Mobile app-based study of driving behaviors under the influence of cannabis.
Honglu Li, Bin Han, Cong Shi, Yan Wang, Tammy Chung, Yingying Chen
Smart health June 1, 2025 DOI: 10.1016/j.smhl.2025.100558 via PubMed
Summary
AI-generated from the abstractCannabis use correlates with altered driving behaviors such as weaving, swerving, wide turning, and hard braking, with significant effects appearing roughly 2 to 3 hours after consumption. Using participants' smartphones to gather motion sensor data in natural settings, a two-step segmentation algorithm and threshold-based methods detected these behaviors efficiently. On-road experiments with 9 participants who consumed cannabis under controlled conditions revealed the link, addressing limitations of simulator-based studies that lack real-world complexity and scalability.
Study at a glance
| Characteristics | Observational cohort Peer reviewed |
|---|---|
| Sample size | 9 |
| Population | Participants who consumed cannabis under controlled conditions |
| Intervention | Cannabis |
| Keywords | Cannabis-influenced driving behavior Mobile computing |
| Key finding | Cannabis use correlates with altered driving behaviors, with significant effects emerging approximately 2–3 hours after consumption. |
Abstract
Cannabis use has become increasingly prevalent due to evolving legal and societal attitudes, raising concerns about its influence on public safety, particularly in driving. Existing studies mostly rely on simulators or specialized equipment, which do not capture the complexities of real-world driving and pose cost and scalability issues. In this paper, we investigate the effects of cannabis on driving behavior using participants' smartphones to gather data in natural settings. Our method focuses on three critical behaviors: weaving & swerving, wide turning, and hard braking. We propose a two-step segmentation algorithm for processing continuous motion sensor data and use threshold-based methods for efficient detection. A custom application autonomously records driving events during actual road scenarios. On-road experiments with 9 participants who consumed cannabis under controlled conditions reveal a correlation between cannabis use and altered driving behaviors, with significant effects emerging approximately 2∼3 h after consumption.