Clinical trials
Spinal Cord Injury Thoracic clinical trials
Below are recruiting spinal cord injury thoracic 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
- NCT05351827Recruiting
Mild intermittent hypoxia for autonomic function in spinal cord injury
This study is testing whether mild intermittent hypoxia (brief episodes of reduced oxygen) can improve autonomic nervous system function (which controls things like blood pressure and heart rate) in people with incomplete spinal cord injuries. It may help reduce symptoms like dizziness or irregular heart rate.
Detroit, MichiganAges 18–60 - NCT06677229RecruitingPhase 1/Phase 2
Safety and effectiveness of TZ-161 for spinal cord injury
This trial tests a new medicine called TZ-161 in people who have recently had a spinal cord injury in the chest area. The goal is to see if it is safe and can help improve movement.
CórdobaAges 18–65 - NCT06654804RecruitingPhase 4
Contrast ultrasound for acute spinal cord injury
This trial tests if a contrast dye used with ultrasound can help treat recent spinal cord injuries. You may qualify if you had a spinal cord injury less than 24 hours ago and need surgery to fix the spine.
Seattle, WashingtonAges 18 years+ - NCT05426681RecruitingPhase 1
Glyburide to protect the spinal cord after injury
This Phase 1 trial tests whether glyburide, a drug used for blood sugar, can help protect nerve tissue after an acute spinal cord injury. It’s mainly focused on safety and early signs that the treatment might be beneficial for people with certain levels of spinal cord damage.
Lexington, KentuckyAges 18–80 - NCT06520020Recruiting
Spinal cord stimulation for spinal cord injury
This study tests whether a gentle electrical stimulation applied to the skin over the spine can be safely used for people with spinal cord injury. If you have had a surgery to stabilize your spine, this stimulation could help with recovery.
Lexington, KentuckyAges 18–80 - NCT07465302RecruitingPhase 2
Early high oxygen therapy for spinal cord injury
This study tests giving high levels of oxygen soon after a spinal cord injury to see if it can help recovery. It is for people who are awake but need a breathing tube and have certain types of spinal cord injury in the neck or upper back.
Gainesville, FloridaAges 18–85 - NCT07583836Recruiting
Early vs. delayed surgery for spinal cord injury recovery
This trial compares whether having surgery sooner or waiting longer after a spinal cord injury helps patients recover better. Researchers will track how well patients regain movement and function over time.
RawalpindiAges 18–60 - NCT03965299Recruiting
Gentle nerve stimulation for new spinal cord injury recovery
This study tests whether stimulation through the skin of the tibial nerve can help people with a new spinal cord injury. It may help improve bladder-related symptoms or nerve signaling after injury, compared with standard care.
Zurich, Canton of ZurichAges 18 years+ - NCT04032990Recruiting
Testing a skin-based nerve stimulation for kids’ arm function
This trial studies whether a painless, skin-based treatment (stimulation over the spine) is safe and feasible to improve arm and hand function in children with a spinal cord injury. It’s mainly designed to see if the approach can be done safely and whether it may help upper-limb skills.
Louisville, KentuckyAges 4–18 - NCT04460872RecruitingPhase 2
Testosterone plus walking training to support bones and muscles
This Phase 2 study tests whether testosterone therapy combined with walking training can improve bone and muscle health after a spinal cord injury. It aims to help men with low testosterone and walking problems by improving strength, body composition, and related health markers.
Gainesville, FloridaAges 18 years+ - NCT05369520Recruiting
Noninvasive spinal stimulation to improve bladder and autonomic function
This trial tests a noninvasive way to stimulate the spinal cord to help the body’s “automatic functions” (like bladder, bowel, and sexual function) after spinal cord injury. If you’ve had a stable, complete spinal cord injury for more than a year, you may be eligible to try this approach and help researchers evaluate recovery.
Vancouver, British ColumbiaAges 19–60 - NCT05644171Recruiting
Epidural spinal stimulation for chronic spinal cord injury recovery
This trial tests whether a stimulating device placed near the spinal cord can help improve movement and rehabilitative function in people with long-term spinal cord injuries. It may help some patients strengthen function, but only if they meet specific injury and health requirements.
