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About
Luying Xu’s research lies at the intersection of rehabilitation robotics, human factors engineering, and personalized medicine, with a focus on restoring upper limb function after stroke. Her most-cited work, “Achieving personalized wrist training: apply human factors in the control strategy of rehabilitation robot” (2023), addresses a critical clinical challenge: nearly one-third of stroke patients suffer persistent upper limb dysfunction even after six months of rehabilitation. Xu’s key contribution is integrating human-centered design into robotic control strategies, tailoring wrist rehabilitation to individual patient needs and biomechanics—a shift from one-size-fits-all approaches. While her citation count is currently modest (1 citation), the work’s novelty lies in its methodological bridge between engineering precision and patient variability. Her research has the potential to improve recovery outcomes by making robotic therapy more adaptive and intuitive. Xu’s focus on personalized training reflects a growing trend in neurorehabilitation, and her human factors perspective offers a valuable framework for future device design. As her work gains traction, it promises to influence both clinical practice and the next generation of assistive robotics.
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