Clinical trials
Upper Limb Rehabilitation clinical trials
Below are recruiting upper limb rehabilitation clinical trials, each written for real people, not researchers. We’re tracking 85 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT06787729Recruiting
Using sensors and a smartphone to help arm recovery after stroke
This study tests if wearing small sensors on your arm at home and using a smartphone app can help improve how you use your weaker arm after a stroke. It is designed for people who are at least a year past their stroke and want to take an active role in their recovery.
Charlestown, MassachusettsAges 18–80 - NCT04851886Recruiting
Vision tool to guide robot therapy for stroke arm posture
This trial tests a vision-based system that detects your arm and posture during robot-assisted upper-arm therapy after a prior stroke. It may help the robot guide treatment more safely and accurately based on your movements and positioning.
Charlestown, MassachusettsAges 18–80 - NCT05902910Recruiting
Robot therapy to improve arm movement after long-term stroke
This trial tests whether a therapy robot (the Luna EMG rehabilitation robot) can improve arm movement and be acceptable to use for people with chronic stroke. It focuses on helping the arm recover function over time and seeing how well patients tolerate the approach.
BrestAges 18 years+ - NCT06443008Recruiting
Biofeedback training for arm function after stroke
This study tests whether a special feedback device that detects muscle signals can help improve arm and hand movement after a stroke. It is designed for people aged 65 and older.
Yiwu, ZhejiangAges 65–80 - NCT07720609Recruiting
Home versus clinic therapy for arm function after stroke
This trial compares video-based therapy at home to in-clinic therapy for improving arm and hand movement in people who have had a stroke more than six months ago. It may help you regain function in your affected arm.
Lahore, Punjab ProvinceAges 35–75 - NCT06928857Recruiting
Electrical stimulation for arm recovery after stroke
This trial tests if an electrical stimulator controlled by muscle signals can help improve arm function after a stroke. It may benefit people who have some movement but not full control in one arm.
GenovaAges 18 years+ - NCT07383753Recruiting
Virtual hand and arm assessments for kids with cerebral palsy
This study tests whether a virtual visit can assess hand and arm function in children with cerebral palsy. It may help families get care without traveling to a clinic.
Ajax, OntarioAges 6–17 - NCT07633769Recruiting
Virtual Reality Therapy for Hand and Wrist Injuries
This study tests whether using virtual reality (immersive computer simulations) during rehabilitation can help you recover better after a traumatic hand or wrist injury. The goal is to see if this approach improves how well your hand works and feels after healing.
MálagaAges 18–75 - NCT04975646Recruiting
Goal-setting tool for upper-arm spasticity treatment
This study looks at whether a structured goal-setting approach helps measure and improve treatment for stiff, tight upper-arm muscles after a stroke. It tests how well patients’ (or caregivers’) goals can be tracked when receiving or considering botulinum toxin (BTX-A).
LjubljanaAges 18 years+ - NCT07698405Recruiting
Advanced rehab technology for arm recovery after stroke
This study tests whether advanced technology-based rehabilitation can help people who have had a stroke regain movement and use of their affected arm. It may be a good option if you have had a single stroke and still have some arm weakness but no severe muscle tightness or memory problems.
Fiorenzuola d'Arda, PiacenzaAges 18 years+ - NCT06753110Recruiting
Long-term safety of OPRA implant for arm amputees
This study checks the long-term safety and how well the OPRA implant (a bone-anchored prosthetic) works for people who have an arm amputation. It is for those who already have the implant and had their second surgery at least six months ago.
Melbourne, VictoriaAges Any age - NCT05638191Recruiting
Nerve transfer surgery for arm grasp after neck spinal cord injury
This study looks at whether nerve transfer surgery can help restore hand grasp function after a neck (cervical) spinal cord injury. You may be eligible if your injury is recent and you meet specific strength patterns and can commit to rehabilitation after surgery.
