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When feeling safe becomes risky: A VR-EEG-computer vision framework for analyzing cyclist safety in dynamic traffic
Lurong Xu1, Tengfeng Lin2, Steve O'Hern3
1Department of Civil and Environmental Engineering, Monash University, Clayton, VIC 3800, Australia.
Accident; Analysis and Prevention
|February 1, 2026
Summary
Cyclists feel safer after being passed, even when risks remain, creating a dangerous blind spot. Environmental design can worsen this risk perception mismatch, impacting road safety.
Area of Science:
- Road safety research
- Human factors in transportation
- Neuroscience of perception
Background:
- The discrepancy between cyclists' perceived safety and actual crash risk in mixed traffic is poorly understood.
- Existing research often neglects the impact of dynamic visual elements on risk perception.
Purpose of the Study:
- To investigate the mismatch between perceived safety and crash risk in cyclists.
- To explore the influence of built environment (BE) features on this perceptual mismatch.
Main Methods:
- Developed a virtual reality (VR) platform integrating electroencephalography (EEG), BE data, and time-to-collision (TTC) from VISSIM.
- Utilized a Long Short-Term Memory (LSTM) model to analyze EEG and environmental data from 72 participants.
Main Results:
- Identified a 'perceptual relief period' where cyclists underestimate risk post-overtaking.
- Found that high spatial enclosure, complex textures, dense vegetation, and low visible vehicle density amplify the risk perception mismatch.
- Demonstrated that aesthetically focused BE features may unintentionally increase risk in high-conflict zones.
Conclusions:
- The study provides empirical evidence for an integrated human-vehicle-environment safety framework.
- Highlights the need for interdisciplinary collaboration between neuroscience and transport engineering for safer cycling infrastructure.
- Suggests that current road design may inadvertently compromise cyclist safety by affecting risk perception.
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