Clinical trials
Cerebral Disorder clinical trials
Below are recruiting cerebral disorder clinical trials, each written for real people, not researchers. We’re tracking 54 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT07493096Recruiting
Intensive therapy program for children with brain-based conditions
This trial tests an intensive therapy program designed to help children with brain-based conditions like cerebral palsy or autism improve their skills in movement, thinking, and daily activities. The program runs for 2 weeks with daily sessions, and researchers will check for changes in your child's abilities.
The Woodlands, TexasAges 4–12 - NCT06314776Recruiting
Vibration therapy for walking in children with cerebral palsy
This study tests whether a special vibrating platform can help improve walking in children with cerebral palsy. It may help strengthen muscles and coordination.
AlmeríaAges 2–11 - NCT07264166Enrolling by invitation
Gene therapy trial for cerebral palsy and HIE
This trial tests a gene therapy given as a nose spray for people with cerebral palsy or HIE. It aims to see if the treatment is safe and helps improve movement over two years.
Monterrey, Nuevo LeónAges 2–65 - NCT04096430Recruiting
Goal-setting program for children in physical or occupational therapy
This trial tests a child-friendly goal-setting approach during pediatric rehabilitation (physical therapy and/or occupational therapy). It may help children and families plan realistic goals that make therapy more meaningful and effective.
Calgary, AlbertaAges 5–12 - NCT06461923Recruiting
Home walking therapy for children with cerebral palsy
This study tests a home-based walking therapy program using special shoe insoles that track your child's walking patterns. The goal is to see if it helps improve walking in children with cerebral palsy.
Seoul, Seodaemun-guAges 7–18 - NCT07081568Recruiting
Vagus nerve stimulation for stroke recovery
This trial tests a device that uses gentle stimulation on your ear to help your brain recover movement and feeling after a stroke. It is for people who had their first ischemic stroke within the last two weeks.
Nanchang, JiangxiAges 18–80 - NCT07324330Recruiting
Slowing cognitive decline with exercise in iRBD
This study tests if increasing physical activity can help slow down cognitive (thinking) decline in people with iRBD, a sleep disorder that often leads to Parkinson's or dementia. You'll use a smartphone and a FitBit to track your activity and receive coaching.
Bonn, North Rhine West-FaliaAges 50–80 - NCT07118228Recruiting
Ultrasound study of muscle in children with spastic cerebral palsy
This study uses ultrasound to look at muscle shape and function in children with spastic cerebral palsy. It aims to see how these muscle features relate to movement abilities, which could help guide future treatments.
KocaeliAges 4–18 - NCT06752096Recruiting
Robot-Helped Brain Blood Vessel Procedures
This trial uses a robot to assist with brain blood vessel treatments, like checking for blockages, treating tumors, or removing clots. It may help make these procedures more precise and safer.
Seoul, KoreaAges 18–80 - NCT04837105Recruiting
Game-based training to help children walk better with cerebral palsy
This study tests whether a serious video game can improve walking and movement in children with cerebral palsy. It may help your child practice safer, more effective walking skills through guided play.
Saint-Fargeau-Ponthierry, Île-de-France RegionAges 10–18 - NCT06278961Recruiting
Filming Baby Movements at Home
This study will record your baby's natural movements using a home video taken on your smartphone. It aims to learn how babies learn to move, whether they are healthy or have certain medical conditions.
Chicago, IllinoisAges 2 months–5 months - NCT06554288RecruitingPhase 1
Trihexyphenidyl for dystonia in cerebral palsy
This study tests how a medicine called trihexyphenidyl works in children with dystonic cerebral palsy, a condition that causes muscle spasms. Researchers want to learn if a child’s genes affect how the medicine works and how the body processes it.
Kansas City, MissouriAges 5–17 - NCT05673499Recruiting
Monitoring oxygen and brain signals during major newborn surgery
This study checks how well newborn babies’ brains are getting oxygen and how brain activity changes while they have certain major surgeries. It may help doctors better monitor brain safety during surgery in newborns with specific conditions.
New York, New YorkAges Up to 1.1 years - NCT05907837Recruiting
Early check and support for infants at risk for cerebral palsy
This study looks at early detection and early support for babies who are at higher risk of cerebral palsy and developmental delays. It may help by finding concerns sooner and starting help earlier.
CorkAges Up to 9 months - NCT06533293Recruiting
Robotic training for neck control in cerebral palsy
This study tests whether a robotic device can help children with cerebral palsy improve control of their head and neck. It is designed for children who need significant help with mobility and do not have other serious medical issues.
New York, New YorkAges 11–21 - NCT06193252Recruiting
Exercising to slow Parkinson's in iRBD
This study tests whether a specific amount of exercise can slow the development of Parkinson's disease in people who have a sleep condition called iRBD. If you have iRBD and are not very active, researchers will help you start a personalized exercise program and track your progress with a smartphone app.
Nijmegen, GelderlandAges 50 years+ - NCT03915418Recruiting
Screening sleep problems in children with cerebral palsy
This trial checks a new way to find sleep problems in children with cerebral palsy using connected tools (like devices/apps). It mainly helps by making sleep screening easier and more accurate, so families can get the right next steps sooner.
AngersAges 6–15 - NCT06122675Recruiting
Deep brain stimulation for movement problems in children with cerebral palsy
This study tests whether deep brain stimulation (a small device placed in the brain that sends electrical pulses) can help improve movement problems in children and young adults with a certain type of cerebral palsy. The goal is to see if it can reduce involuntary movements like twisting or jerking.
San Francisco, CaliforniaAges 7–25 - NCT04467437Recruiting
Noninvasive brain and nerve stimulation with walking therapy
This study tests whether a noninvasive electrical stimulation applied to the outside of the body, paired with physical therapy, can improve movement and walking for people with neurologic conditions. You may be asked to complete regular therapy sessions and simple movement tasks while the team measures your progress.
Seattle, WashingtonAges 4–70 - NCT05726591Recruiting
Robotic exoskeleton study to improve walking in children
This study looks at how safely using a pediatric robotic exoskeleton over the long term can improve how children walk. It’s for children ages 3–17 who have certain movement or spine-related conditions and who can meet walking and joint-movement requirements.
Bethesda, MarylandAges 3–17 - NCT06137625Recruiting
Rhythm and dance learning in children with motor disorders
This study looks at how rhythm affects learning dance moves in children ages 8 to 16, both those with motor disorders (like cerebral palsy or developmental coordination disorder) and those without. It may help understand how to make movement therapy more effective.
ToulouseAges 8–16 - NCT06498596Recruiting
New ways to study movement in kids with movement disorders
This study tests new ways to measure movement (like walking and joint motion) in children and young adults. It's for people with cerebral palsy and healthy volunteers, to better understand movement differences.
Bethesda, MarylandAges 5–25 - NCT06841887Recruiting
New ultrasound imaging method for healthy blood vessels
This study tests a new, advanced ultrasound method for imaging blood vessels. It is looking for healthy volunteers with no history of kidney or brain disease to help researchers see if the ultrasound can give clearer pictures of the vascular system.
Ranica, BGAges 18–75 - NCT07045519Recruiting
Vibration therapy for walking and balance in cerebral palsy
This study tests whether a gentle vibrating device applied to the legs can improve walking and balance in children with cerebral palsy. It may help reduce muscle tightness and make moving easier.
AnkaraAges 4–18
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Common questions
- Are there clinical trials for cerebral disorder?
- Yes. Clin2 currently lists 54 recruiting cerebral disorder 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 disorder 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 disorder 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.