About this trial
The overall goal of this project is to establish a novel design and control paradigm for modular, partial-assist powered orthoses (exoskeletons) to enhance voluntary lower-limb motion and manage pain in broad patient populations. Building upon a previous study period that addressed weakness from advanced age or muscle fatigue, this current period extends the technology to novel powered unloader orthoses designed to manage knee osteoarthritis (OA) pain. The investigators hypothesize that by providing 15-30% of biological joint torque, these motorized devices can reduce muscular contributions to painful loads on the joint's surfaces during activities of daily living (ADLs). The project aims to develop a task-agnostic, neural network-based controller and establish the feasibility of reducing knee pain and muscle effort in individuals with multi-compartment knee osteoarthritis.
Eligibility criteria
Qualifiers
Aged between 18 to 65 years
Weigh less than 300 lbs (due to challenges in bracing heavier participants)
BMI < 40 (due to challenges in bracing heavier participants)
Aged between 30 to 85 years
Disqualifiers
Pregnant (self-report)
Any significant neuromuscular or musculoskeletal disorder that would interfere with the study
Unable to walk for 20 minutes
History of any cardiovascular, vestibular, or visual diseases and/or impairments that may interfere with the study
Trial design
Treatments tested in this trial
- Modular powered orthosis
Treatment groups
Sponsors and collaborators
University of Michigan
Lead sponsor
National Institute for Biomedical Imaging and Bioengineering (NIBIB)
Collaborator