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Building perceptual color maps for visualizing interval data.

, , , and . Human Vision and Electronic Imaging, volume 3959 of SPIE Proceedings, page 323-335. SPIE, (2000)

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Visibility of simple features on complex backgrounds.. Human Vision and Electronic Imaging, volume 2657 of SPIE Proceedings, page 216-225. SPIE, (1996)Which Trajectories Through Which Perceptually Uniform Color Spaces Produce Appropriate Colors Scales for Interval Data? (Invited Paper)., , , and . CIC, page 321-326. Society for Imaging Science and Technology, (1999)Influence of step frequency on visual speed perception during locomotion., , , and . APGV, page 160. ACM, (2010)Matching visual and nonvisual signals: evidence for a mechanism to discount optic flow during locomotion., and . Human Vision and Electronic Imaging, volume 5666 of SPIE Proceedings, page 434-448. SPIE, (2005)Editorial: Walking in real and virtual environments., and . ACM Trans. Appl. Percept., 4 (1): 1 (2007)Perceptual rules for watermarking images: a psychophysical study of the visual basis for digital pattern encryption., , and . Human Vision and Electronic Imaging, volume 3644 of SPIE Proceedings, page 392-402. SPIE, (1999)Neural and Neuromimetic Perception: A Comparative Study of Gender Classification from Human Gait., , , and . HVEI, Society for Imaging Science and Technology, (2020)Step synchronization and third person speed perception in virtual environment locomotion simulators., , , , and . APGV, page 135. ACM, (2009)Building perceptual color maps for visualizing interval data., , , and . Human Vision and Electronic Imaging, volume 3959 of SPIE Proceedings, page 323-335. SPIE, (2000)Heading assessment by "tunnel vision" patients and control subjects standing or walking in a virtual reality environment., , and . ACM Trans. Appl. Percept., 4 (1): 8 (2007)