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1. Genome-Wide Association Study in 2,140 Patients and Subtype Meta-analyses of Barlow's Disease and Fibroelastic Deficiency Identify Novel Risk Loci for Mitral Valve Prolapse.

2. GENETIC STUDY OF PHACTR1 AND FIBROMUSCULAR DYSPLASIA, META-ANALYSIS AND EFFECTS ON CLINICAL FEATURES OF PATIENTS: THE ARCADIA-POL STUDY

3. Research Opportunities in the Treatment of Mitral Valve Prolapse: JACC Expert Panel

8. Publisher Correction: Sex-dimorphic genetic effects and novel loci for fasting glucose and insulin variability (Nature Communications, (2021), 12, 1, (24), 10.1038/s41467-020-19366-9)

9. Sex-dimorphic genetic effects and novel loci for fasting glucose and insulin variability

10. Sex-dimorphic genetic effects and novel loci for fasting glucose and insulin variability

13. Genetic investigation of fibromuscular dysplasia identifies risk loci and shared genetics with common cardiovascular diseases

15. Spontaneous Coronary Artery Dissection Insights on Rare Genetic Variation From Genome Sequencing

16. Quality control and conduct of genome-wide association meta-analyses

17. Rare loss-of-function mutations of PTGIR identified in fibromuscular dysplasia and spontaneous coronary artery dissection

18. Fibromuscular Dysplasia and Its Neurologic Manifestations: A Systematic Review

19. Genome-wide Association Study of Change in Fasting Glucose over time in 13,807 non-diabetic European Ancestry Individuals

22. New genetic loci link adipose and insulin biology to body fat distribution

23. Genetic studies of body mass index yield new insights for obesity biology

24. Meta-analysis identifies multiple loci associated with kidney function-related traits in east Asian populations

26. Erratum: Meta-analysis identifies 13 new loci associated with waist-hip ratio and reveals sexual dimorphism in the genetic basis of fat distribution (Nature Genetics (2010) 42 (949-960))

27. Association of genetic Loci with glucose levels in childhood and adolescence: a meta-analysis of over 6,000 children

30. The genetics of blood pressure regulation and its target organs from association studies in 342,415 individuals

31. Association of genetic Loci with glucose levels in childhood and adolescence: a meta-analysis of over 6,000 children

33. A genome-wide approach accounting for body mass index identifies genetic variants influencing fasting glycemic traits and insulin resistance

34. The genetics of blood pressure regulation and its target organs from association studies in 342,415 individuals

35. Genetic associations at 53 loci highlight cell types and biological pathways relevant for kidney function.

36. Genetic associations at 53 loci highlight cell types and biological pathways relevant for kidney function

37. Genetic associations at 53 loci highlight cell types and biological pathways relevant for kidney function

38. The genetics of blood pressure regulation and its target organs from association studies in 342,415 individuals

39. The Lin28/let-7 axis regulates glucose metabolism

40. Genome-wide association identifies nine common variants associated with fasting proinsulin levels and provides new insights into the pathophysiology of type 2 diabetes

41. [OP.7C.04] GENETIC ASSOCIATION STUDY IDENTIFIES COMMON VARIATION IN PHACTR1 TO ASSOCIATE WITH FIBROMUSCULAR DYSPLASIA

42. New genetic loci link adipose and insulin biology to body fat distribution.

43. CO-43: Genetic study identifies common variation in phactr1 to associate with fibromuscular dysplasia

44. Identification of heart rate-associated loci and their effects on cardiac conduction and rhythm disorders

45. Erratum: Meta-analysis identifies 13 new loci associated with waist-hip ratio and reveals sexual dimorphism in the genetic basis of fat distribution (Nature Genetics (2010) 42 (949-960))

46. Genome-wide association identifies nine common variants associated with fasting proinsulin levels and provides new insights into the pathophysiology of type 2 diabetes

47. Genome-wide association identifies nine common variants associated with fasting proinsulin levels and provides new insights into the pathophysiology of type 2 diabetes

48. Genome-wide association identifies nine common variants associated with fasting proinsulin levels and provides new insights into the pathophysiology of type 2 diabetes

49. Common Variants at 10 Genomic Loci Influence Hemoglobin A(1C) Levels via Glycemic and Nonglycemic Pathways

50. Association analyses of 249,796 individuals reveal 18 new loci associated with body mass index

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