Clinical trials
Paraplegia clinical trials
Below are recruiting paraplegia clinical trials, each written for real people, not researchers. We’re tracking 35 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT06936163Recruiting
Surgery for foot deformities in hereditary spastic paraplegia
This study looks at how well surgery works for foot problems like tight heel cords or clubfoot in people with hereditary spastic paraplegia (HSP), a condition that causes leg stiffness. It aims to see if surgery can improve walking, reduce pain, and prevent falls.
Shanghai, Shanghai MunicipalityAges 10–45 - NCT07136844Recruiting
Walking and arm movement study for nerve and muscle conditions
This study uses motion analysis to understand walking and arm function in adults with certain neurological or metabolic diseases. The goal is to find patterns that help doctors better manage these conditions.
LiègeAges 18 years+ - NCT07167732Recruiting
CTNNB1 Syndrome Natural History Study
This study follows people with CTNNB1 syndrome over time to better understand the condition. It does not test any new treatment—just collects information to help future research.
SydneyAges Any age - NCT07222033Recruiting
Self-balancing exoskeleton for spinal cord injury
This trial will test a self-balancing personal exoskeleton for people with spinal cord injuries. It may help you walk again and improve your mobility.
New York, New YorkAges 18 years+ - NCT00623389Recruiting
Testing a leg neuroprosthesis for walking and leg control
This trial tests an advanced device that helps control and use your legs and trunk muscles for movement. It may help people with certain types of paralysis or weakness to improve function, while closely monitoring safety and comfort.
Cleveland, OhioAges 21–75 - NCT01474148Recruiting
Neuroprosthesis to improve sitting posture and balance
This trial tests a special stimulation device (a “neuroprosthesis”) to help people with spinal cord injury improve how they sit upright and maintain balance. If you meet safety and readiness requirements, it may help your trunk and pelvic muscles work more effectively during posture and balance tasks.
Cleveland, OhioAges 21 years+ - NCT03026816Recruiting
Epidural stimulation to improve function after spinal cord injury
This study tests whether stimulating the nerves in your spine (via an epidural device) can improve rehab-related function after a spinal cord injury. It focuses on people with stable, motor-complete paraplegia and long-term injuries, and it compares how you respond to the stimulation during rehabilitation.
Minneapolis, MinnesotaAges 22 years+ - NCT07417943Recruiting
Brain stimulation to improve movement in hereditary spastic paraplegia
This study tests whether a non-invasive brain stimulation technique (called neuromodulation) can improve walking, balance, and other movements in adults with hereditary spastic paraplegia (HSP). It may be a good fit if you can walk with or without help, have stable spasticity medications, and don't have a pacemaker or epilepsy.
Lexington, KentuckyAges 18 years+ - NCT07478172Recruiting
Electrical muscle stimulation exercise for neuromuscular disease
This study tests whether whole-body electrical muscle stimulation (using small electrodes on the skin) can help adults with certain neuromuscular diseases exercise and improve muscle strength. It may be an option if you can stand for about 15 minutes at a time and have some muscle strength left.
Columbia, MissouriAges 18 years+ - NCT07536386Recruiting
Robotic Exoskeleton Walking Aid for Spinal Cord Injury
This study tests a self-balancing robotic exoskeleton device designed to help people with spinal cord injuries stand and walk. Researchers will assess whether the device improves mobility and quality of life over nine visits to a research center.
ParisAges 18 years+ - NCT07625332RecruitingPhase 2/Phase 3
Galantamine for Metabolic Syndrome in Spinal Cord Injury
This study tests whether a medication called galantamine can help improve metabolic syndrome (a cluster of health conditions including obesity, high blood sugar, and high cholesterol) in people with chronic spinal cord injury. The goal is to see if this treatment can reduce health risks and improve overall wellness.
West Orange, New JerseyAges 21–75
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Common questions
- Are there clinical trials for paraplegia?
- Yes. Clin2 currently lists 35 recruiting paraplegia studies from the U.S. registry, each rewritten for real people, not researchers, so you can see what it’s testing and who it’s for.
- How do I know if I qualify for a paraplegia trial?
- Each study lists its eligibility criteria — rules about age, diagnosis, and prior treatments. On every Clin2 trial page we explain these in words written for real people and offer a short, optional pre-screen for a fit read. The study team makes the final decision.
- Does it cost anything to join a paraplegia trial?
- Using Clin2 is always free. Many trials cover the cost of the study treatment and related visits; some reimburse travel. The study team explains exactly what’s covered before you decide.
Related conditions
Clin2 helps you find and understand clinical trials and does not provide medical advice. Study data comes from ClinicalTrials.gov. Talk with your doctor about whether a specific trial is right for you.