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1.
Shrine, N.* et al.: New genetic signals for lung function highlight pathways and chronic obstructive pulmonary disease associations across multiple ancestries. Nat. Genet. 51, 481-493 (2019)
2.
Shrine, N.* et al.: Author Correction: New genetic signals for lung function highlight pathways and chronic obstructive pulmonary disease associations across multiple ancestries (Nature Genetics, (2019), 51, 3, (481-493), 10.1038/s41588-018-0321-7). Nat. Genet., accepted (2019)
3.
Wain, L.V.* et al.: Genome-wide association analyses for lung function and chronic obstructive pulmonary disease identify new loci and potential druggable targets. Nat. Genet. 49, 416-425 (2017)
4.
Artigas, M.S.* et al.: Sixteen new lung function signals identified through 1000 Genomes Project reference panel imputation. Nat. Commun. 6:8658 (2015)
5.
Wain, L.V.* et al.: Novel insights into the genetics of smoking behaviour, lung function, and chronic obstructive pulmonary disease (UK BiLEVE): A genetic association study in UK Biobank. Lancet Resp. Med. 3, 769-781 (2015)
6.
Loth, D.W.* et al.: Genome-wide association analysis identifies six new loci associated with forced vital capacity. Nat. Genet. 46, 669-677 (2014)
7.
Artigas, M.S.* et al.: Genome-wide association and large-scale follow up identifies 16 new loci influencing lung function. Nat. Genet. 43, 1082-1090 (2011)
8.
Obeidat, M.* et al.: A comprehensive evaluation of potential lung function associated genes in the SpiroMeta general population sample. PLoS ONE 6:e19382 (2011)
9.
Soler Artigas, M.* et al.: Effect of five genetic variants associated with lung function on the risk of chronic obstructive lung disease, and their joint effects on lung function. Am. J. Respir. Crit. Care Med. 184, 786-795 (2011)
10.
Repapi, E.* et al.: Genome-wide association study identifies five loci associated with lung function. Nat. Genet. 42, 36-44 (2010)
11.
Denham, S.* et al.: Meta-analysis of genome-wide linkage studies of asthma and related traits. Respir. Res. 9:38 (2008)