Papers
3
Total Citations
13
H-Index
2
About
Qiao Chen’s research bridges two transformative fields: rehabilitation robotics and flexible wearable electronics. In rehabilitation, Chen designed and analyzed a cable-driven parallel robot for waist rehabilitation (CPRWR), a novel system that accounts for the waist’s degrees of freedom and drive characteristics to assist patient recovery. This foundational work, published in 2018, has garnered 8 citations and laid the groundwork for assistive robotic devices. More recently, Chen has pioneered advanced flexible sensors for human-machine interaction. A 2025 study introduced dual-functional pressure sensors using MXene/iron nanowire conductive networks, achieving 4 citations for its innovative approach to high-performance sensing. Another 2025 paper developed a magnetic field–induced oriented iron nanoparticle-based hydrogel strain sensor for gesture recognition, addressing the critical limitations of conventional hydrogels—poor sensitivity and repeatability—with just 1 citation to date but clear potential for wearable health monitoring and soft robotics. Chen’s work exemplifies a shift from rigid robotic systems to soft, intelligent materials, demonstrating versatility in solving real-world biomedical and sensing challenges.
Research Focus
Key Achievements
Top Papers
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