Clinical trials
EMG clinical trials
Below are recruiting emg clinical trials, each written for real people, not researchers. We’re tracking 53 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT05663008Recruiting
Testing nerve-to-muscle signal changes to diagnose movement diseases
This study measures how nerves communicate with muscles, using recordings and gels. It aims to spot early, personalized signs of conditions like ALS and related diseases, and to improve diagnosis.
Dublin, LeinsterAges 18 years+ - NCT05820815Recruiting
In-bed exercises for early recovery after stroke
This trial tests whether a simple exercise program done in bed is safe and practical for people in the first few months after a stroke. It may help you start gentle lower-leg movement without needing to get fully out of bed right away.
Seoul, JongnoAges 19 years+ - NCT05908149Recruiting
Gait analysis with a shoe insole splint after stroke
This study checks how a special shoe insole splint affects walking patterns in people recovering from a stroke. It’s looking at gait (walking) measurements to see whether the splint can help safely during physical therapy.
IoanninaAges 18–70 - NCT05945212Recruiting
Vibration therapy to help leg recovery after subacute stroke
This study tests whether a program using local vibrations on the muscles in the front of your ankle can improve leg nerve and movement recovery after stroke. It may help people who have weak ankle lifting during the weeks to months after stroke.
Le Chambon-FeugerollesAges 18–80 - NCT06230718Recruiting
Thinking about moving your arm after stroke
This study tests if thinking about moving your arm (motor imagery) and watching a video of arm movements can help you move better after a stroke. It uses a technique called EMG to measure muscle signals while you try or imagine moving.
Salamanca, SalamancaAges 18–99 - NCT06380049Recruiting
Predicting fall risk after stroke with sensors and AI
This study uses special sensors and machine learning to predict fall risk in people who recently had a stroke. It aims to help you and your care team take steps to prevent falls.
Seoul, JongnoAges 19 years+ - NCT06409260Recruiting
Muscle monitoring in children 6 months to 2 years old
This study tests two devices that measure how well muscle relaxants work in young children during surgery. The goal is to see which device gives more accurate readings, helping doctors use the right dose of relaxant.
CopenhagenAges 6 months–2 years - NCT06523335Recruiting
Arm coordination training after stroke using muscle sensing
This study uses a special muscle-sensing device to help people who had a stroke improve arm coordination. You will play movement games that guide you to use muscles more effectively, which may help you regain control.
Houston, TexasAges 40–75 - NCT06532981Recruiting
How Ankle-Foot Braces Affect Muscle Activity in Children with CP
This study looks at how ankle-foot braces (AFOs) affect the electrical activity in the leg muscles of children with cerebral palsy. It may help understand if braces improve muscle function during walking.
Leuven, Vlaams-BrabantAges 6–17 - NCT06911671Recruiting
VR and brain stimulation for arm recovery after stroke
This study tests a combination of virtual reality therapy and brain stimulation to help people recover arm movement after a stroke. It uses a special interface controlled by muscle signals and applies stimulation to the cerebellum to improve motor control.
Roma, RomeAges 18–80 - NCT06944782Recruiting
Can mouth muscle tests help diagnose sleep apnea?
This study tests a new device that measures muscle activity in your mouth to diagnose sleep apnea—without needing to spend the night in a lab. If you've already had a sleep test showing either no sleep apnea or moderate to severe sleep apnea, and you're not using CPAP daily, you may be able to help.
San Diego, CaliforniaAges 18–80 - NCT07003399Recruiting
Breathing Muscle Function in Sleep Apnea and COPD
This study looks at how the diaphragm (the main breathing muscle) and the drive to breathe work in people with sleep apnea, COPD, or both. Researchers want to compare these groups with healthy volunteers to better understand breathing problems.
Nanjing, JiangsuAges 18–80 - NCT07011420Recruiting
Testing different prosthetics controls for arm amputees
This trial tests how different numbers and types of muscle signals (myoelectric) affect control of a prosthetic hand and wrist. It aims to find the best setup for people with a below-elbow amputation who have used a myoelectric prosthetic before.
Chicago, IllinoisAges 18 years+ - NCT07025434Recruiting
Hip Bump Manipulation vs Sham in Healthy Adults
This study tests a hip adjustment technique (called hip bump manipulation) to see how it affects joint movement and muscles in healthy adults. If you join, you will receive either the real manipulation or a fake (sham) treatment, so researchers can compare the two.
Orangeburg, New YorkAges 18–45 - NCT07047300Recruiting
How a heel lift insole affects walking for healthy adults
This study tests whether wearing a heel lift insole changes how your legs and lower back move while walking. It may help understand if such insoles can benefit people with certain conditions, but right now it only includes healthy volunteers.
Giza, Giza GovernorateAges 18–25 - NCT07082972RecruitingPhase 4
Study of splint therapy and Botox for jaw muscle pain
This trial compares two treatments—a dental splint and Botox injections into the jaw muscle (masseter)—to see which one better relaxes head and neck muscles in people with myofascial pain syndrome. It may help you if you have facial pain related to muscle tension.
Istanbul, VeznecilerAges 18–55 - NCT07147933Recruiting
Treatment for crouch gait in cerebral palsy
This trial tests a treatment for children with cerebral palsy who have a crouched walking pattern, a forward-tilted pelvis, and weak calf muscles. It uses EMG to check muscle activity and aims to improve walking.
AmmanAges 4–10 - NCT07236684Recruiting
MS Bladder Control: Study of Muscle Activity
This study looks at how well the pelvic floor muscles work in people with MS who have bladder control problems. It may help find better ways to manage urinary incontinence.
IstanbulAges 30–50 - NCT07236892Recruiting
Restoring movement after paralysis: healthy volunteer study
This study uses healthy volunteers to test algorithms that could one day help people with paralysis move again. You may be able to participate if you have no paralysis-causing conditions.
Los Angeles, CaliforniaAges 18 years+ - NCT07333989Recruiting
Biofeedback training for balance in older adults with osteoporosis
This study tests whether biofeedback (using sensors to help you control your body movements) can improve balance in older adults with osteoporosis. If you have low bone density and are between 65-75 years old, this trial may help you strengthen your balance and reduce fall risk.
Abū ḨummuşAges 65–75 - NCT06452186Recruiting
Study of a new leg prosthetic controller for improved balance
This study tests a new prosthetic leg controller that helps people with below-knee amputations walk more steadily and with better balance. You may be eligible if you have used a prosthetic leg for at least a year and are comfortable walking in the community.
Raleigh, North CarolinaAges 18–99 - NCT01900132Recruiting
Measures nerve and muscle signals in healthy people and patients
This study uses a painless electrical method to record how muscles and nerves work over time. It aims to better understand normal patterns (healthy volunteers) and to learn how these signals change in people with neuromuscular or movement-related conditions.
Bethesda, MarylandAges 2–110 - NCT07400939Recruiting
Brain stimulation and hand movement training for stroke recovery
This trial tests if combining brain stimulation with watching hand movements can improve hand function in people who had a stroke 6 to 24 months ago. It may help you regain better use of your affected hand.
Kota Kinabalu, SabahAges 18–59 - NCT07446283Recruiting
How table tennis players hit forehand shots
This study looks at how elite table tennis players perform different forehand strokes. It uses motion sensors and muscle activity readings to understand the movements involved.
Taipei, TaiwanAges 13–40
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Common questions
- Are there clinical trials for emg?
- Yes. Clin2 currently lists 53 recruiting emg 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 emg 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 emg 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.