Papers
2
Total Citations
27
H-Index
2
About
An H. is a pioneering researcher at the intersection of neuroengineering and rehabilitation, whose work focuses on developing brain-machine interfaces (BMIs) to restore mobility and independence for individuals with severe neurological injuries. Their major contributions include demonstrating the feasibility of using noninvasive high gamma activity from hemicraniectomy patients to control BMIs—a finding that opens new avenues for paralyzed individuals who cannot undergo traditional invasive recording. This landmark 2019 study, with 23 citations, established a novel platform for translating electrocorticographic signals into real-world device control. An H. also advanced the field of neurorehabilitation by showing, in a 2012 case report, that a brain-controlled robotic gait orthosis could restore ambulation in a patient with spinal cord injury—a proof-of-concept that challenges the reliance on wheelchairs and addresses costly secondary medical conditions. Though early in their career, An H.’s work has already shaped how researchers approach noninvasive neural recording and closed-loop motor prosthetics, bridging the gap between laboratory innovation and clinical application. Their research continues to inspire new generations of neuroengineers aiming to translate brain signals into tangible, life-changing assistive technologies.
Research Focus
Key Achievements
Top Papers
- 1
- 2Brain-Computer Interface Controlled Robotic Gait Orthosis: A Case Report4 citations · 2012