Clinical trials
Cerebral Injury clinical trials
Below are recruiting cerebral injury clinical trials, each written for real people, not researchers. We’re tracking 33 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT04696523RecruitingPhase 2
Xenon gas for brain injury after a ruptured brain aneurysm
This Phase 2 study tests whether xenon gas can reduce brain injury after an aneurysmal subarachnoid hemorrhage (a bleeding caused by a brain aneurysm). It aims to help people who are very sick right after the bleeding by improving brain function outcomes.
Helsinki, HelsinkiAges 18 years+ - NCT02592291Recruiting
Using a phone app to help manage long-term health needs
This study tests a mobile phone system that helps people with long-term, complex health conditions manage daily life and get support. If you can use a smartphone and pass the study checks, you may be able to try the self-management tools.
Pittsburgh, PennsylvaniaAges 12 years+ - NCT07135791Recruiting
Tracking daily fatigue in adults with brain injury or cerebral palsy
This study uses a smartphone app to track how fatigue changes throughout the day in adults with cerebral palsy or acquired brain injury. The goal is to better understand fatigue patterns so doctors can offer better support.
Glostrup MunicipalityAges 30–65 - NCT04722939Recruiting
Testing brain function outcomes after ICU kidney failure treatment
This trial studies how treating severe kidney injury in the ICU may affect patients’ brain and thinking function over time. It compares measurements of brain activity and function after starting kidney replacement therapy.
Kingston, OntarioAges 18 years+ - NCT02795052Recruiting
Stem cell treatment trial for nerve injury
This study tests whether bone-marrow stem cells can improve nerve function in people with nerve damage that usually doesn’t recover with current care. It also checks whether the treatment is safe and whether people can be followed over time with repeated nerve exams.
Westport, ConnecticutAges 18 years+ - NCT04574440Recruiting
Near-infrared brain scan during planned heart surgery
This trial tests a non-painful near-infrared brain scan (placed on the forehead) during planned adult heart surgery. It may help doctors better understand how the brain responds during surgery and improve care.
London, OntarioAges 18 years+ - NCT07521384Enrolling by invitation
Real-World Study of Intranasal Cell Therapy for Brain Injuries
This study follows people who receive intranasal stem cell or exosome therapy (tiny packages from special cells) for brain or neurological conditions like stroke, brain injury, or cerebral palsy. Researchers track how well the treatment works by measuring inflammation markers in the blood and monitoring clinical improvements over time.
Monterrey, Nuevo LeónAges 4–80 - NCT05197764Recruiting
Track muscle growth in young children with spastic cerebral palsy
This study looks at how the muscles in the body grow in infants and young children with spastic cerebral palsy (a type of movement difference). It may help doctors better understand normal growth patterns and how care choices affect muscle development.
Leuven, Vlaams-BrabantAges 6 months–9 years - NCT06560372Recruiting
Bleeding after head injury and brain blood vessel narrowing
This study looks at whether moderate to severe traumatic brain injury with bleeding around the brain can lead to a complication called cerebral vasospasm (narrowing of brain blood vessels). It's being done at Martinique University Hospital to understand how often this happens and how it affects recovery.
Fort-de-FranceAges 18 years+ - NCT07324421Recruiting
Ultrasound vs. CT scan for brain blood flow imaging
This study compares a new ultrasound-based method to a standard CT scan for measuring blood flow in the brain. It is designed for people in the ICU or CCU who are already scheduled for a CT scan and could benefit from a simpler, more portable imaging option.
Montpellier, HeraultAges 18 years+ - NCT06763055RecruitingPhase 3
Study of two drugs for spontaneous brain bleed recovery
This trial compares two medicines (deferoxamine and colchicine) to see if they can prevent further brain damage after a spontaneous brain bleed (intracerebral hemorrhage). The goal is to improve recovery by reducing inflammation and iron-related damage.
Sydney, New South WalesAges 18–80 - NCT06163547Recruiting
Brain artery treatment for chronic subdural hematoma
This study tests a new way to treat chronic subdural hematomas (a type of bleeding on the brain) by using a very thin tube to seal off a small artery inside the head. This may help the blood clot shrink without needing a traditional surgery.
GenevaAges 18–100 - NCT06547762Enrolling by invitation
Hybrid rehab for kids with physical disabilities
This trial tests a hybrid approach to rehabilitation for children with physical disabilities, combining in-person and technology-based care. If your child gets outpatient therapy more than once a week and can follow instructions with your help using a computer, this might be a good fit.
JerusalemAges 3–21 - 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+ - NCT06525584Recruiting
Ketamine to protect the brain during heart surgery in children
This study tests whether giving ketamine during heart surgery helps protect the brain in young children. It is for children aged 1 month to 5 years who are having surgery to fix a hole in the wall between the heart chambers (atrial or ventricular septal defect).
Kemerovo, Please SelectAges 1 month–5 years - NCT06111898Recruiting
Understanding movement in infants at risk
This study looks at how the brain and body work together to control movement in infants who are at high risk for developmental issues. It may help find early signs of motor problems.
GenevaAges 8 months–1 year - NCT07090057Recruiting
Targeting the plantaris muscle in ankle surgery for children
This study tests if removing the plantaris muscle during surgery improves ankle movement in children with tight heel cords. It aims to see if this extra step leads to better outcomes.
Edmonton, AlbertaAges 4–17 - NCT07065916Enrolling by invitation
Arm More + Camp: Helping kids with arm weakness
This trial tests a program called 'Arm More + Camp' to help kids and teens with arm weakness due to cerebral palsy or a brain injury improve their movement. It’s a group camp-style study that fits into the school year.
Calgary, AlbertaAges 5–17 - NCT06431711Recruiting
Eye scan study for brain small vessel disease
This study uses a special eye scan (OCTA) to check the health of tiny blood vessels in the back of the eye. It may help doctors understand small vessel disease in the brain and find easier ways to monitor it.
Hangzhou, ZhejiangAges 35 years+ - NCT06900101Recruiting
Monitoring study in brain injury intensive care
This study uses a special monitoring system to closely watch patients in the neurologic intensive care unit. It may help doctors better understand and treat brain injuries.
France, BronAges 18–90 - NCT06511804Recruiting
Blood vessel function and brain blood flow in neurocritical patients
This study looks at how blood vessel function relates to brain blood flow in patients in intensive care with brain injuries or conditions. It aims to find better ways to monitor patients using non-invasive tools.
Louisville, KentuckyAges 18–100 - NCT05814991Enrolling by invitation
Study of factors affecting operating field visibility in jaw surgery
This study looks at what makes the surgeon’s view during jaw (orthognathic) surgery better or worse. It aims to identify predictors that could improve safety and surgical conditions for patients undergoing bimaxillary osteotomy.
MoscowAges 18–40 - NCT07073378Recruiting
Brain-computer help for youth with severe disabilities
This study tests if a brain-computer interface (a device that reads brain signals) can help children and teens with severe physical or communication challenges do things at home, like moving a cursor or expressing themselves.
Calgary, AlbertaAges 5–18 - NCT03325946Recruiting
Neuromotor research clinic for people with movement problems
This study is looking at people who have difficulties with movement or muscle control (neuromotor impairment). It may help researchers better understand these problems and improve future care.
Roanoke, VirginiaAges 3 months–18 years
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Common questions
- Are there clinical trials for cerebral injury?
- Yes. Clin2 currently lists 33 recruiting cerebral injury 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 cerebral injury 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 cerebral injury 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.