Tau as a potential control variable for visually guided braking.
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[1] J M Flach,et al. Sources of optical information useful for perception of speed of rectilinear self-motion. , 1990, Journal of experimental psychology. Human perception and performance.
[2] M G Harris,et al. Human sensitivity to temporal proximity: The role of spatial and temporal speed gradients , 1994, Perception & psychophysics.
[3] Andrew Petersen,et al. Stability and skill in driving. , 2002, Human movement science.
[4] R T Spurr. SUBJECTIVE ASPECTS OF BRAKING , 1969 .
[5] Christos D Giachritsis,et al. Coarse-grained information dominates fine-grained information in judgments of time-to-contact from retinal flow , 2000, Vision Research.
[6] M. Mon-Williams,et al. Vertical gaze angle: absolute height-in-scene information for the programming of prehension , 2001, Experimental Brain Research.
[7] David N. Lee,et al. A Theory of Visual Control of Braking Based on Information about Time-to-Collision , 1976, Perception.
[8] D Regan,et al. Do Monocular Time-to-Collision Estimates Necessarily Involve Perceived Distance? , 1999, Perception.
[9] Zijiang J. He,et al. Distance determined by the angular declination below the horizon , 2001, Nature.
[10] W Schiff,et al. Information Used in Judging Impending Collision , 1979, Perception.
[11] A. Meer,et al. Timing strategies used in defensive blinking to optical collisions in 5- to 7-month-old infants , 2000 .
[12] B G Bardy,et al. Visual control of braking in goal-directed action and sport. , 1997, Journal of sports sciences.
[13] V Cavallo,et al. Visual Information and Skill Level in Time-To-Collision Estimation , 1988, Perception.
[14] Berthold K. P. Horn. Robot vision , 1986, MIT electrical engineering and computer science series.
[15] Nicholas E. Scott-Samuel,et al. Sub-pixel accuracy: Psychophysical validation of an algorithm for fine positioning and movement of dots on visual displays , 1996, Vision Research.