The auditory motionaftereffect: Its tuning and specificity in the spatial and frequency domains
- 1 July 2000
- journal article
- Published by Springer Nature in Perception & Psychophysics
- Vol. 62 (5) , 1099-1111
- https://doi.org/10.3758/bf03212091
Abstract
In this paper, the auditory motion aftereffect (aMAE) was studied, using real moving sound as both the adapting and the test stimulus. The sound was generated by a loudspeaker mounted on a robot arm that was able to move quietly in three-dimensional space. A total of 7 subjects with normal hearing were tested in three experiments. The results from Experiment 1 showed a robust and reliable negative aMAE in all the subjects. After listening to a sound source moving repeatedly to the right, a stationary sound source was perceived to move to the left. The magnitude of the aMAE tended to increase with adapting velocity up to the highest velocity tested (20/sec). The aftereffect was largest when the adapting and the test stimuli had similar spatial location and frequency content. Offsetting the locations of the adapting and the test stimuli by 20 reduced the size of the effect by about 50%. A similar decline occurred when the frequency of the adapting and the test stimuli differed by one octave. Our results suggest that the human auditory system possesses specialized mechanisms for detecting auditory motion in the spatial domainKeywords
This publication has 35 references indexed in Scilit:
- Auditory Aftereffects following Simulated Motion Produced by Varying Interaural Intensity or TimePerception, 1994
- Spatial frequency selective mechanisms underlying the motion aftereffectVision Research, 1992
- Minimum audible movement angle in the horizontal plane as a function of stimulus frequency and bandwidth, source azimuth, and velocityThe Journal of the Acoustical Society of America, 1992
- Is Velocity of Motion Aftereffect Proportional to Velocity of InductionPerceptual and Motor Skills, 1986
- Detection and discrimination of simulated motion of auditory targets in the horizontal planeThe Journal of the Acoustical Society of America, 1986
- Spatial Frequency Selectivity of Spiral AftereffectPerceptual and Motor Skills, 1982
- Anthropometric manikin for acoustic researchThe Journal of the Acoustical Society of America, 1975
- Evidence for the existence of neural mechanisms selectively sensitive to the direction of movement in spaceThe Journal of Physiology, 1973
- Evidence for a Physiological Explanation of the Waterfall Phenomenon and Figural After-effectsNature, 1963
- The After-Effect of Visually Observed MovementThe American Journal of Psychology, 1934