Papers
3
Total Citations
9
H-Index
2
About
Deyan He is a pioneering researcher in neuromorphic engineering and bio-inspired electronics, with a focus on developing artificial sensory systems that mimic biological processes. His key research areas include biomimetic nociceptors, memristive devices, and neuromorphic computing for tactile and visual applications. He made a major contribution with the design of a vertical multigate, multichannel neuromorphic transistor that replicates the threshold-switching and adaptation behaviors of biological nociceptors, a breakthrough for smart prosthetics and robotics. This work, published in 2024, has already garnered 5 citations. He also advanced near-sensor reservoir computing by engineering high-stability memristors for Braille recognition, enabling efficient temporal signal processing for edge applications like intelligent prosthetics. Additionally, he developed a fully optically controlled Li-ion-mediated artificial vision reflection arc system, integrating optical control with neuromorphic circuits to create a closed-loop sensory-motor response. With these innovations, He is shaping the future of bio-inspired hardware, bridging the gap between biological sensory systems and artificial intelligence for next-generation robotics and neural interfaces.
Research Focus
Key Achievements
Top Papers
- 1
- 2
- 3