
Neuroengineering
Interfaces and stimulation technologies that decode, modulate, and restore neural function.
Three signature research programs are supported by six interconnected capabilities spanning fundamental mechanisms, engineering platforms, clinical validation, and real-world adoption.

Interfaces and stimulation technologies that decode, modulate, and restore neural function.

Neurophotonics, photoacoustic imaging, LSCI, and multimodal mapping of neurovascular dynamics.

Biomedical electronics, wearable sensing, wireless systems, and AI-enabled devices designed around unmet clinical needs.

AI-enabled physiological sensing and multimodal intelligence for mental health, remote care, and clinical decision support.

Validation pathways that move sensing and imaging systems from laboratory prototypes to care settings.

Nano-neural interaction, nano-biosensing, adaptable bioelectronics, aggregation-induced-emission nanoparticles, wireless catalytic electron signaling, and nanomaterial-enabled strategies for neural regeneration, diagnosis, and therapy.