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Clark, David W; Okada, Yukinori; Moore, Kristjan H S; Mason, Dan; Pirastu, Nicola; Gandin, Ilaria; Mattsson, Hannele; Barnes, Catriona L K; Lin, Kuang; Zhao, Jing Hua; Deelen, Patrick; Rohde, Rebecca; Schurmann, Claudia; Guo, Xiuqing; Giulianini, Franco; Zhang, Weihua; Medina-Gomez, Carolina; Karlsson, Robert; Bao, Yanchun; Bartz, Traci M; ... (2019). Associations of autozygosity with a broad range of human phenotypes. Nature communications, 10(1), p. 4957. Nature Publishing Group 10.1038/s41467-019-12283-6
Schmidt, Amand F; Holmes, Michael V; Preiss, David; Swerdlow, Daniel I; Denaxas, Spiros; Fatemifar, Ghazaleh; Faraway, Rupert; Finan, Chris; Valentine, Dennis; Fairhurst-Hunter, Zammy; Hartwig, Fernando Pires; Horta, Bernardo Lessa; Hypponen, Elina; Power, Christine; Moldovan, Max; van Iperen, Erik; Hovingh, Kees; Demuth, Ilja; Norman, Kristina; Steinhagen-Thiessen, Elisabeth; ... (2019). Phenome-wide association analysis of LDL-cholesterol lowering genetic variants in PCSK9. BMC cardiovascular disorders, 19(1), p. 240. BioMed Central 10.1186/s12872-019-1187-z
Franceschini, Nora; Giambartolomei, Claudia; de Vries, Paul S; Finan, Chris; Bis, Joshua C; Huntley, Rachael P; Lovering, Ruth C; Tajuddin, Salman M; Winkler, Thomas W; Graff, Misa; Kavousi, Maryam; Dale, Caroline; Smith, Albert V; Hofer, Edith; van Leeuwen, Elisabeth M; Nolte, Ilja M; Lu, Lingyi; Scholz, Markus; Sargurupremraj, Muralidharan; Pitkänen, Niina; ... (2018). GWAS and colocalization analyses implicate carotid intima-media thickness and carotid plaque loci in cardiovascular outcomes. Nature communications, 9(1), p. 5141. Nature Publishing Group 10.1038/s41467-018-07340-5
Arking, Dan E; Pulit, Sara L; Crotti, Lia; van der Harst, Pim; Munroe, Patricia B; Koopmann, Tamara T; Sotoodehnia, Nona; Rossin, Elizabeth J; Morley, Michael; Wang, Xinchen; Johnson, Andrew D; Lundby, Alicia; Gudbjartsson, Daníel F; Noseworthy, Peter A; Eijgelsheim, Mark; Bradford, Yuki; Tarasov, Kirill V; Dörr, Marcus; Müller-Nurasyid, Martina; Lahtinen, Annukka M; ... (2014). Genetic association study of QT interval highlights role for calcium signaling pathways in myocardial repolarization. Nature genetics, 46(8), pp. 826-836. Nature America 10.1038/ng.3014