What determines the detection of changes in motion velocity? A comment on Dzhafarov, Sekuler, and Allik (1993)
- 1 January 1996
- journal article
- editorial
- Published by Springer Nature in Perception & Psychophysics
- Vol. 58 (7) , 1133-1137
- https://doi.org/10.3758/bf03206839
Abstract
We comment on a recent model aimed at explaining data on speed of reaction to motion onset and to changes in motion velocity. The model is based on calculating the running variance of the stimulus positions passed during the motion. We show that although the model is successful in explaining data on motion onset and suprathreshold velocity changes, it may not be able to explain data on time of reaction to changes in velocity when these are near the detection threshold.Keywords
This publication has 12 references indexed in Scilit:
- Temporal thresholds and reaction time to changes in velocity of visual motionVision Research, 1995
- Detection of changes in speed and direction of motion: Reaction time analysisPerception & Psychophysics, 1993
- The relation between the velocity of visual motion and the reaction time to motion onset and offsetVision Research, 1992
- Reaction times to motion onset and motion detection thresholds reflect the properties of bilocal motion detectorsVision Research, 1989
- Principles of visual motion detectionTrends in Neurosciences, 1989
- Human velocity and direction discrimination measured with random dot patternsVision Research, 1988
- Motion processing in peripheral vision: Reaction time and perceived velocityVision Research, 1982
- A local mechanism for differential velocity detectionVision Research, 1981
- Models of stimulus uncertainty in motion perception.Psychological Review, 1980
- Models of stimulus uncertainty in motion perception.Psychological Review, 1980