Clinical trials
Spinal Cord Diseases clinical trials
Below are recruiting spinal cord diseases clinical trials, each written for real people, not researchers. We’re tracking 260 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT05644522Recruiting
At-home brace study for leg support and walking
This study tests an at-home wearable activity monitor and brace-related walking support for people who already use a knee-ankle-foot brace. It may help researchers understand how brace use and day-to-day movement relate to walking ability.
Chicago, IllinoisAges 18–89 - NCT05724173Recruiting
Test of a brain-to-computer device for ALS hand paralysis
This study checks whether a brain-computer interface (a BrainGate2 system) is safe and workable for people with ALS. If you qualify, you may be asked to try the device and complete study tasks to help researchers learn how well it can support communication or control.
Stanford, CaliforniaAges 18–80 - NCT05777889Recruiting
Infrared imaging for nerve-stimulation pain in one leg
This study uses infrared images to help evaluate spinal cord stimulation for complex regional pain syndrome (CRPS) when it affects one leg. It aims to see whether the imaging approach matches pain and treatment needs in people whose pain hasn’t improved with standard care.
New York, New YorkAges 18–85 - NCT05903859RecruitingPhase 3
Study to improve fertility in men after spinal cord injury
This phase 3 study tests a treatment to improve reproductive function (fertility-related measures) in men who have had a traumatic spinal cord injury. If you may be eligible, it could help researchers see whether the treatment improves reproductive outcomes for men with spinal cord injury.
Miami, FloridaAges 18 years+ - NCT06011876Recruiting
BioFLO breathing training for spinal cord injury
This study is testing a special breathing training device (called BioFLO) for people with chronic spinal cord injury to see if it can strengthen their breathing muscles and improve their respiratory recovery.
Jacksonville, FloridaAges 18–70 - NCT06094205Recruiting
BrainGate2 speech study for people with tetraplegia
This study tests a brain-computer interface to help people with severe paralysis communicate by decoding attempted speech or movements. It may offer a new way to interact with devices using only brain signals.
Sacramento, CaliforniaAges 18–80 - NCT06130449RecruitingEarly Phase 1
Testosterone and brain function in men with spinal cord injury
This study tests whether testosterone can help brain function in men with spinal cord injury and low testosterone. If you qualify, you would receive testosterone treatment and have your brain activity measured over about a month.
The Bronx, New YorkAges 18–80 - NCT06493071Recruiting
Nerve stimulation for depression after spinal cord injury
This study tests whether gentle nerve stimulation on your ear can reduce both inflammation and depression after a spinal cord injury. It might help people with mild to moderate depression who are already on a stable depression medicine.
London, OntarioAges 18 years+ - NCT06521723Recruiting
Low oxygen therapy to improve walking after spinal cord injury
This study tests whether breathing low-oxygen air (a treatment called AIH) combined with spinal stimulation can help people with chronic spinal cord injury walk better. It may improve your walking speed and endurance.
Jacksonville, FloridaAges 18–80 - NCT06531317Recruiting
EEG and brain stimulation for nerve pain after spinal cord injury
This study tests whether a personalized brain stimulation treatment (using a non-invasive technique called tDCS) can help reduce nerve pain in people with spinal cord injury. The researchers will also use EEG (a cap that records brain activity) to see how your brain responds.
Badalona, BarcelonaAges 18–99 - NCT07521930Recruiting
Brain implant to restore communication and movement control
This trial tests a surgically implanted brain device designed to help people with severe paralysis or movement disorders regain the ability to communicate and control their limbs. The device reads signals from your brain and translates them into commands that could help you interact with computers or assistive technology.
Baltimore, MarylandAges 18–80 - NCT06643312Recruiting
Treadmill training with spinal stimulation for standing after spinal cord injury
This trial tests whether combining treadmill training with spinal cord stimulation (TPAD) can help people with severe spinal cord injuries regain the ability to stand. It aims to improve standing function and may lead to better recovery.
West Orange, New JerseyAges 18 years+ - NCT07171489Recruiting
Wearable device for bowel control after spinal cord injury
This trial tests a wearable device that uses mild electrical pulses to help manage bowel function in people with spinal cord injury. It aims to improve control and quality of life.
Ann Arbor, MichiganAges 18 years+ - NCT06777576Recruiting
Self-balancing exoskeleton for spinal cord injury
This trial tests a self-balancing exoskeleton (a wearable robotic suit) to help people with spinal cord injuries stand and walk. It is designed for those with injuries at or above the T6 level and looks at how well the device works and how it feels to use.
The Bronx, New YorkAges 18 years+ - NCT06782464Recruiting
Freezing nerves for shoulder pain after stroke or brain injury
This trial tests if freezing certain nerves in the upper arm (cryoneurolysis) works as well as standard care for reducing shoulder pain and muscle tightness after a stroke or brain injury. It aims to improve function and ease caregiving tasks.
LuxembourgAges 18 years+ - NCT06814015Recruiting
Self-balancing exoskeleton for spinal cord injury
This trial tests a self-balancing exoskeleton (a wearable robotic device) to help people with spinal cord injury stand and walk. It is for people with injury at or above T6, at least 6 months past injury, and a caregiver who can help during the study visits.
West Orange, New JerseyAges 18 years+ - NCT06829212Recruiting
Wireless brain implant for device control
This trial tests a wireless brain implant that lets you control external devices like a computer or wheelchair just by thinking. It's designed for people with paralysis or double arm amputations who want to regain some independence.
Shanghai, Shanghai MunicipalityAges 18–80 - NCT07050069Recruiting
Breathing training for spinal cord injury patients
This study tests a new breathing exercise method combined with a gentle brain stimulation technique to help people with spinal cord injury improve their breathing and lung function. It may be an option if your injury is recent and at or above the mid-back level.
Shenyang, LiaoningAges 18–80 - NCT07164846Recruiting
FES suit for recovery after injury or amputation
This trial tests a special suit that uses mild electrical stimulation to help improve muscle strength, walking, and body functions. It may help people who are at least one week past an amputation or a nervous system injury like stroke or spinal cord injury.
Jacksonville, FloridaAges 18 years+ - NCT07210437Recruiting
Autonomic changes and health problems after spinal cord injury
This study looks at how the autonomic nervous system (which controls things like heart rate and blood pressure) changes after a spinal cord injury. It aims to predict later health problems.
Rochester, MinnesotaAges 18–75 - 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+ - NCT07227727Recruiting
Blood vessel health after spinal cord injury
This study looks at how spinal cord injury affects the health of your blood vessels. It compares people with paraplegia to those without an injury to understand the differences.
Englewood, ColoradoAges 18 years+ - NCT07293780Recruiting
TMS for nerve pain after spinal cord injury
This trial tests whether transcranial magnetic stimulation (TMS), a non-invasive brain stimulation, can help relieve nerve pain in people with spinal cord injury. It is for those who have had chronic nerve pain for at least 6 months that hasn't improved with standard treatments.
Ankara, YenimahalleAges 18–65 - NCT07303582RecruitingPhase 4
Freezing nerves to ease pain from muscle tightness
This study tests if freezing specific nerves (cryoneurolysis) can reduce pain caused by muscle tightness (spasticity) after a brain or spinal cord injury, or from multiple sclerosis. It is for people who already get Botox injections for this pain.
OxfordAges 18 years+
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Common questions
- Are there clinical trials for spinal cord diseases?
- Yes. Clin2 currently lists 260 recruiting spinal cord diseases 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 diseases 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 diseases 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.