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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.
Ji, X.* et al.: Identification of susceptibility pathways for the role of chromosome 15q25.1 in modifying lung cancer risk. Nat. Commun. 9:3221 (2018)
4.
Gref, A.* et al.: Genome-wide interaction analysis of air pollution exposure and childhood asthma with functional follow-up. Am. J. Respir. Crit. Care Med. 195, 1373-1383 (2017)
5.
McKay, J.D.* et al.: Large-scale association analysis identifies new lung cancer susceptibility loci and heterogeneity in genetic susceptibility across histological subtypes. Nat. Genet. 49, 1126-1132 (2017)
6.
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)
7.
Fehringer, G.* et al.: Cross-cancer genome-wide analysis of lung, ovary, breast, prostate and colorectal cancer reveals novel pleiotropic associations. Cancer Res. 76, 5103-5114 (2016)
8.
Artigas, M.S.* et al.: Sixteen new lung function signals identified through 1000 Genomes Project reference panel imputation. Nat. Commun. 6:8658 (2015)
9.
Obeidat, M.* et al.: Molecular mechanisms underlying variations in lung function: A systems genetics analysis. Lancet Resp. Med. 3, 782-795 (2015)