Clinical trials
Gait Training clinical trials
Below are recruiting gait training clinical trials, each written for real people, not researchers. We’re tracking 100 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT07356687Recruiting
Transcranial magnetic stimulation with walking training for stroke recovery
This trial studies whether combining brain stimulation (rTMS) with walking and thinking exercises helps improve walking and memory after a stroke. It is for people who had a stroke at least 6 months ago and can walk on their own for at least 1 minute.
Hong Kong, HongKongAges 50 years+ - NCT06644898Recruiting
Walking on slopes to improve balance in COPD
This study tests whether walking on different slopes (like hills) can help people with COPD improve their balance. It compares different types of incline walking to see which works best.
Istanbul, Eyüp SultanAges 40 years+ - NCT07472543Recruiting
Virtual reality exercises for leg lymphedema after cancer surgery
This trial tests whether virtual reality-based exercises can help reduce leg swelling caused by lymphedema after gynecological or other cancer surgery. It may be a good option if you have lymphedema in one leg and can commit to daily sessions for a month.
AnkaraAges 18–65 - NCT07087769Recruiting
Improving walking symmetry after stroke with special devices
This study uses special devices and feedback to help people who have had a stroke walk more evenly (symmetrically). It tests if these tools can improve walking patterns and balance.
Galveston, TexasAges 20 years+ - NCT07093229Enrolling by invitation
Gait analysis for knee arthritis in seniors
This trial studies how walking patterns change in people over 65 with long-term knee osteoarthritis. It aims to understand gait to improve treatment and rehabilitation plans.
CraiovaAges 65–80 - NCT07752030Enrolling by invitation
Measuring treatment effects in cerebral palsy
This study looks at how well different treatments work for people with cerebral palsy. It may help doctors understand which treatments are best for improving walking and movement.
Omaha, NebraskaAges 16–30 - NCT07687979Recruiting
Mobile app for walking training in Parkinson's disease
This trial tests whether a mobile phone app can help improve walking in people with Parkinson's disease. If you have mild to moderate Parkinson's and can use a smartphone, you may be able to join.
Izmir, İzmirAges 60–80 - NCT07578051Recruiting
Two approaches to gait training for above-knee amputees
This study compares two methods of physical therapy for people with above-knee (thighbone) amputations: one focuses on improving specific movements, the other on practicing everyday walking tasks. Researchers want to see which approach helps patients walk better with a prosthetic leg.
Islamabad, Punjab ProvinceAges 18–40 - NCT07265154Recruiting
Gait training with AI for above-knee amputees
This trial tests a new way to help people with above-knee amputations improve how they walk, using artificial intelligence to guide their gait training. It may help you walk more naturally and safely.
Banhā, BenhaAges 16–50 - NCT07716475Recruiting
Home gait training with a hip robot for stroke recovery
This trial tests a wearable hip robot to help people with stroke walk better at home. It may improve your gait and daily movement.
Yongin-si, Gyeonggi-doAges 19–80 - NCT06868316Recruiting
Sound-guided walking training for chronic ankle instability
This study tests whether using sound cues while walking can improve balance and ankle stability in people with chronic ankle instability. You may be eligible if you have had repeated ankle sprains and a feeling of your ankle "giving way" in the last 6 months.
Lexington, KentuckyAges 18–45 - NCT03980457Recruiting
Exoskeleton walking therapy for stroke recovery
This trial studies whether assisted walking training with an exoskeleton can improve recovery after stroke, especially for walking and daily function. You may be offered therapy once you are medically stable, able to stand, and able to participate safely.
Oklahoma City, OklahomaAges 18–90 - 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 - NCT04594837Recruiting
Robotic ankle device therapy after stroke-related foot drop
This study tests a robotic ankle device to help improve walking in people after a stroke who still have foot drop (the foot doesn’t lift well). It may help strengthen or retrain walking patterns during recovery.
Baltimore, MarylandAges 18 years+ - NCT04934787Recruiting
Balance-feedback ankle rehab after stroke
This trial tests an ankle-foot exercise and training program that gives you balance feedback to improve walking after stroke. It may help reduce foot drop and improve balance and safe walking.
Hong KongAges 18–70 - NCT05154253RecruitingPhase 1
Improving ankle push-off in children with cerebral palsy
This early (Phase 1) study tests a way to improve how well the ankle muscles help you push off when walking in cerebral palsy. If the ankle function improves, it may lead to a more comfortable and safer walking pattern.
Minneapolis, MinnesotaAges 8–21 - NCT05493514Recruiting
Robotic training program for walking and balance
This trial studies whether a robotic training system (called G-EO) can help people with neurological conditions improve walking and balance. It may help by testing which factors predict who benefits most, and it requires regular training sessions.
MilanAges 18 years+ - NCT05921175Recruiting
Stimulation and robotic walking training for incomplete spinal injuries
This trial tests whether gentle electrical stimulation of the spinal area plus robotic gait training can improve walking function in people with a traumatic spinal cord injury who are not walking independently. It’s meant for people with incomplete injuries where some nerve signals still work, and who can safely use the robotic exoskeleton.
Singapore, SingaporeAges 21–65 - NCT06053320Recruiting
Stroke rehab study using brain stimulation and movement training
This study tests whether a type of brain stimulation combined with movement training can help people who have had a right-side stroke improve their arm and hand function. It also includes healthy adults to compare results.
Atlanta, GeorgiaAges 18–90 - NCT06242873Recruiting
Spinal cord stimulation for kids with incomplete injuries
This study tests if mild electrical pulses to the spinal cord can help children ages 3 to 16 with incomplete spinal cord injuries walk better. It is important for children who still have some movement in their legs but need extra help to improve their walking.
Baltimore, MarylandAges 3–16 - NCT06247553Recruiting
Walking exercise program for stroke survivors who can't walk
This study aims to develop a walking exercise program for people who have had a stroke and cannot walk on their own. It will test a treadmill-based program to help improve walking ability.
Kansas City, KansasAges 18–80 - NCT06329765Recruiting
CUped exercise for arm and leg recovery after stroke
This study tests a special pedaling exercise called CUped to help people with chronic stroke regain normal walking patterns. You'll come to the lab multiple times over several weeks to see if the training improves how you walk.
Milwaukee, WisconsinAges 18–100 - NCT06368544Recruiting
Early walking training after ACL knee surgery
This trial studies whether starting walking exercises earlier after ACL reconstruction can help protect the knee cartilage from wearing down. It may be a good fit if you are having your first ACL surgery at Peking University Third Hospital and your knee has already healed from the initial injury.
BeijingAges 18–40 - NCT06728787Recruiting
Robot-assisted walking for hereditary spastic paraplegia
This trial tests if robot-assisted walking therapy can help people with hereditary spastic paraplegia (a condition causing progressive leg stiffness and weakness) improve their walking ability. It may be an option if you can walk indoors on your own.
Bosisio Parini, Italy/leccoAges 4–70
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Common questions
- Are there clinical trials for gait training?
- Yes. Clin2 currently lists 100 recruiting gait training 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 gait training 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 gait training 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.