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

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

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

19. Identification of

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

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

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

26. A novel

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

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

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

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

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

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

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

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

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

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

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

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

39. MESP1 loss-of-function mutation contributes to double outlet right ventricle

40. HAND1 loss-of-function mutation contributes to congenital double outlet right ventricle

41. Prevalence and Spectrum of NKX2-5 Mutations Associated With Sporadic Adult-Onset Dilated Cardiomyopathy

42. CASZ1 loss-of-function mutation associated with congenital heart disease

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

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

45. The Influence of Enterprise Social Capital on the Transformation Performance under the Background of 'Internet Plus'

46. NR2F2 loss‑of‑function mutation is responsible for congenital bicuspid aortic valve

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

48. ISL1 loss-of-function variation causes familial atrial fibrillation

49. TBX5 loss-of-function mutation contributes to atrial fibrillation and atypical Holt-Oram syndrome

50. PITX2 loss-of-function mutation contributes to tetralogy of Fallot

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