Clinical trials
Motor Development clinical trials
Below are recruiting motor development clinical trials, each written for real people, not researchers. We’re tracking 43 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT06030310Recruiting
Motor program effects on brain development in children
This trial tests if a special exercise program can help with brain development in kids ages 7 to 9. It may support how their nerves and muscles work together.
Manresa, BarcelonaAges 7–9 - NCT06438042Recruiting
Preventing bedsores with a special air mattress
This trial tests a special air mattress (XTECH®25) to see if it can prevent bedsores (pressure ulcers) in people who are at high risk and spend a lot of time in bed. If you qualify, you would use the mattress at home or in a care facility.
Multiple LocationsAges 18 years+ - NCT06106984Recruiting
Home rehab for phantom limb pain in Veterans
This study tests a home-based rehab program for Veterans with phantom limb pain after a below-knee amputation. It uses telehealth to help you manage pain without needing to travel to a clinic.
Minneapolis, MinnesotaAges 18–89 - NCT07636291Recruiting
Training healthcare workers to counsel patients on physical activity
This study trains primary care doctors, nurses, and other healthcare professionals to better counsel patients about exercise and sitting time. If you work in a primary health clinic, this trial may help you learn new counseling skills that could benefit your patients.
São José dos Pinhais, ParanáAges 18 years+ - NCT03979235Recruiting
Rehab effectiveness programs for people after stroke
This trial is testing rehabilitation programs by studying how well they work for people with movement problems after a stroke. You may be able to join if you can complete the rehab assessment and follow testing instructions.
BeijingAges 18–80 - NCT05157282Recruiting
Spinal cord stimulation to improve hand function after tetraplegia
This trial tests whether a special device that stimulates the spinal cord can help people with long-lasting neck spinal cord injuries recover useful hand movement and grip strength. It may help your nervous system communicate better so daily hand tasks become easier.
Chicago, IllinoisAges 18–70 - NCT07369193Recruiting
Virtual reality therapy for cerebral palsy motor skills
This study tests whether a special immersive virtual reality therapy can help children with cerebral palsy improve their motor skills. It also looks at how the brain responds during the therapy. The study is a pilot, meaning it's a small first step to see if the treatment is promising.
Calambrone, PisaAges 7–25 - NCT06764810Recruiting
Motor skills and senses in children 4–11
This study looks at how motor skills (like catching, jumping) and sensory processing (how the brain handles sights, sounds, touch) are related in children with and without certain developmental differences. The goal is to better understand these connections to help support children's development.
VicAges 4–11 - NCT05861531Recruiting
Oral stimulation and language support for preterm feeding
This study tests whether a feeding-focused therapy that includes mouth stimulation and language support helps preterm babies feed more effectively. It may be most helpful for babies born very early who are learning to feed safely and comfortably.
Providence, Rhode IslandAges 5 months–7 months - NCT07486388Recruiting
Strength and fatigue during daily arm and hand tasks in children
This study looks at how strong children's arms and hands are and how quickly they get tired during everyday activities. It helps doctors understand normal development in typically developing children.
Diepenbeek, LimburgAges 7–18 - NCT06399952Recruiting
Natural history study for Baker Gordon syndrome
This study follows people with Baker Gordon syndrome over time to better understand the condition. Participants and their caregivers share medical records and complete tests and questionnaires.
Columbia, MissouriAges birth–99 years - NCT06667661Recruiting
Mobile app to help preschoolers move, sleep, and use screens better
This study tests if a mobile app can help parents improve their preschooler's physical activity, sleep, and screen time habits. If your child meets zero or only one of these guidelines, the app might help.
Kansas City, KansasAges 3–4 - NCT05296408Recruiting
Arm exoskeleton rehab for chronic stroke weakness
This trial tests a wearable arm exoskeleton that uses your muscle signals to help rehab a weak arm after stroke. It may help improve arm movement by pairing training with this device, but you must meet specific movement, skin, and scan-safety requirements.
Cleveland, OhioAges 18–89 - NCT05035901Recruiting
Handwriting practice program for children with poorer handwriting
This study tests a handwriting practice program designed to improve a child’s handwriting. It may help by teaching skills in a structured way, but it is meant for children whose main challenge is handwriting—not severe brain, sensory, or reading/language problems.
TaipeiAges 7–12 - NCT05457569Recruiting
Parent support program for babies at high brain risk
This study checks whether a coordinated parent support program delivered after NICU (and after discharge) is practical and helpful. It gathers feedback through interviews with parents and professionals to improve how care and parenting support are organized.
DijonAges 18 years+ - NCT06451874Recruiting
Exercise for older veterans with memory and walking concerns
This study tests whether personalized exercise programs can help older veterans who walk slowly and have mild memory or thinking concerns. The goal is to improve your physical and mental function.
Boston, MassachusettsAges 65 years+ - NCT07289191Recruiting
Spinal current stimulation for walking after spinal cord injury
This trial tests whether a new type of electrical stimulation on the back can help improve walking in people with incomplete spinal cord injury. It uses a device that sends small currents through the skin to the spinal cord.
Badalona, BarcelonaAges 18–75 - NCT07562100Recruiting
AI-Powered Exercise Program for Oral Cancer Patients Returning to Work
This study tests a smartphone-based exercise and wellness program designed to help people recently diagnosed with oral cancer prepare their body and mind before treatment, with the goal of helping them return to work faster and more safely. Researchers will track whether the program improves recovery and reduces healthcare costs.
TaipeiAges 20–70 - NCT06605612Enrolling by invitation
Falls risk test for people with muscle and nerve conditions
This study is creating a test to predict falls in people with neuromuscular disorders. You will fill out a questionnaire about your fall risk.
München, BavariaAges 18–65
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Common questions
- Are there clinical trials for motor development?
- Yes. Clin2 currently lists 43 recruiting motor development 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 motor development 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 motor development 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.