Yingqing Feng
Papers
2
Total Citations
17
H-Index
2
About
Yingqing Feng is at the forefront of soft robotics and wearable technologies, with a focus on creating intelligent systems that bridge human physiology and machine interaction. Her research primarily targets the development of flexible electronic skins (e-skins) and lower-limb exoskeletons for applications in robotic teleoperation and gait neurorehabilitation. Feng’s most notable contribution is her work on a flexible wearable e-skin sensing system, which integrates on-site signal acquisition and transmission for robotic teleoperation—a critical advancement over conventional e-skins that lack such seamless functionality. This paper has garnered 14 citations, underscoring its impact on the field of human-machine interaction. Additionally, she has pioneered a multidirectional gravity-assist and active-following lower-limb exoskeleton robot for gait neurorehabilitation, addressing the underexplored integration of gravity-supported gait interactions and active user participation. This work, with 3 citations, highlights her commitment to enhancing recovery outcomes for individuals with spinal cord injury or stroke. Feng’s innovative approach to merging flexibility with functional integration positions her as a key contributor to next-generation wearable robotics and rehabilitation technologies.
Research Focus
Key Achievements
Top Papers
- 1A flexible wearable e-skin sensing system for robotic teleoperation14 citations · 2022
- 2