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Published on: March 4, 2014
Congenital myasthenic syndrome: presentation, electrodiagnosis, and muscle biopsy
Christina A Gurnett1, Judy A Bodnar, Jeffrey Neil
1Department of Neurology, Washington University School of Medicine, Saint Louis, MO 63110, USA.
Insights
Congenital myasthenic syndromes in children are often undiagnosed due to varied symptoms. Advanced electrodiagnostic studies are crucial for accurate diagnosis of this neuromuscular disorder.
Area of Science:
- Neurology
- Pediatrics
- Genetics
Background:
- Congenital myasthenic syndromes (CMS) are rare inherited neuromuscular junction disorders.
- Diagnosis typically relies on clinical presentation, electrophysiology, and response to treatment.
Observation:
- Ten children with CMS were diagnosed using clinical findings, electrodiagnostic tests, and acetylcholinesterase inhibitor response.
- Symptoms included motor delay, speech, respiratory, and feeding difficulties.
- Muscle biopsies revealed variable fiber size.
Findings:
- Electrophysiological studies showed unique responses, including significant amplitude increment during high-frequency stimulation and sustained decrement after depletion.
- Presynaptic abnormalities were not indicated by standard decremental responses.
Implications:
- Atypical presentations and the need for specialized electrophysiologic techniques may lead to underdiagnosis of CMS in children.
- Early and accurate diagnosis is vital for appropriate management and improved outcomes.
Abstract:
We report 10 children with congenital myasthenic syndromes diagnosed by clinical features, electrodiagnostic studies, and response to acetylcholinesterase inhibitors. Age at diagnosis (mean = 4.4 years; range 0.2-10 years) correlated with age fatigue was recognized. Symptoms at presentation included mild gross motor development delay (7/10), speech articulation difficulty (5/10), and respiratory and feeding difficulties resulting in poor growth in 7 of 10 children. None of the five children with possible presynaptic abnormalities had decremental compound muscle action potential responses to 2 Hz repetitive nerve stimulation. Instead, electrodiagnostic studies showed a more than 100% increment of compound muscle action potential amplitude during 50 Hz repetitive nerve stimulation in two children and sustained compound muscle action potential decrement to 2 Hz repetitive nerve stimulation after depletion (10 Hz stimulation for 10 min) in four children. Muscle biopsies (n = 7) showed mild to severe variation in fiber size. Our experience suggests that many children with congenital myasthenic syndromes might be undiagnosed because of atypical presentation and because additional electrophysiologic studies are required.
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