Numerical and Visual Representations of Uncertainty Lead to Different Patterns of Decision Making
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[1] Lace M. K. Padilla,et al. The Science of Visual Data Communication: What Works , 2021, Psychological science in the public interest : a journal of the American Psychological Society.
[2] Lace M. K. Padilla,et al. Uncertainty Visualization , 2020, Wiley StatsRef: Statistics Reference Online.
[3] Erika A. Waters,et al. Using the Short Graph Literacy Scale to Predict Precursors of Health Behavior Change , 2019, Medical decision making : an international journal of the Society for Medical Decision Making.
[4] Matthew Kay,et al. In Pursuit of Error: A Survey of Uncertainty Visualization Evaluation , 2019, IEEE Transactions on Visualization and Computer Graphics.
[5] Sarah H. Creem-Regehr,et al. Decision making with visualizations: a cognitive framework across disciplines , 2018, Cognitive Research: Principles and Implications.
[6] Sarah H. Creem-Regehr,et al. Effects of ensemble and summary displays on interpretations of geospatial uncertainty data , 2017, Cognitive Research: Principles and Implications.
[7] Edward T. Cokely,et al. Designing Visual Aids That Promote Risk Literacy: A Systematic Review of Health Research and Evidence-Based Design Heuristics , 2017, Hum. Factors.
[8] Matt Duckham,et al. Evaluating the impact of visualization of wildfire hazard upon decision-making under uncertainty , 2016, Int. J. Geogr. Inf. Sci..
[9] Alan M. MacEachren,et al. How to Assess Visual Communication of Uncertainty? A Systematic Review of Geospatial Uncertainty Visualisation User Studies , 2014 .
[10] Laura D. Scherer,et al. Blocks, Ovals, or People? Icon Type Affects Risk Perceptions and Recall of Pictographs , 2014, Medical decision making : an international journal of the Society for Medical Decision Making.
[11] S. Joslyn,et al. Decisions With Uncertainty: The Glass Half Full , 2013 .
[12] Li-Wei Chao,et al. Predicting (un)healthy behavior: A comparison of risk-taking propensity measures. , 2012, Judgment and decision making.
[13] W. Gaissmaier,et al. Numbers can be worth a thousand pictures: individual differences in understanding graphical and numerical representations of health-related information. , 2012, Health psychology : official journal of the Division of Health Psychology, American Psychological Association.
[14] Mary Hegarty,et al. The Cognitive Science of Visual-Spatial Displays: Implications for Design , 2011, Top. Cogn. Sci..
[15] B. Zikmund‐Fisher,et al. The Effect of Format on Parents' Understanding of the Risks and Benefits of Clinical Research: A Comparison Between Text, Tables, and Graphics , 2010, Journal of health communication.
[16] P. Ubel,et al. The impact of the format of graphical presentation on health-related knowledge and treatment choices. , 2008, Patient education and counseling.
[17] P. Ubel,et al. Measuring Numeracy without a Math Test: Development of the Subjective Numeracy Scale , 2007, Medical decision making : an international journal of the Society for Medical Decision Making.
[18] Ann M. Bisantz,et al. Displaying Uncertainty: Investigating the Effects of Display Format and Specificity , 2005, Hum. Factors.
[19] C. McHorney,et al. Frequency or Probability? A Qualitative Study of Risk Communication Formats Used in Health Care , 2001, Medical decision making : an international journal of the Society for Medical Decision Making.
[20] Lisa M. Schwartz,et al. The Role of Numeracy in Understanding the Benefit of Screening Mammography , 1997, Annals of Internal Medicine.