About this trial
The purpose of this study is to develop a new paradigm to understand how humans physically interact with each other at a single and at multiple joints, with multiple contact points, so as to synthesize robot controllers that can exhibit human-like behavior when interacting with humans (e.g., exoskeleton) or other co-robots. The investigators will develop models for a single joint robot (i.e. at the ankle joint) that can vary its haptic behavioral interactions at variable impedances, and replicate in a multi-joint robot (i.e. at the ankle, knee, and hip joints). The investigators will collect data from healthy participants and clinical populations to create a controller based on our models to implement in the robots. Then, the investigators will test our models via the robots to investigate the mechanisms underlying enhanced motor learning during different human-human haptic interaction behaviors (i.e. collaboration, competition, and cooperation. This study will be carried out in healthy participants, participants post-stroke, and participants with spinal cord injury (SCI).
Eligibility criteria
Qualifiers
Age from 18 to 80 years
No history of a brain and/or skull lesion
Normal hearing and vision, can be corrected
Able to understand and give informed consent
Disqualifiers
Weight over 220 lbs
Pregnancy (ruled out by pregnancy questionnaire)
Current presence of wounds or pressure ulcers
Multiple sclerosis, Parkinson's disease or other neurodegenerative disorder, severe dementia, brain injury, spinal cord injury, or cancer of the central nervous system
Trial design
Treatments tested in this trial
- Behavioral Interaction Conditions
- Haptic Impedance Level
- Skill Level of Partner
- Robot Controller Showcase
Treatment groups
Sponsors and collaborators
Shirley Ryan AbilityLab
Lead sponsor
U.S. National Science Foundation
Collaborator