可穿戴计算机
适应性
可穿戴技术
计算机科学
人机交互
功能(生物学)
透视图(图形)
独立性(概率论)
辅助技术
极限(数学)
传感器融合
新兴技术
普适计算
控制(管理)
适应(眼睛)
智能传感器
自适应系统
作者
Shuo Gao,Jianan Chen,Yunjia Xia,Xuemeng Li,Weihao Ma,Huixin Yang,Jinchen Li,Xinkai Zhou,Tianyu Jia,Yuchen Xu,Julie Uchitel,Dean Ta,Peng Qi,Junbo Ge,Yi Guo,Yajie Qin,Inseung Kang,Wenyao Xu,He Li,Jinke Chang
标识
DOI:10.1038/s41467-025-67126-4
摘要
Mobility impairments from aging, injury, or medical conditions limit independence and social participation. Conventional assistive devices lack adaptability in complex environments. Recent wearable technologies integrating neural sensing, electronics, and co-design offer personalized, responsive mobility support. This perspective focuses on advances in wearable sensing and multimodal fusion for intent recognition, environmental interaction, and adaptive control in exoskeletons, prosthetics, smart wheelchairs, and navigation systems. Emphasizing human-in-the-loop and cognitive-sensorimotor integration, it outlines emerging trends and challenges, promoting intelligent, user-centered solutions to restore function and enhance autonomy, accessibility, and inclusion for individuals with mobility impairments.
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