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Dr. Ferris’ research focuses on the biomechanics and neural control of human locomotion. Most of his research focuses on human-machine interactions (mechanically and electrically). Projects include both technology development and basic research using mobile brain imaging, robotic lower limb exoskeletons, and bionic lower limb prostheses. The general goal is to identify principles of how humans control their movements and how they learn to use robotic assistance. The results provide guidance for designing robotic devices to assist human walking and running. His laboratory has created several different robotic lower limb exoskeletons to determine how assistance at the ankle, knee, and hip can reduce the energetic cost of locomotion and making walking easier for humans. His laboratory has also translated the technologies to develop a bionic lower limb prosthesis under proportional myoelectric control. Dr. Ferris and his group are also pioneering the use of high-density electroencephalography (EEG) to perform mobile brain imaging with high temporal resolution. This last effort includes both new hardware and software innovations to facilitate removal of motion and muscle artifacts from EEG during walking and running.
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Amanda Studnicki,Daniel P. Ferris
DATA IN BRIEF (2024): 110024-110024
PLOS ONEno. 11 (2023): e0294241-e0294241
Current Opinion in Biomedical Engineering (2023): 100505-100505
Daniel P. Ferris, He(Helen) Huang
IEEE Transactions on Neural Systems and Rehabilitation Engineering (2023): 4978-4979
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