Papers
3
Total Citations
153
H-Index
2
About
Shangda Qu is a leading researcher in neuromorphic engineering, specializing in bioinspired sensory systems that bridge biological principles with advanced hardware. Their work focuses on developing artificial neural networks and synaptic devices that mimic the mammalian brain’s ability to process and integrate multisensory information for enhanced perception and cognition. Qu’s most impactful contribution is the "Mammalian-brain-inspired neuromorphic motion-cognition nerve," which achieves cross-modal perceptual enhancement by emulating how macaques integrate ocular and vestibular cues for spatial awareness—a breakthrough that has garnered 138 citations and significant attention for its potential in robotics and prosthetics. They have also pioneered an oxide semiconductor-based neuromorphic chromaticity communication loop for extreme environment exploration (13 citations), enabling reliable real-time perception and collaboration among networked robots in space. More recently, Qu developed a flexible electro-optical N2200 nanowire synaptic transistor for a bioinspired neuromuscular system, advancing the field of neuromorphic prosthetic limbs. Their work consistently pushes the boundaries of how artificial systems can replicate biological sensory-motor integration, with profound implications for autonomous systems, human-machine interfaces, and space exploration technologies.
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