SingaporeAges 21 years+ - NCT05725499Recruiting
Check if skin stimulation lowers blood pressure drops after spinal injury
This study tests a skin “stimulation” treatment to see if it helps stabilize blood pressure in people with spinal cord injury who get low blood pressure when sitting up. If you often have dizziness, faintness, or low readings after changing positions, this trial may help find safer ways to manage it.
West Orange, New JerseyAges 18–75 - NCT05731986Recruiting
Skin nerve stimulation to raise blood pressure after spinal injury
This study tests whether a device that delivers mild electrical stimulation through the skin can improve low blood pressure after an acute spinal cord injury. It may help reduce episodes of dizziness or faint-feeling caused by blood pressure dropping when you sit up.
West Orange, New JerseyAges 18–75 - NCT06243211Recruiting
Spinal Decompression and Nerve Graft for Acute SCI
This study tests whether surgery to take pressure off the spinal cord, plus placing a small nerve graft, can help recovery after a severe spinal cord injury. It is for people with a recent injury who have lost all movement and feeling below the level of injury.
Lexington, KentuckyAges 18–80 - NCT06274021RecruitingEarly Phase 1
Brain stimulation to reduce leg stiffness after spinal cord injury
This study tests a non-invasive brain stimulation technique (like a gentle magnetic pulse) to see if it can reduce muscle stiffness and spasms in the legs after a spinal cord injury. It may be a good option if you have ongoing leg stiffness and want a drug-free approach.
Jackson, MississippiAges 18 years+ - NCT06464744Recruiting
Can brain stimulation help after spinal cord injury?
This trial tests whether repetitive transcranial magnetic stimulation (rTMS), a non-invasive treatment that uses magnetic pulses to stimulate the brain, can improve movement and function in people with chronic spinal cord injury. It may help if you have some movement left below your injury level.
OsloAges 18–80 - NCT06494059Recruiting
New brain and spine stimulation for spinal cord injury recovery
This study tests a new type of non-invasive stimulation (brain and spine) to help improve movement in people with spinal cord injury. It targets arm, leg, or trunk function depending on your injury level.
Miami, FloridaAges 18–70 - NCT06688916Recruiting
Body awareness after spinal cord injury
This study examines how people with spinal cord injury experience their body and sense of self. You will answer questionnaires and may have an MRI scan of your brain while parts of your body are touched, to see how your brain reacts.
Nottwil, Canton of LucerneAges 18–65 - NCT04936620Recruiting
Surgery for severe neck spinal cord injury with uncontrolled swelling
This trial studies a specific surgical technique (called duroplasty) for people with a severe neck spinal cord injury who have dangerous swelling that is not controlled. The goal is to see if this approach can improve outcomes after emergency surgery done soon after the injury.
InnsbruckAges 16 years+ - NCT06841770RecruitingPhase 1
Testing a delivery device for spinal cord injury treatment
This trial tests a device that delivers a special cell therapy (LCTOPC1) into the spinal cord. It is for people with a recent or chronic spinal cord injury that is severe (no feeling or movement below the injury) or leaves some sensation but no movement.
Downey, CaliforniaAges 18–65 - NCT06867809Recruiting
Spinal and brain stimulation for arm movement after neck injury
This study tests whether using a combination of spinal and brain stimulation can help improve arm and hand movement in people who have had a cervical spinal cord injury (neck area) at least one year ago. It is for those with some remaining movement but not full strength.
New York, New YorkAges 18 years+ - NCT06939660Recruiting
Brain-spinal cord stimulation for walking after spinal cord injury
This trial tests if combining brain-computer interface technology with spinal cord stimulation can help improve walking in people with chronic spinal cord injury. It aims to see if this approach works when standard rehab has stopped helping.
Beijing, Beijing MunicipalityAges 14–65 - NCT07052344Recruiting
Brain-gut connection study in spinal cord injury
This study looks at how the brain and gut communicate in people with spinal cord injury (SCI) and healthy controls. It uses non-invasive methods to understand these signals, which might help improve bowel and overall health.
Miami, FloridaAges 18–70
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Common questions
- Are there clinical trials for spinal cord injury thoracic?
- Yes. Clin2 currently lists 35 recruiting spinal cord injury thoracic 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 spinal cord injury thoracic 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 spinal cord injury thoracic 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.