Neural interfaces
High-channel-count, low-power chips for recording neural activity, with on-chip processing and wireless communication.
Chips & systemsI am a Research Professor at Westlake University, Deputy Director of the Zhejiang Engineering Research Center for Brain–Computer Interface Intelligent Chip Systems, and a co-founder of Neuralicorn. I am also a Senior Member of IEEE and an Associate Editor of Neuroelectronics. My current research focuses on high-channel-count brain–computer interface chips, brain-to-language decoding, neuromorphic computing chips, and closed-loop neuromodulation systems, with an emphasis on translating these technologies into practical applications.
Research
High-channel-count, low-power chips for recording neural activity, with on-chip processing and wireless communication.
Chips & systemsTurning intracranial brain signals into Mandarin speech through neural signal processing and machine learning.
Brain-to-language decodingEnergy-efficient spiking neural processors and intelligent systems for sensing and closed-loop neuromodulation.
Brain-inspired computationSelected work
A selection of work on neural interface circuits, language decoding, and brain-inspired processors.
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Recognition
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Education
Courses at Westlake University are co-taught with Prof. Mohamad Sawan; the University of Calgary course was co-taught with Prof. Orly Yadid-Pecht.
I am the author of the online textbook Invasive Brain–Computer Interface Chip Design and co-author, with Prof. Mohamad Sawan, of Emerging Trends of Biomedical Circuits and Systems. These resources support learning and design practice in brain–computer interfaces and biomedical circuits.
Join the team
We welcome students, postdoctoral researchers, and research assistants interested in neural interfaces, decoding, and neuromorphic computing.