstructing Phylogenetic Trees. Molecular Biology and Evolution 4: 406–425.
  • Sankoff, D. and Kruskal, J. (1983). Time Warps, String Edits, and Macromolecules: The Theory and Practice of Sequence Comparision, Addison-Wesley, Reading, MA.
  • Scaife, M. and Rogers, Y. (1996). External Cognition: How Do Graphical Representations Work? International Journal of Human-Computer Studies 45: 185–213.
  • Shoval, N. and Isaacson, M. (2007). Sequence Alignment as a Method for Human Activity Analysis in Space and Time. Annals of the Association of American Geographers 92(2): 282–297.
  • Simon, H. A. and Larkin, J. H. (1987). Why a diagram is (sometimes) worth ten thousand words. Cognitive Science 11: 65–100.
  • Slocum, T. A., Sluter, R. S., Kessler, F. C., and Yoder, S. C. (2004). A Qualitative Evaluation of MapTime, A Program for Exploring Spatiotemporal Point Data. Cartographica 39(3): 43–68.
  • Steinke, T. R. (1987). Eye Movement Studies in Cartography and Related Fields. Cartographica 24(2): 40–73.
  • Sweller, J. (1994). Cognitive Load Theory, Learning Difficulty, and Instructional Design. Learning and Instruction 4: 295–312.
  • Thomas, J. J. and Cook, K. A. (2005). Illuminating the Path: Research and Development Agenda for Visual Analytics, IEEE Press, Richland, WA.
  • Tufte, E. (1983). The Visual Display of Quantitative Information, Graphics Press, Cheshire, Connecticut.
  • Tversky, B., Bauer Morrison, J., and Bétrancourt, M. (2002). Animation: Can it Facilitate? International Journal of Human-Computer Studies 57: 247–262.
  • Wade, N. and Tatler, B. (2005). The Moving Tablet of the Eye: The origins of modern eye movement research, Oxford University Press, Oxford, UK.
  • West, J., Haake, A. R, Rozanski, E. P., and Karn, K. S. (2006). eye Pattems: Software for Identifying Patterns and Similarities Across Fixation Sequences. Proceedings, 2006 Symposium on Eye tracking Research & Applications, San Diego, CA, Mar. 27–29, 2006: 149–154.
  • Wilson, C. (2006). Reliability of Sequence Alignment Analysis of Social Processes: Monte Carlo tests of ClustalG software. Environment and Planning A 38: 187–204.
  • Wilson, C., Harvey, A., and Thompson, J. (1999). ClustalG: Software for Analysis of Activities and Sequential Events. Proceedings, Longitudinal Research in Social Sciences: A Canadian Focus, Windermere Manor, London, Ontario, Canada, Oct. 25–27, 1999.

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