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1. Digenic inheritance involving a muscle-specific protein kinase and the giant titin protein causes a skeletal muscle myopathy

2. CIAO1 loss of function causes a neuromuscular disorder with compromise of nucleocytoplasmic Fe-S enzymes

3. A Solve-RD ClinVar-based reanalysis of 1522 index cases from ERN-ITHACA reveals common pitfalls and misinterpretations in exome sequencing

4. TCTEX1D1 is a genetic modifier of disease progression in Duchenne muscular dystrophy.

5. Heterozygous frameshift variants in HNRNPA2B1 cause early-onset oculopharyngeal muscular dystrophy

6. Loss of Function of the Cytoplasmic Fe-S Assembly Protein CIAO1 Causes a Neuromuscular Disorder with Compromise of Nucleocytoplasmic Fe-S Enzymes

7. Association Study of Exon Variants in the NF-κB and TGFβ Pathways Identifies CD40 as a Modifier of Duchenne Muscular Dystrophy.

8. Genome-Wide Analysis of Copy Number Variants in Attention Deficit Hyperactivity Disorder: The Role of Rare Variants and Duplications at 15q13.3

9. Investigating the Contribution of Common Genetic Variants to the Risk and Pathogenesis of ADHD

10. Clinical, genetic, epidemiologic, evolutionary, and functional delineation of TSPEAR-related autosomal recessive ectodermal dysplasia 14

11. Twist exome capture allows for lower average sequence coverage in clinical exome sequencing

12. Solving unsolved rare neurological diseases-a Solve-RD viewpoint

13. Dihydropyridine receptor (DHPR, CACNA1S) congenital myopathy

14. The RD-connect genome-phenome analysis platform: accelerating diagnosis, research, and gene discovery for rare diseases

15. GGPS1‐associated muscular dystrophy with and without hearing loss

16. Correction to: Solve-RD: systematic pan-European data sharing and collaborative analysis to solve rare diseases

18. The RD‐Connect Genome‐Phenome Analysis Platform: Accelerating diagnosis, research, and gene discovery for rare diseases

19. Recessive variants in COL25A1 gene as novel cause of arthrogryposis multiplex congenita with ocular congenital cranial dysinnervation disorder

20. TRAPPC11 ‐related muscular dystrophy with hypoglycosylation of alpha‐dystroglycan in skeletal muscle and brain

21. Loss-of-function mutations in SCN4A cause severe foetal hypokinesia or ‘classical’ congenital myopathy

23. Solving patients with rare diseases through programmatic reanalysis of genome-phenome data

24. Correction: Solving unsolved rare neurological diseases : A Solve-RD viewpoint

25. Solve-RD: systematic pan-European data sharing and collaborative analysis to solve rare diseases

26. Specific heterozygous frameshift variants in hnRNPA2B1 cause early-onset oculopharyngeal muscular dystrophy

28. Exome reanalysis and proteomic profiling identified TRIP4 as a novel cause of cerebellar hypoplasia and spinal muscular atrophy (PCH1)

29. Digenic Inheritance Involving a Muscle Specific Protein Kinase and the Giant Titin Protein Causes a Skeletal Muscle Myopathy

30. TRAPPC11-related muscular dystrophy with hypoglycosylation of alpha-dystroglycan in skeletal muscle and brain.

31. TRAPPC11‐related muscular dystrophy with hypoglycosylation of alpha‐dystroglycan in skeletal muscle and brain.

32. 214th ENMC International Workshop: Establishing an international consortium for gene discovery and clinical research for Congenital Muscle Disease, Heemskerk, the Netherlands, 6–18 October 2015

34. STAC3variants cause a congenital myopathy with distinctive dysmorphic features and malignant hyperthermia susceptibility

35. Association study in the 5q31-32 linkage region for schizophrenia using pooled DNA genotyping

36. Association Study of Exon Variants in the NF-kappa B and TGF beta Pathways Identifies CD40 as a Modifier of Duchenne Muscular Dystrophy

37. Recessive mutations in MSTO1 cause mitochondrial dynamics impairment, leading to myopathy and ataxia

38. Dihydropyridine receptor (DHPR, CACNA1S) congenital myopathy

40. STAC3 variants cause a congenital myopathy with distinctive dysmorphic features and malignant hyperthermia susceptibility.

41. Whole exome sequencing in patients with congenital myopathy

43. Loss-of-function mutations inSCN4Acause severe foetal hypokinesia or ‘classical’ congenital myopathy

45. Dystromirs as Serum Biomarkers for Monitoring the Disease Severity in Duchenne Muscular Dystrophy

46. Whole-genome-wide association study in the Bulgarian population reveals HHAT as schizophrenia susceptibility gene

47. A Solve-RD ClinVar-based reanalysis of 1522 index cases from ERN-ITHACA reveals common pitfalls and misinterpretations in exome sequencing

48. Copy Number Variation in Schizophrenia in the Japanese Population

49. Case-control association study of 65 candidate genes revealed a possible association of a SNP of HTR5A to be a factor susceptible to bipolar disease in Bulgarian population

50. Case–control association study of 59 candidate genes reveals the DRD2 SNP rs6277 (C957T) as the only susceptibility factor for schizophrenia in the Bulgarian population

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