Clinical trials
Upper Extremity Injuries clinical trials
Below are recruiting upper extremity injuries clinical trials, each written for real people, not researchers. We’re tracking 67 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT06797154Recruiting
Stroke recovery study: wrist sensor to boost arm use
This study tests a wrist-worn sensor that vibrates to remind you to use your weaker arm. It's designed for people who had a stroke 1 to 6 months ago and have some arm weakness, to help them use their affected arm more during daily activities.
Boston, MassachusettsAges 18–85 - NCT06806397Recruiting
Brain imaging study of arm weakness after stroke
This study uses a light-based brain scanner (fNIRS) to understand how stroke affects arm movement. It may help find new ways to improve rehab.
MoscowAges 35–70 - NCT06837324Recruiting
Smart glove therapy for arm weakness after brain injury
This study tests a smart glove system that provides arm and hand exercises at home for people who had a brain injury (like a stroke) more than 3 months ago and have weakness on one side. The goal is to improve use of the affected arm without needing frequent hospital visits.
SeoulAges 19–85 - NCT06837363Recruiting
Smart board rehab for arm weakness after brain injury
This trial tests a smart board therapy that you can do without in-person contact to help improve arm movement if you have weakness on one side from a stroke, brain injury, or tumor. It is for people who are at least 3 months past their diagnosis and can understand simple instructions.
SeoulAges 19–85 - NCT07132021Recruiting
Ear nerve stimulation for arm recovery after stroke
This trial tests a gentle, non-invasive ear stimulation device to help improve arm movement after a stroke. It is for people who had a stroke in the last 5 years and still have arm weakness.
Recife, PernambucoAges 18–75 - NCT07331012Recruiting
Flywheel exercise for better basketball skills in teens
This study tests if upper body flywheel exercises can improve basketball skills, muscle oxygenation, and reduce fatigue in adolescent male basketball players. Flywheel exercises use a spinning wheel to create resistance during movement.
IğdırAges 10–18 - NCT07349914Enrolling by invitation
Shoulder Pain and Function with Heart Devices
This study looks at shoulder pain and how well the shoulder works in people who have a heart device like a pacemaker. It aims to understand if having the device affects shoulder function over time.
Ankara, SamanpazariAges 18 years+ - NCT07253909Enrolling by invitation
Arm function in heart failure with ICD or CRT devices
This study looks at how well people with heart failure and certain heart devices (ICD or CRT) can use their arms and hands. It aims to understand if these devices affect upper body function.
Ankara, SamanpazarıAges 18 years+ - NCT04534556Enrolling by invitation
Wireless nerve stimulation to improve stroke recovery
This study tests a wireless nerve stimulation device placed near the vagus nerve to help people recover after a stroke. It focuses on people with specific remaining arm/hand movement and recovery levels at least 12 months after stroke.
Dallas, TexasAges 22–79 - NCT06105788Recruiting
Exercise and pain relief for knee arthritis
This study looks at how moving your arms and legs might help reduce pain for people with knee osteoarthritis. If you join, you will do some light exercise so researchers can see if it helps your knee feel better.
El Paso, TexasAges 45–90 - NCT04789044RecruitingPhase 2
PEG treatment to improve nerve repair after upper-arm injury
This Phase 2 study tests a PEG-based approach meant to help damaged peripheral nerves heal and regain movement and feeling after an upper-arm/hand nerve injury. You may be screened quickly after injury to see if the nerve pattern and your health situation fit the study plan.
Baltimore, MarylandAges 18–80 - NCT00623389Recruiting
Testing a leg neuroprosthesis for walking and leg control
This trial tests an advanced device that helps control and use your legs and trunk muscles for movement. It may help people with certain types of paralysis or weakness to improve function, while closely monitoring safety and comfort.
Cleveland, OhioAges 21–75 - NCT07404761Recruiting
Moving your arm after stroke or TBI
This study tests a device that uses mild electrical pulses and augmented reality (a computer overlay on real life) to help people who have arm or hand weakness after a recent stroke or brain injury regain movement.
HaifaAges 18 years+ - NCT07432685Enrolling by invitation
Can movement predict chronic pain after combat limb injuries?
This study is looking for people with combat-related arm or leg injuries to see if how they move can predict long-term pain. Researchers hope to better understand who might develop chronic pain and help improve treatment.
LvivAges 18–50 - NCT06543277Recruiting
Nerve stimulation with hand therapy for spinal cord injury
This trial tests a safe, non-invasive nerve stimulation on the ear combined with arm and hand therapy to see if it can improve movement and function for people with neck-level spinal cord injury who still have some hand ability.
Houston, TexasAges 18 years+ - NCT07153536Recruiting
Spinal stimulation and therapy for arm weakness after stroke
This trial tests if electrical stimulation of the spinal cord, combined with physical therapy, can improve arm and hand function after a stroke. It is for people who have had a stroke more than 6 months ago and still have significant weakness in one arm.
Pittsburgh, PennsylvaniaAges 22–70 - 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 - 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 - 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
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Common questions
- Are there clinical trials for upper extremity injuries?
- Yes. Clin2 currently lists 67 recruiting upper extremity injuries 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 extremity injuries 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 extremity injuries 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.