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54 results on '"Dagradi F."'

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1. Therapeutic Efficacy of Mexiletine for Long QT Syndrome Type 2: Evidence from Human Induced Pluripotent Stem Cell-Derived Cardiomyocytes, Transgenic Rabbits, and Patients

2. Continuous Bayesian Variant Interpretation Accounts for Incomplete Penetrance among Mendelian Cardiac Channelopathies

3. Clinical presentation of calmodulin mutations: the International Calmodulinopathy Registry

4. Left Cardiac Sympathetic Denervation for Long QT Syndrome: 50 Years’ Experience Provides Guidance for Management

5. Estimating the Posttest Probability of Long QT Syndrome Diagnosis for Rare KCNH2 Variants

6. Enhancing rare variant interpretation in inherited arrhythmias through quantitative analysis of consortium disease cohorts and population controls

7. Estimating the Posttest Probability of Long QT Syndrome Diagnosis for Rare KCNH2 Variants

8. Mutation location and IKsregulation in the arrhythmic risk of long QT syndrome type 1: The importance of the KCNQ1 S6 region

9. Transethnic genome-wide association study provides insights in the genetic architecture and heritability of long QT syndrome

10. SCN5A mutation type and a genetic risk score associate variably with brugada syndrome phenotype in SCN5A families

11. Abnormal myocardial expression of SAP97 is associated with arrhythmogenic risk

12. Partial Pericardial Agenesis Mimicking Arrhythmogenic Right Ventricular Cardiomyopathy

13. Prevalence of cardiac amyloidosis among adult patients referred to tertiary centres with an initial diagnosis of hypertrophic cardiomyopathy

14. Calmodulin mutations and life-threatening cardiac arrhythmias: Insights from the International Calmodulinopathy Registry

15. Calmodulin mutations and life-threatening cardiac arrhythmias: Insights from the International Calmodulinopathy Registry

16. Transethnic Genome-Wide Association Study Provides Insights in the Genetic Architecture and Heritability of Long QT Syndrome .

17. Exercise Training-Induced Repolarization Abnormalities Masquerading as Congenital Long QT Syndrome

18. Transethnic Genome-Wide Association Study Provides Insights in the Genetic Architecture and Heritability of Long QT Syndrome .

19. Transethnic Genome-Wide Association Study Provides Insights in the Genetic Architecture and Heritability of Long QT Syndrome .

20. Exercise Training-Induced Repolarization Abnormalities Masquerading as Congenital Long QT Syndrome

21. Genetic of adult and fetal forms of Long QT Syndrome.

22. From patient-specific induced pluripotent stem cells to clinical translation in long QT syndrome Type 2

23. SCN5A mutations in 442 neonates and children: genotype-phenotype correlation and identification of higher-risk subgroups.

24. Generation of the human induced pluripotent stem cell (hiPSC) line PSMi002-A from a patient affected by the Jervell and Lange-Nielsen syndrome and carrier of two compound heterozygous mutations on the KCNQ1 gene

25. The genetics underlying idiopathic ventricular fibrillation: A special role for catecholaminergic polymorphic ventricular tachycardia?

26. Condizioni cliniche associate ad anomalie dell'intervallo QT: Implicazioni cliniche [Clinical conditions associated with abnormal QT interval: clinical implications]

27. Condizioni cliniche associate ad anomalie dell'intervallo QT: Implicazioni cliniche [Clinical conditions associated with abnormal QT interval: clinical implications]

28. Common variants at SCN5A-SCN10A and HEY2 are associated with Brugada syndrome, a rare disease with high risk of sudden cardiac death

29. Torsades de Pointes following Acute Myocardial Infarction: Evidence for a Deadly Link with a Common Genetic Variant

30. Spectrum and prevalence of mutations involving BrS1-12 susceptibility genes in a cohort of unrelated patients referred for Brugada Syndrome genetic testing: implications for genetic testing

31. A KCNH2 branch point mutation causing aberrant splicing contributes to an explanation of genotype-negative long QT syndrome

32. Impact of clinical and genetic findings on the management of young patients with Brugada syndrome

33. The genetics underlying acquired long QT syndrome: Impact for genetic screening

34. Congenital long QT syndrome

35. Gene symbol: KCNH2. Disease: Long QT syndrome in Novel human pathological mutations

36. Gene symbol: KCNH2. Disease: Long QT syndrome in Novel human pathological mutations

37. Congenital long QT syndrome

38. Gene symbol: KCNQ1. Disease: Long QT syndrome

39. Gene symbol: KCNQ1. Disease: Long QT syndrome

40. Gene symbol: SCN5A. Disease: Brugada syndrome in Novel human pathological mutations

41. Gene symbol: SCN5A. Disease: Brugada syndrome

42. Gene symbol: KCNH2. Disease: Long QT syndrome

43. Biventricular arrhythmogenic cardiomyopathy: a paradigmatic case.

44. Biventricular arrhythmogenic cardiomyopathy: a paradigmatic case.

45. Role of common and rare variants in SCN10A: results from the Brugada syndrome QRS locus gene discovery collaborative study

46. A comprehensive electrocardiographic, molecular, and echocardiographic study of Brugada syndrome: Validation of the 2013 diagnostic criteria

47. Characterization of SEMA3A-encoded semaphorin as a naturally cccurring Kv4.3 protein inhibitor and its contribution to Brugada Syndrome

48. FGF12 is a candidate Brugada syndrome locus

49. Identification of a KCNQ1 polymorphism acting as a protective modifier against arrhythmic risk in long-QT syndrome

50. Torsades de pointes following acute myocardial infarction: Evidence for a deadly link with a common genetic variant.

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