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On interocular transfer of motion aftereffects
N J Wade1, M T Swanston, C M de Weert
1Department of Psychology, Dundee University, Scotland.
Perception
|January 1, 1993
Summary
Interocular transfer of the motion aftereffect (MAE) was quantified, revealing it stems from adapting relative motion detectors. This visual phenomenon shows significant, though not complete, transfer between eyes.
Area of Science:
- Visual Neuroscience
- Perception
- Motion Perception
Background:
- The motion aftereffect (MAE) is a visual illusion where prolonged viewing of motion in one direction leads to the perception of motion in the opposite direction upon cessation of the stimulus.
- Recent studies suggest MAE arises from adapting detectors sensitive to relative, rather than purely retinal, motion.
- Interocular transfer (IOT) of the MAE, where adaptation in one eye influences perception in the other, provides insights into binocular processing.
Purpose of the Study:
- To quantitatively assess the interocular transfer (IOT) of the motion aftereffect (MAE).
- To investigate the role of relative motion detectors in MAE.
- To examine the dichoptic interactions underlying MAE.
Main Methods:
- Experiments involved presenting moving gratings to one or both eyes to induce MAE.
- IOT of MAE was measured by adapting one eye and testing with the other, or using dichoptic configurations.
- Adaptation and testing conditions varied central and flanking grating presentations across eyes.
Main Results:
- The MAE showed approximately 30% interocular transfer when the fellow eye was dark or presented a stationary grating.
- Dichoptic presentation of stimuli revealed complex interactions, with MAEs largely confined to conditions matching adaptation.
- Surround MAEs and MAEs tested binocularly after alternating monocular adaptation showed similar durations, suggesting robust underlying mechanisms.
Conclusions:
- The MAE is primarily a consequence of adapting relative-motion detectors.
- These relative-motion detectors can be either monocular or binocular (OR class).
- Findings support a model where MAE processing involves both specific monocular pathways and binocular interactions.