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1. Verfasser: di, Zhang
Format: Preprint
Veröffentlicht: 2025
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Online-Zugang:https://arxiv.org/abs/2503.11970
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author di, Zhang
author_facet di, Zhang
contents Motion aftereffect (MAE) offers valuable insights into the mechanisms underlying motion-in-depth (MID) perception. This study investigates two critical aspects of MAE in depth: (1) the potential directional asymmetry between motion toward versus away from the observer, and (2) the effect of induced eye vergence on MAE magnitude. We conducted two experiments using random dot stereograms (RDS) to isolate the interocular velocity difference (IOVD) mechanism. In Experiment 1, we compared MAE magnitude following adaptation to motion-toward versus motion-away stimuli with a static fixation point. In Experiment 2, we introduced a fixation point oscillating in depth to induce vergence eye movements during adaptation and testing. Our results revealed a directional asymmetry in MAE strength, with motion-toward adaptation producing stronger aftereffects than motion-away adaptation in Experiment 1. When eye vergence was induced in Experiment 2, this pattern was reversed, with motion-away adaptation yielding stronger MAEs. These findings suggest an important interaction between adaptation direction and eye vergence state in MID perception, highlighting the complex integration of retinal and extra-retinal signals in the visual system's processing of motion through depth.
format Preprint
id arxiv_https___arxiv_org_abs_2503_11970
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Effect factors of motion aftereffect in depth: Adaptation direction and induced eyes vergence
di, Zhang
Human-Computer Interaction
Motion aftereffect (MAE) offers valuable insights into the mechanisms underlying motion-in-depth (MID) perception. This study investigates two critical aspects of MAE in depth: (1) the potential directional asymmetry between motion toward versus away from the observer, and (2) the effect of induced eye vergence on MAE magnitude. We conducted two experiments using random dot stereograms (RDS) to isolate the interocular velocity difference (IOVD) mechanism. In Experiment 1, we compared MAE magnitude following adaptation to motion-toward versus motion-away stimuli with a static fixation point. In Experiment 2, we introduced a fixation point oscillating in depth to induce vergence eye movements during adaptation and testing. Our results revealed a directional asymmetry in MAE strength, with motion-toward adaptation producing stronger aftereffects than motion-away adaptation in Experiment 1. When eye vergence was induced in Experiment 2, this pattern was reversed, with motion-away adaptation yielding stronger MAEs. These findings suggest an important interaction between adaptation direction and eye vergence state in MID perception, highlighting the complex integration of retinal and extra-retinal signals in the visual system's processing of motion through depth.
title Effect factors of motion aftereffect in depth: Adaptation direction and induced eyes vergence
topic Human-Computer Interaction
url https://arxiv.org/abs/2503.11970