English

Beyond Symbols: Motion Perception Cues Enhance Dual-Task Performance with Wearable Directional Guidance

Human-Computer Interaction 2026-01-27 v1

Abstract

Directional cues are crucial for environmental interaction. Conventional methods rely on symbolic visual or auditory reminders that require semantic interpretation, a process that proves challenging in demanding dual-tasking scenarios. We introduce a novel alternative for conveying directional cues on wearable displays: directly triggering motion perception using monocularly presented peripheral stimuli. This approach is designed for low visual interference, with the goal of reducing the need for gaze-switching and the complex cognitive processing associated with symbols. User studies demonstrate our method's potential to robustly convey directional cues. Compared to a conventional arrow-based technique in a demanding dual-task scenario, our motion-based approach resulted in significantly more accurate interpretation of these directional cues (p=.008p=.008) and showed a trend towards reduced errors on the concurrent primary task (p=.066p=.066).

Keywords

Cite

@article{arxiv.2601.17799,
  title  = {Beyond Symbols: Motion Perception Cues Enhance Dual-Task Performance with Wearable Directional Guidance},
  author = {Qing Zhang and Junyu Chen and Yifei Huang and Jing Huang and Thad Starner and Kai Kunze and Jun Rekimoto},
  journal= {arXiv preprint arXiv:2601.17799},
  year   = {2026}
}