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Showing 1-5 of 5 trials for Becker-muscular-dystrophy
Recruiting

Biomarker Development for Muscular Dystrophies

Massachusetts · Boston, MA

Current methods of measuring the response to new treatments for muscular dystrophies involve the examination of small pieces of muscle tissue called biopsies. The investigators are interested in finding less invasive methods that reduce the need for muscle biopsies. The purpose of this research is to learn about the possibility of detecting and measuring the activity and severity of muscular dystrophies by examining a urine sample and a blood sample, and some muscles in the arms and legs using tests called ultrasound and electrical impedance myography; both tests are painless and non-invasive. The information that is gathered from this study may help to evaluate, prevent, diagnose, treat, and improve the understanding of human muscle diseases.

Recruiting

CureDuchenne Link®: A Resource for Research

Arkansas · Little Rock, AR

CureDuchenne link is a data hub comprised of integrated biospecimens, clinical data, and self- and/or caregiver-reported information from participants. Anyone over 4 weeks old who has been diagnosed with DMD or BMD or who is a carrier of DMD or BMD can join. Parents or legal guardians can sign up their child(ren).

Recruiting

The Duchenne Registry

District of Columbia · Washington, DC

The Duchenne Registry is an online, patient-report registry for individuals with Duchenne and Becker muscular dystrophy and carrier females. The purpose of the Registry is to connect Duchenne and Becker patients with actively recruiting clinical trials and research studies, and to educate patients and families about Duchenne and Becker care and research. At the same time, The Duchenne Registry is a valuable resource for clinicians and researchers in academia and industry, allowing access to de-identified datasets provided by patients and their families-information that is vital to advances in the care and treatment of Duchenne. The Duchenne Registry is a member of the TREAT-NMD Neuromuscular Network.

Recruiting

Magnetic Resonance Imaging and Biomarkers for Muscular Dystrophy

Florida · Gainesville, FL

The purpose of this research study is to determine the potential of magnetic resonance imaging, spectroscopy, and whole body imaging to monitor disease progression and to serve as an objective outcome measure for clinical trials in Muscular Dystrophy (MD). The investigators will compare the muscles of ambulatory or non-ambulatory boys/men with DMD with muscles of healthy individuals of the same age and monitor disease progression in those with DMD over a 5-10 year period. The amount of muscle damage and fat that the investigators measure will also be related to performance in daily activities, such as walking and the loss of muscle strength. In a small group of subjects the investigators will also assess the effect of corticosteroid drugs on the muscle measurements. Additionally, the investigators will map the progression of Becker MD following adults with this rare disease. The primary objective is to conduct a multi-centered study to validate the potential of non-invasive magnetic resonance imaging and magnetic resonance spectroscopy to monitor disease progression and to serve as a noninvasive surrogate outcome measure for clinical trials in DMD and BMD. The secondary objective is to characterize the progressive involvement of the lower extremity, upper extremity, trunk/respiratory muscles in boys/men with DMD and BMD guiding clinical trials.

Recruiting

Molecular Analysis of Patients With Neuromuscular Disease

Massachusetts · Boston, MA

The purpose of this study is to identify new genes responsible for neuromuscular disorders and study muscle tissue of patient with known neuromuscular disease, as well as their family members. We are interested in recruiting many types of neuromuscular disease including; Duchenne muscular dystrophy (DMD), Becker muscular dystrophy (BMD), and limb-girdle muscle dystrophy (LGMD). There are still many patients diagnosed with muscular dystrophy with no causative gene implicated in their disease. Using molecular genetics to unravel basis of these neuromuscular disorders will lead to more accurate diagnosis/prognosis of these disorders which will lead to potential therapies.