Clinical trials
Neuromuscular Diseases clinical trials
Below are recruiting neuromuscular diseases clinical trials, each written for real people, not researchers. We’re tracking 63 recruiting studies, each written for real people, not researchers, below.
Recruiting studies
- NCT04236726Recruiting
Quality of life study for people with chronic breathing failure
This study looks at how chronic respiratory failure affects day-to-day quality of life. It enrolls people who use breathing support at home or in care, and may help clinicians understand what support works best for patients’ daily living.
LondonAges 18 years+ - NCT06566651Recruiting
Emotion processing study for people with ALS
This study looks at how people with ALS process emotions. It compares ALS patients, people with other nerve-muscle diseases, and healthy volunteers to understand changes in emotional processing.
Aarhus, Central JutlandAges 18 years+ - NCT05214612Recruiting
Predictors of outcomes in myasthenia gravis
This study looks at what helps predict outcomes in people with myasthenia gravis (MG). It may help doctors better forecast how MG will progress and which factors matter most for recovery and long-term health.
AsyutAges 16 years+ - NCT05051254Recruiting
Breathing muscle testing in children with breathing muscle weakness
This study looks at how hard it is for children to breathe and how their breathing muscles work, using specific breathing-related tests. It may help doctors better understand breathing problems and choose care more effectively.
ParisAges birth–17 years - NCT06851195Enrolling by invitation
Electrical stimulation for leg strength in COPD
This trial tests whether a gentle electrical stimulation applied to your leg muscles can help you feel less breathless and less tired during daily activities, and improve your confidence in exercising. It is for people with stable COPD who are already in a pulmonary rehab program.
Kaohsiung, TaiwanAges 18 years+ - NCT07589296Recruiting
Robot-Assisted Walking vs. Electrical Stimulation for Parkinson's
This study compares two ways to help people with Parkinson's disease improve their walking: using a robotic device to guide your legs, or electrical stimulation (mild electrical pulses to leg muscles). The goal is to see which approach helps you walk better and more confidently.
Küçükçekmece, IstanbulAges 40–80 - NCT05785637Recruiting
Home sleep testing after starting noninvasive breathing support
This study checks breathing/sleep measurements done at home for people who recently started a machine that helps them breathe without an endotracheal tube. It may help the team confirm how well home monitoring works after hospital setup of this breathing support.
GarchesAges 18 years+ - NCT06363357Recruiting
Shoulder brace study for arm weakness from nerve or muscle diseases
This study tests a fabric shoulder brace that moves like a muscle. It may help people with nerve or muscle diseases improve arm movements like reaching and lifting.
Seoul, Jongno-guAges 10 years+ - NCT07136844Recruiting
Walking and arm movement study for nerve and muscle conditions
This study uses motion analysis to understand walking and arm function in adults with certain neurological or metabolic diseases. The goal is to find patterns that help doctors better manage these conditions.
LiègeAges 18 years+ - NCT06666816Recruiting
Watching changes in walking for muscle and nerve diseases
This study watches how people with certain muscle or nerve diseases walk over time. It may help doctors understand changes in walking patterns and is open to adults who can walk and have a genetic diagnosis of a neuromuscular condition.
Bosisio Parini, LeccoAges 18–75 - NCT06881979Recruiting
High-tech rehab for chronic neuromuscular diseases
This study tests a high-tech rehabilitation program for people with long-term nerve and muscle conditions. It aims to help you improve your walking and daily function using advanced technology.
GenovaAges 18–80 - NCT07072676Enrolling by invitation
Can a walker help prevent falls in neuromuscular disease?
This study tests if using assistive walking devices, after a short training period, can lower the risk of falls in people with neuromuscular diseases. It aims to help you stay steady and safe on your feet.
Bad FeilnbachAges 65–65 - NCT07216339Recruiting
Can a game make the walking test more fun for kids?
This study tests if adding game-like features to a standard 6-minute walking test makes it more engaging for children with muscle or nerve disorders. It may help kids stay motivated and perform better during the test.
Lexington, KentuckyAges 6–12 - NCT03201094Recruiting
NMES and whey protein for recovery after aneurysmal brain bleed
This pilot study tests whether a therapy that gently stimulates nerves (NMES) and a whey-protein supplement (HPRO) can improve recovery after an aneurysmal subarachnoid hemorrhage (SAH), a type of bleeding around the brain. Participants are usually treated soon after the bleed and stay in the ICU long enough for the study measures.
Baltimore, MarylandAges 18 years+ - NCT04163198Recruiting
Testing better airway clearance for weak breathing muscles
This study checks a device approach that helps move mucus out of the lungs in people with neuromuscular (nerve/muscle) conditions and weak breathing. It may help reduce mucus buildup and lower respiratory infections, but you must meet specific breathing and stability requirements.
London, LondonAges 18 years+ - NCT05189600Recruiting
Testing breathing wave signals to improve airway treatment
This trial studies whether special breathing recordings taken during assisted air “insufflation–exsufflation” can show how your larynx (voice box) responds. The goal is to use those signals to fine-tune the best treatment settings for people with neuromuscular conditions.
LondonAges 18 years+ - NCT05785546Recruiting
Build a wheelchair seat change prediction score
This study looks at how your wheelchair seating setup changes over time and uses that information to create a prediction score. The goal is to help the clinical team better decide when a seat adjustment might be needed.
GarchesAges 18 years+ - NCT06084026Recruiting
Measuring daily activity with a small leg monitor
This study uses a small device called ActivPal clipped to your leg to measure how much you move during daily life. Researchers want to compare activity levels between people with neuromuscular disorders and healthy volunteers to better understand physical activity patterns.
New York, New YorkAges 1 year+ - NCT06190431Recruiting
Can coaching help kids learn to use a lung-clearing device?
This study tests whether a coaching feature helps children learn to use a device called mechanical in-exsufflation (MI-E), which helps clear mucus from the lungs. The trial is split into two parts: one for healthy children and one for children with neuromuscular diseases.
Brussels, Brussels CapitalAges 6–12 - NCT06207591Recruiting
Brain implant study for locked-in communication
This study tests a new brain implant (CortiCom) that may help people who are locked-in or nearly locked-in communicate again. It involves surgery to place the device in the brain and requires a caregiver and commitment to follow-up visits.
UtrechtAges 18–70 - NCT06439823Recruiting
Study of arm and leg movement in people with walking problems
This study observes how your arms and legs move as you walk or do other activities. It compares people with conditions that affect movement (like muscle diseases) to healthy volunteers to understand differences.
Liège, LiegeAges 2 years+ - NCT06553976Recruiting
Research network for hereditary spastic paraplegia
This trial aims to build a research network and gather information from people with two genetic types of hereditary spastic paraplegia (SPG4 and SPG5A). It will help doctors better understand these conditions and improve care.
Miami, FloridaAges Any age - NCT06822231Recruiting
High-tech rehab for acute neuromuscular diseases
This study tests a high-tech rehab program using robots and advanced tools to help people recover from acute neuromuscular diseases. It aims to see if this approach improves leg strength and mobility better than standard care.
BariAges 18–80 - NCT07021638Recruiting
Walking training at home in virtual reality for children with chronic illnesses
This trial tests a home-based walking program using virtual reality games to help children with chronic conditions like cerebral palsy, obesity, or neuromuscular disease improve their walking and physical activity. It's designed to see if training at home with VR is effective and enjoyable.
AngersAges 6–17
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Common questions
- Are there clinical trials for neuromuscular diseases?
- Yes. Clin2 currently lists 63 recruiting neuromuscular diseases 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 neuromuscular diseases 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 neuromuscular diseases 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.