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Assessment of a Microprocessor Ankle for Low Mobility Individuals with Amputation: Phase I
This study is being done to conduct a preliminary investigation into a new prosthetic microprocessor controlled ankle, called the Damping, Stiffness, and Repositioning (DSR) ankle. Participants will visit the Shirley Ryan Ðǿմ«Ã½ÊÓÆµ 10-16 times over 9 weeks, each visit lasting approximately 3 hours, to perform a series of walking and mobility tests with both their own prosthetic ankle and the DSR ankle.
Ðǿմ«Ã½ÊÓÆµ Project

Breathing Low Oxygen to Enhance Spinal Stimulation Training and Functional Recovery in Persons with Chronic Spinal Cord Injury: The BO2ST Trial
The goal of this double-blind, placebo-controlled, block-randomized clinical trial is to investigate the efficacy and potency of daily acute intermittent hypoxia (AIH) combined with transcutaneous electrical spinal stimulation (tSTIM) and skill-based walking practice.
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Neuromuscular mechanisms of specific trunk interventions in children with cerebral palsy
The goal of the proposed study is to examine the neuromuscular mechanisms underlying the therapeutic effect of hippotherapy and determine whether repeated exposure to a pelvic perturbation force would be effective in improving trunk postural control and gait of children with cerebral palsy. This study is supported by NIH/NINDS, 1R01NS115487, Date of Project Period: 03/01/2020-02/28/2025
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Novel tools for in vitro electrophysiology and neurotrauma modeling
We aim to create new technology and techniques for studying physical and neurological trauma, using sensors, heaters, LED and arrays.
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Modeling effects of common genetic polymorphisms on peripheral nerve injury recovery
Every year, over 200,000 Americans sustain a peripheral nerve injury (PNI). Although peripheral nerves have the ability to spontaneously regenerate, 90% of PNI patients do not regain full motor function. Despite ongoing research, the main treatment for peripheral nerve injury¡ªsurgery¡ª continues to be performed without the assistance of any medication or other therapies to enhance the rate of axon regrowth.
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Electrical stimulation and Botox combination therapy to enhance peripheral nerve regeneration after injury
This project combines two treatments for advancement in peripheral nerve injury to regenerate damaged tissues with Botox and eSTIM.
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Real Time Control of a Powered Prosthetic Leg Using Implanted EMG Signals with Sensory Feedback
We will conduct a first-in-human clinical trial to evaluate the effect of incorporating intramuscular EMG signals (obtained using a fully wireless implantable system), compared to surface EMG signals, on function ambulation and non-weight-bearing control of a powered leg prosthesis.
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Intuitively Controlled Virtual Reality System to Treat Phantom Limb Pain
We will develop a commercially viable VR rehabilitation system (called the Coapt PLP Management System) which can be deployed at home or in-clinic for individuals with upper or lower limb amputations.
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Clinical Trial: Intuitive Control of a Hybrid Prosthetic Leg During Ambulation
A lightweight powered prosthesis with a safe, intuitive control system.
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HCBS Webinar: The Evolution of Person-Centered Practices
Understand more about person-centered practices, person-centered skills and evolving efforts related to person-centered planning.
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COMPLETE: Honda Walking Assist Device Home Trial
In this study, we aim to verify the safety and validate the usability of the Honda Walking Assist (HWA) device in the home setting.
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Reasonable Accommodations in Employment; Supporting People with Disabilities to Decide When and How to Request Webinar
The right to request reasonable accommodation in employment is a cornerstone of the Americans with Disabilities Act (ADA) goal of reducing discrimination in the workplace.
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