Lifen Mo
Papers
1
Total Citations
1
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About
Dr. Lifen Mo is a pioneering researcher at the intersection of neural engineering and assistive robotics, with a primary focus on intracortical brain-computer interfaces (iBCIs) and shared control systems. Her most cited work, "Shared 3D Robotic Arm Control Based on Intracortical Brain-Computer Interface and Computer Vision" (2024), introduces a groundbreaking framework that integrates neuronal decoding with computer vision to enhance robotic arm manipulation for paralyzed individuals. By combining direct neural commands with autonomous visual guidance, Dr. Mo’s system significantly improves the precision and reliability of iBCI-driven prosthetics, addressing critical challenges in real-world assistive applications. Though early in its citation impact, this work represents a vital step toward restoring fluid, intuitive motor control for patients with severe paralysis. Dr. Mo’s contributions bridge fundamental neuroscience and practical engineering, demonstrating how shared control architectures can reduce cognitive load while maintaining user agency. Her research holds profound implications for the future of neuroprosthetics, offering hope for more natural and adaptive human-machine interaction. As the field of iBCI-assisted robotics evolves, Dr. Mo’s innovative approach stands as a key reference for developing next-generation assistive technologies.
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Top Papers
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