Clinical trials
Spinal Cord Injuries clinical trials
Below are recruiting spinal cord injuries clinical trials, each written for real people, not researchers. We’re tracking 387 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT05091463Enrolling by invitation
Noninvasive back stimulation to improve trunk control after spinal cord injury
This study tests a noninvasive kind of back stimulation, used alongside usual therapy, to help improve balance and trunk (core) control after spinal cord injury. It may help people who still have trouble sitting upright or reaching while staying balanced.
Louisville, KentuckyAges 3–12 - NCT04565366Enrolling by invitation
Study of research care for new spinal cord injuries
This study looks at people after a recent, serious injury—especially a new spinal cord injury—to see how research and clinical knowledge can be improved. Depending on your group (spinal cord injury, other trauma, or healthy), you may be invited to participate if you meet age and injury timing needs.
Fresno, CaliforniaAges 18 years+ - NCT04077346Enrolling by invitation
Testing a brain-to-spine stimulation to help children step
This trial uses a noninvasive neuromodulation approach to stimulate the spinal walking circuits in children after spinal cord injury. It is meant to see whether the treatment can help a child practice stepping when they currently cannot stand or start walking.
Louisville, KentuckyAges 4–12 - NCT04755699RecruitingEarly Phase 1
Electrical stimulation study for hand or limb movement recovery
This early-stage study tests whether regular, skin-based electrical stimulation can help people with paralysis or weakness regain movement. You would attend frequent clinic sessions for months, while the team checks your ability to follow instructions and your safety.
Manhasset, New YorkAges 18–75 - NCT01894802Recruiting
Brain recording and stimulation to help control a computer
This study tests a brain-machine interface that records brain activity and uses stimulation to help people with severe hand/arm movement loss communicate or control tasks using a computer. It may help restore some control and reduce dependence on hands that cannot be used normally.
Chicago, IllinoisAges 22–70 - NCT07245706Recruiting
Shoulder Health After Rehab and Performance Training
This study looks at how shoulder health changes after a rehabilitation and performance training program for people with paraplegia who use manual wheelchairs. It may help you strengthen your shoulders and prevent injuries as you start your life after rehab.
Nottwil, Canton of LucerneAges 18–70 - NCT05152290RecruitingPhase 1
Safety study of stem cell treatment for spinal cord injury
This Phase 1 study tests whether an off-the-shelf stem cell product made from donated umbilical cord tissue is safe for people with spinal cord injury. It mainly looks at side effects and safety, and may help pave the way for future effectiveness studies.
St John'sAges Any age - NCT06828653Recruiting
Comparing 3D-printed vs standard ankle braces for walking
This study compares custom-made ankle-foot braces made with a digital 3D printing method versus the traditional plaster cast method. It aims to find out which type is more comfortable and effective for people with conditions like cerebral palsy, stroke, or spinal cord injury who need a brace to help them walk better.
Mississauga, OntarioAges 8 years+ - NCT07467187Recruiting
Home Ventilation with Tracheostomy in Denmark (2016–2025)
This study looks at people in Denmark who need a home ventilator through a tracheostomy. It aims to understand their care and outcomes over several years.
CopenhagenAges Any age - NCT07179406Recruiting
Spinal cord stimulators for restless leg syndrome
This study tests whether a spinal cord stimulator can help people with restless leg syndrome (RLS). It compares people with RLS to healthy volunteers to see if the device reduces symptoms.
Birmingham, AlabamaAges 18 years+ - NCT05018793RecruitingPhase 1
Testing stem cell injections for spinal cord injury safety
This early study tests whether two types of stem cells—made from your own fat cells versus from donated umbilical-cord cells—are safe when injected into the fluid around the spinal cord. It may help researchers find safer cell-based options for people with spinal cord injury.
St John'sAges Any age - NCT05183152Recruiting
Non-invasive brain signal control for assistive devices
This study tests an assistive device that you control using signals from the brain and muscles without surgery. It may help people with movement problems communicate or operate devices using gentle, non-invasive sensing.
