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210 results on '"YI‑QING YANG"'

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1. m6A demethylase ALKBH5 attenuates doxorubicin-induced cardiotoxicity via posttranscriptional stabilization of Rasal3

2. Discovery of TBX20 as a Novel Gene Underlying Atrial Fibrillation

3. KLF13 Loss‐of‐Function Mutations Underlying Familial Dilated Cardiomyopathy

4. Discovery of GJC1 (Cx45) as a New Gene Underlying Congenital Heart Disease and Arrhythmias

5. Identification of BMP10 as a Novel Gene Contributing to Dilated Cardiomyopathy

6. PRRX1 Loss‐of‐Function Mutations Underlying Familial Atrial Fibrillation

7. Identification of SOX18 as a New Gene Predisposing to Congenital Heart Disease

8. Atrial Fibrillation: Focus on Myocardial Connexins and Gap Junctions

9. A novel TBX5 mutation predisposes to familial cardiac septal defects and atrial fibrillation as well as bicuspid aortic valve

10. KLF15 Loss-of-Function Mutation Underlying Atrial Fibrillation as well as Ventricular Arrhythmias and Cardiomyopathy

11. Polyethyleneimine Addition for Control of Dissolved and Colloidal Substances: Effects on Wet-End Chemistry

12. A HAND2 Loss-of-Function Mutation Causes Familial Ventricular Septal Defect and Pulmonary Stenosis

13. PITX2C loss-of-function mutations responsible for idiopathic atrial fibrillation

14. Prevalence and spectrum of Nkx2.5 mutations associated with idiopathic atrial fibrillation

15. Novel GATA5 loss-of-function mutations underlie familial atrial fibrillation

16. PITX2 Loss-of-Function Mutation Contributes to Congenital Endocardial Cushion Defect and Axenfeld-Rieger Syndrome.

17. Instability of municipal solid waste along the constant deviatoric stress path and its engineering significance

18. Foam-induced high gas pressures in wet municipal solid waste landfills

19. Identification of

22. SOX17 Loss-of-Function Mutation Underlying Familial Pulmonary Arterial Hypertension

23. Connexin45 (GJC1) loss-of-function mutation contributes to familial atrial fibrillation and conduction disease

25. Detection and functional characterization of a novel MEF2A variation responsible for familial dilated cardiomyopathy

26. SMAD4 loss-of-function mutation predisposes to congenital heart disease

27. A novel PRRX1 loss-of-function variation contributing to familial atrial fibrillation and congenital patent ductus arteriosus

28. A novel

29. SMAD1 Loss-of-Function Variant Responsible for Congenital Heart Disease

30. PRRX1 Loss‐of‐Function Mutations Underlying Familial Atrial Fibrillation

31. A New TBX5 Loss-of-Function Mutation Contributes to Congenital Heart Defect and Atrioventricular Block

32. Gender Differences in Arrhythmias: Focused on Atrial Fibrillation

33. Induction of differentiation of human stem cellsex vivo: Toward large-scale platelet production

35. SOX7 loss-of-function variation as a cause of familial congenital heart disease

36. ISL1 loss-of-function mutation contributes to congenital heart defects

37. A SHOX2 loss-of-function mutation underlying familial atrial fibrillation

38. SOX17 loss-of-function variation underlying familial congenital heart disease

40. A novel TBX5 mutation predisposes to familial cardiac septal defects and atrial fibrillation as well as bicuspid aortic valve

41. Detection and functional characterization of a novel

42. A New TBX5 Loss-of-Function Mutation Contributes to Congenital Heart Defect and Atrioventricular Block

43. GATA6 loss-of-function mutation contributes to congenital bicuspid aortic valve

44. Identification and functional characterization of KLF5 as a novel disease gene responsible for familial dilated cardiomyopathy

45. A New ISL1 Loss-of-Function Mutation Predisposes to Congenital Double Outlet Right Ventricle

46. A novel NR2F2 loss-of-function mutation predisposes to congenital heart defect

47. GATA4 Loss-of-Function Mutation and the Congenitally Bicuspid Aortic Valve

48. MEF2C loss-of-function mutation contributes to congenital heart defects

49. KLF15 Loss-of-Function Mutation Underlying Atrial Fibrillation as well as Ventricular Arrhythmias and Cardiomyopathy

50. An update on the molecular diagnosis of congenital heart disease: focus on loss-of-function mutations

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