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Low-Cost Arm System
Prosthetic arm and hand suitable for individuals in the United States who lack adequate insurance or for people in low-income countries with no prosthetic care.
Research Project
Abstract Submission Details
Information about poster abstracts submitted for the Science of Ability Symposium 2019.
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PhD Candidate Max Shepherd Featured in Helix Magazine
Max Shepherd, a PhD candidate who conducts his research at the Center for Bionic Medicine, was interviewed for an article in Northwestern's Helix magazine.
In the News
"Neurotrauma in a Dish" - An induced pluripotent stem cell-based assay to determine patient specific factors affecting rehabilitation outcomes
Determining if patient induced pluripotent stem cell-derived neurons treated with in vitro neurotrauma can be used to predict clinical outcomes.
Research Project
Collaborative Machines Enhancing Therapies (COMET)
The Collaborative Machines Enhancing Therapies center brings together four research and development projects aimed at improving how patients move.
Research Project
An Adaptive Wearable Balance Trainer
Development of a therapy-ready collaborative balance trainer.
Research Project
Smart Passive Devices for Arm Function Recovery
We have developed machine-assisted therapy techniques that focus on self-directed movement?and error augmentation approaches to promote user engagement.
Research Project
COMPLETE: Soft Exoskeleton for Gait Recovery in Stroke
This project evaluates the benefits a soft exoskeleton can have on a stroke survivor with lower extremity impairments.
Research Project
Robotic Treadmill for Intense, Adaptive Propulsion Training
We will fabricate an innovative split-belt treadmill system that allows backward-directed, real-time-adaptive, resistive forces applied to the pelvis.
Research Project
Science of Ability Symposium: Breakthroughs in Rehabilitation and Recovery
Bringing together leading scientists making significant advances in their field, to inspire and change the way we think about recovery and rehabilitation.
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Integrating Brain and Muscle Feedback for Hand Recovery
We will develop and evaluate a collaborative technology that combine biofeedback of two neural signals — EEG and EMG?to promote movement therapy.
Research Project