Austin, TexasAges 18–80 - NCT07683780Enrolling by invitation
Spinal stimulation and muscle training for cough after spinal cord injury
This study tests a combination of spinal cord stimulation and electrical muscle stimulation to help improve cough strength in people with a recent spinal cord injury. It may help you clear secretions more effectively.
Chicago, IllinoisAges 18–65 - NCT07539025Recruiting
How the Spinal Cord Learns and Adapts
This study explores how your spinal cord can learn and change through repeated movements. Researchers will ask you to participate in up to 4 sessions to understand how the nervous system adapts, which may help improve treatments for spinal cord injuries in the future.
New York, New YorkAges 18–80 - NCT06743607Recruiting
Spinal stimulation to improve arm and hand function at home
This trial tests whether using a special device that sends small electrical currents to the spinal cord can help people recovering from a recent spinal cord injury regain movement in their arms and hands. The treatment happens in your home with the help of a caregiver.
Englewood, ColoradoAges 18 years+ - NCT06363357Recruiting
Shoulder brace study for arm weakness from nerve or muscle diseases
This study tests a fabric shoulder brace that moves like a muscle. It may help people with nerve or muscle diseases improve arm movements like reaching and lifting.
Seoul, Jongno-guAges 10 years+ - NCT05563103Recruiting
Combination therapy to improve spinal cord injury recovery
This trial studies a combination of treatments to help people with certain types of spinal cord injury regain some movement and feeling over time. If you meet the specific injury and health criteria, you may be asked to do simple walking and assessment tests during treatment.
Chicago, IllinoisAges 18–70 - NCT04887688Recruiting
Electrical bandage for chronic wound treatment
This trial tests a new bandage that uses a mild electrical current to help heal chronic wounds. It's for veterans with spinal cord injuries or diabetes who have wounds that haven't healed.
Cleveland, OhioAges 18 years+ - NCT05975606Recruiting
Brain stimulation plus cycling to improve leg movement after spinal injury
This study tests whether a non-invasive brain stimulation paired with assisted “FES” cycling can improve walking-related leg movement in people after spinal cord injury. You may be able to take part if you can already walk short distances independently and your injury is stable (non-progressive).
London, OntarioAges 18 years+ - NCT04276181Recruiting
Nerve and tendon transfer surgery for hand function after spinal cord injury
This trial studies a specialized surgery that reroutes nerves and tendons to help restore hand and grip function after a spinal cord injury. It may help some people regain more useful hand movement if their arm muscle strength and nerve signals are strong enough.
MölndalAges 15–55 - NCT07299734RecruitingEarly Phase 1
Augmented reality + electrical stimulation for hand grasp
This trial tests a system that combines a video-like overlay (augmented reality) with small electrical pulses to help you grasp objects. It may improve your hand function and control.
Toronto, OntarioAges 18–65 - NCT06553469Recruiting
Sacral nerve modulation for bladder and bowel problems after spinal cord injury
This trial tests if sacral nerve modulation can improve bladder and bowel control in people with spinal cord injury. Patients receive a temporary stimulator first, and if it helps, they may get a permanent implant.
Jinan, ShandongAges 18 years+ - NCT07024407RecruitingPhase 1/Phase 2
Study of andecaliximab for preventing bone growth after spinal cord injury
This trial tests a drug called andecaliximab to see if it can stop abnormal bone growth (heterotopic ossification) that sometimes happens after a spinal cord injury. It is for people who are at high risk for this bone growth and aims to prevent it from forming.
Denver, ColoradoAges 18–89 - NCT06611748Recruiting
Hand function restoration after spinal cord injury
This trial tests a device to help people with cervical spinal cord injury improve hand function. It's for those with certain levels of paralysis and some residual arm strength.
Cleveland, OhioAges 18 years+
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Common questions
- Are there clinical trials for spinal cord injuries?
- Yes. Clin2 currently lists 387 recruiting spinal cord injuries 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 injuries 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 injuries 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.