Direct Evidence That “Speedlines” Influence Motion Mechanisms
- 1 October 2002
- journal article
- Published by Society for Neuroscience in Journal of Neuroscience
- Vol. 22 (19) , 8661-8664
- https://doi.org/10.1523/jneurosci.22-19-08661.2002
Abstract
Determining the direction of visual motion poses a serious problem for any visual system, given the inherent ambiguities. Geisler (1999)has suggested that motion streaks left in the wake of a moving target provide a rich source of potential information that could aid in resolving direction ambiguities. Here we provide strong experimental evidence that the human visual system does in fact exploit motion streaks in direction discrimination. Masks comprising oriented random noise impeded direction discrimination of moving dots when the masks were oriented parallel to the direction of motion but had very little effect when oriented orthogonal to the direction of motion. The masking effect decreased systematically with increasing bandwidth for the parallel masks and increased with bandwidth for the orthogonal masks. Importantly, these masks had little effect on neither contrast sensitivity for detecting the moving stimuli nor for speed discrimination. Experiments with “Glass patterns” (moirépatterns constructed from random dot pairs) confirmed that misleading pattern information can impede motion detection. The results show that the oriented streaks left by moving stimuli provide fundamental information about the direction of visual motion; removing these streaks or augmenting them with erroneous streaks severely confounds motion direction discrimination.Keywords
This publication has 16 references indexed in Scilit:
- Motion direction signals in the primary visual cortex of cat and monkeyVisual Neuroscience, 2001
- Temporal dynamics of a neural solution to the aperture problem in visual area MT of macaque brainNature, 2001
- Motion vision: Are ‘speed lines’ used in human visual motion?Current Biology, 2000
- Motion streaks provide a spatial code for motion directionNature, 1999
- Motion deblurring in human visionProceedings Of The Royal Society B-Biological Sciences, 1997
- Different motion sensitive units are involved in recovering the direction of moving linesVision Research, 1993
- The Analysis of Moving Visual PatternsPublished by Springer Nature ,1985
- Phenomenal coherence of moving visual patternsNature, 1982
- Motion smearNature, 1980
- Moiré Effect from Random DotsNature, 1969