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1. A multi-ancestry genome-wide study incorporating gene-smoking interactions identifies multiple new loci for pulse pressure and mean arterial pressure

2. Multiancestry Genome-Wide Association Study of Lipid Levels Incorporating Gene-Alcohol Interactions

3. A Large-Scale Multi-ancestry Genome-wide Study Accounting for Smoking Behavior Identifies Multiple Significant Loci for Blood Pressure

4. Analysis with the exome array identifies multiple new independent variants in lipid loci

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

6. Genetic variants in novel pathways influence blood pressure and cardiovascular disease risk

7. Blood pressure loci identified with a gene-centric array

8. Genome-wide association study identifies eight loci associated with blood pressure

9. Multi-ancestry genome-wide gene-smoking interaction study of 387,272 individuals identifies new loci associated with serum lipids

10. Novel genetic associations for blood pressure identified via gene-alcohol interaction in up to 570K individuals across multiple ancestries

11. Exome-wide association study of plasma lipids in >300,000 individuals

12. Cardiac tissue engineering and regeneration using cell-based therapy

13. Genome-wide meta-analysis identifies 11 new loci for anthropometric traits and provides insights into genetic architecture

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

15. Trans-ancestry meta-analyses identify rare and common variants associated with blood pressure and hypertension

16. Common and Rare Coding Genetic Variation Underlying the Electrocardiographic PR Interval

17. New Blood Pressure-Associated Loci Identified in Meta-Analyses of 475000 Individuals

18. Gene-centric Meta-analysis in 87,736 Individuals of European Ancestry Identifies Multiple Blood-Pressure-Related Loci

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

20. Genome-wide association study identifies six new loci influencing pulse pressure and mean arterial pressure

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