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4. Expanding the clinical-pathological and genetic spectrum of RYR1-related congenital myopathies with cores and minicores: an Italian population study

5. A TinyML-approach to detect the proximity of people based on bluetooth low energy beacons

7. CONGENITAL MYOPATHIES – NEMALINE MYOPATHIES

8. The importance of early treatment: new NURTURE data

12. CONGENITAL MYOPATHIES 2

13. Broad phenotypic spectrum and genotype-phenotype correlations in GMPPB-related dystroglycanopathies: an Italian cross-sectional study

19. Copy Number Variants Account for a Tiny Fraction of Undiagnosed Myopathic Patients.

22. CONGENITAL MYOPATHIES: NEMALINE AND TITINOPATHIES

23. CONGENITAL MYOPATHIES: NEMALINE AND TITINOPATHIES

24. Expanding the histopathological spectrum ofCFL2-related myopathies

26. Congenital myopathies: Clinical phenotypes and new diagnostic tools

28. Rom romeni in Italia: un quadro delle presenze

36. Muscle imaging in patients with tubular aggregate myopathy caused by mutations in STIM1

37. Centronuclear myopathies: genotype–phenotype correlation and frequency of defined genetic forms in an Italian cohort

38. Centronuclear myopathies: genotype–phenotype correlation and frequency of defined genetic forms in an Italian cohort

39. Expanding the histopathological spectrum of <italic>CFL2</italic>‐related myopathies.

40. Late-onset congenital myopathies: Clinical and molecular features

43. X-linked myotubular myopathy in females

45. Clinical, histological and genetic characterisation of patients with tubular aggregate myopathy caused by mutations in STIM1

48. Identification of a new mtDNA mutation (14724G>A) associated with mitochondrial leukoencephalopathy

49. A novel gain-of-function mutation in ORAI1 causes late-onset tubular aggregate myopathy and congenital miosis.

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