Vancouver, British ColumbiaAges 18–70 - NCT06089915Recruiting
Robot-assisted arm exercise for cervical spinal cord injury
This trial tests a robot that helps move your arms if you have a cervical spinal cord injury. It may improve arm strength and function through guided exercise.
LjubljanaAges 18 years+ - NCT06775925Recruiting
Robot-assisted vs. standard arm therapy for spinal cord injury
This trial compares robot-assisted arm therapy with standard occupational therapy to see which helps people with a recent cervical spinal cord injury regain hand and arm function better. You may be eligible if you are in early rehab and have limited use of your arms or hands.
Nottwil, Canton of LucerneAges 18 years+ - NCT07244081Recruiting
Movement therapy for arm use in children with cerebral palsy
This study tests whether a type of physical therapy called kinesiotherapy can improve arm and hand function and daily living skills in children with hemiplegic cerebral palsy (weakness on one side). It may help children who can follow simple directions and participate in therapy sessions.
Sialkot, Punjab ProvinceAges 8–13 - NCT07722429Recruiting
Personalized spinal stimulation for arm function after spinal injury
This study tests a personalized electrical stimulation treatment placed near the spine to see if it can improve arm and hand function after a spinal cord injury. If you have a stable injury above the mid-back and have not had new nerve problems in the last 6 months, you may be able to join.
Hualien CityAges 18–70 - NCT07720882Recruiting
Brain implant study to restore hand function after spinal cord injury
This trial tests a fully implanted wireless brain-computer interface (BCI) to help people with paralysis from a neck-level spinal cord injury regain hand and arm movement. The BCI reads brain signals and sends them to your arm, bypassing the damaged spinal cord.
Shanghai, Shanghai MunicipalityAges 18–65 - NCT04032990Recruiting
Testing a skin-based nerve stimulation for kids’ arm function
This trial studies whether a painless, skin-based treatment (stimulation over the spine) is safe and feasible to improve arm and hand function in children with a spinal cord injury. It’s mainly designed to see if the approach can be done safely and whether it may help upper-limb skills.
Louisville, KentuckyAges 4–18 - NCT05226637Recruiting
Shockwave plus botox-like treatment versus standard care for arm spasticity
This study tests whether adding shockwave treatment to botulinum toxin type A (a botox-like injection) improves outcomes for people with stiff, tight upper-arm muscles after brain injury, stroke, or cerebral palsy. It also compares this to standard botulinum toxin care alone.
Edmonton, AlbertaAges 18–99 - NCT05322837Recruiting
Tracking arm nerve and strength recovery after first stroke
This study follows how stroke survivors’ arm feeling (sensory) and movement (motor) recover over time. It may help clinicians better understand recovery patterns in Asian patients and improve rehabilitation support.
SingaporeAges 21–90 - NCT06497881Recruiting
How well your arm moves after a stroke
This study looks at how well your arm and hand move after a stroke. If you join, researchers will check your movement quality to learn more about recovery. You must be 18 or older, have been independent before your stroke, and be a patient at Adi-Negev Nahalat-Eran.
OfakimAges 18–85 - NCT07477613Recruiting
Brain implant for arm recovery after stroke
This trial tests a brain-computer interface (a device implanted in the brain) to help people who have had a stroke regain arm movement. It may help if you have a single stroke that happened 6 to 18 months ago and still have trouble using your arm.
GrenobleAges 18–70 - 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+ - NCT07604181Recruiting
Telerehabilitation vs clinic therapy for stroke arm recovery
This trial compares two ways of helping stroke survivors regain arm and hand function: therapy done remotely online versus in-person at a clinic. Both use a specialized approach called constraint-induced movement therapy, which encourages use of the weaker arm. The study aims to see which method works better for people in the first 6 months after stroke.
Faisalabad, Punjab ProvinceAges 40–70
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Common questions
- Are there clinical trials for upper limb rehabilitation?
- Yes. Clin2 currently lists 85 recruiting upper limb rehabilitation 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 upper limb rehabilitation 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 upper limb rehabilitation 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.