Covers neuromodulation therapies designed to restore walking in individuals with spinal cord injuries and explores their implications for other neurological disorders.
Delves into neuroplasticity, stroke recovery, and non-invasive brain stimulation techniques for personalized rehabilitation and motor function improvement.
Focuses on the development of 'eSee-Shells', chronic multimodal neural interface devices using transparent, inkjet-printed electrocorticography (ECoG) arrays.
Explores neuromodulation, spinal cord control, and the potential for recovery after spinal cord injury through innovative research and groundbreaking results.
Explores the implementation of logic gates in semiconductor material, focusing on TTL and CMOS technologies, ICs, hazards, clocks, D flip-flops, and switch debouncing.
Explores the water window in electrochemistry, charge injection capacity, neural stimulation safety, electrode materials, and optimal stimulation characteristics.