Continuous Measurement Methods for Transient Physiological Discomfort in VR Locomotion
Tianren Luo, Pengxiang Wang, Shuting Chang, Ke Zhou, Nianlong Li, Yulong Bian, Xiaohui Tan, Qi Wang, Teng Han, Feng Tian
Abstract
Motion sickness, in addition to its persistent long-term effects, also exhibits short-term effects characterized as transient physiological discomfort, which changes rapidly with variations in locomotion. However, such discomforts are challenging to assess using current subjective scales and objective physiological measurements. To tackle this issue, this paper suggests continuous measurement methods designed specifically for evaluating transient physiological discomfort during VR locomotion. Through a user-elicitation study, three preferred measurement methods—’squeezing ball’, ’sliding thumb’, and ’rubbing thigh’—were identified. These techniques were then evaluated for reliability, validity, attention, presence, and workload, with ’sliding thumb’ identified as the most effective option. The paper expands traditional measurement methods to capture users’ physiological experiences in VR interactions, offering practical choices for researchers in this field along with an in-depth discussion of design considerations, detailed implementation guidelines, and potential ways to optimize the VR experiences utilizing the measurement data.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get f02d26fa-a210-447b-be2a-ff0b5e4b8e17Related papers
- Exploring Experience Gaps Between Active and Passive Users During Multi-user Locomotion in VRTianren Luo, Fenglin Lu, Jiafu Lv, Xiaohui Tan et al.CHI 2024 · 10 citations
- Research Trends in Virtual Reality Locomotion TechniquesEsteban Segarra Martinez, Annie S. Wu, Ryan P. McMahanIEEE VR 2022 · 69 citations
- Exploring Locomotion Methods with Upright Redirected Views for VR Users in Reclining & Lying PositionsTianren Luo, Chenyang Cai, Yiwen Zhao, Yachun Fan et al.UIST 2023 · 17 citations
- Sicknificant Steps: A Systematic Review and Meta-analysis of VR Sickness in Walking-based Locomotion for Virtual RealityThomas Van Gemert, Niels Christian Nilsson, Teresa Hirzle, Joanna BergströmCHI 2024 · 20 citations
- I Want to Break Free: Enabling User-Applied Active Locomotion in In-Car VR through Contextual CuesBocheon Gim, Seokhyun Hwang, Seongjun Kang, Gwangbin Kim et al.CHI 2025 · 9 citations
