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Your search keyword '"MYOTONIA congenita"' showing total 25 results

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25 results on '"MYOTONIA congenita"'

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1. Case report: Incomplete penetrance of autosomal dominant myotonia congenita caused by a rare CLCN1 variant c.1667T>A (p.I556N) in a Malaysian family.

2. Case report: Incomplete penetrance of autosomal dominant myotonia congenita caused by a rare CLCN1 variant c.1667T>A (p.I556N) in a Malaysian family

3. Optically pumped magnetometers detect altered maximal muscle activity in neuromuscular disease.

4. Case report: Coexistence of myotonia congenita and Brugada syndrome in one family.

5. Case report: Sodium and chloride muscle channelopathy coexistence: A complicated phenotype and a challenging diagnosis.

6. Chaperone activity of niflumic acid on ClC-1 chloride channel mutants causing myotonia congenita.

7. Case report: Coexistence of myotonia congenita and Brugada syndrome in one family

8. Chaperone activity of niflumic acid on ClC-1 chloride channel mutants causing myotonia congenita

9. The Clinical, Myopathological, and Genetic Analysis of 20 Patients With Non-dystrophic Myotonia.

10. The Clinical, Myopathological, and Genetic Analysis of 20 Patients With Non-dystrophic Myotonia

11. Myotonia Congenita: Clinical Characteristic and Mutation Spectrum of CLCN1 in Chinese Patients

12. Paxilline Prevents the Onset of Myotonic Stiffness in Pharmacologically Induced Myotonia: A Preclinical Investigation

13. Pathomechanisms of a CLCN1 Mutation Found in a Russian Family Suffering From Becker's Myotonia

14. CLCN1 Molecular Characterization in 19 South-Italian Patients With Dominant and Recessive Type of Myotonia Congenita

15. Paxilline Prevents the Onset of Myotonic Stiffness in Pharmacologically Induced Myotonia: A Preclinical Investigation.

16. Pathomechanisms of a CLCN1 Mutation Found in a Russian Family Suffering From Becker's Myotonia.

17. Genotype-Phenotype Correlations and Characterization of Medication Use in Inherited Myotonic Disorders.

18. CLCN1 Molecular Characterization in 19 South-Italian Patients With Dominant and Recessive Type of Myotonia Congenita.

19. ClC Channels and Transporters: Structure, Physiological Functions, and Implications in Human Chloride Channelopathies.

20. ClC-1 chloride channels: state-of-the-art research and future challenges

21. CLC channel function and dysfunction in health and disease

22. ClC-1 chloride channels: state-of-the-art research and future challenges.

23. CLC channel function and dysfunction in health and disease.

24. Defective Gating and Proteostasis of Human ClC-1 Chloride Channel: Molecular Pathophysiology of Myotonia Congenita

25. Impaired Wheel Running Exercise in CLC-1 Chloride Channel-Deficient Myotonic Mice

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