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International Journal of Cancer|October 15, 2016
Investigating the possible causal role of coffee consumption with prostate cancer risk and progression using Mendelian randomization analysisAmy E Taylor, Richard M Martin, Milan S Geybels, et al.
British Journal of Cancer|February 14, 2018
Gene and pathway level analyses of germline DNA-repair gene variants and prostate cancer susceptibility using the iCOGS-genotyping arrayEdward J Saunders, Tokhir Dadaev, Daniel A Leongamornlert, et al.
British Journal of Cancer|August 5, 2016
Polyunsaturated fatty acids and prostate cancer risk: a Mendelian randomisation analysis from the PRACTICAL consortiumNikhil K Khankari, Harvey J Murff, Chenjie Zeng, et al.
British Journal of Cancer|March 11, 2016
Gene and pathway level analyses of germline DNA-repair gene variants and prostate cancer susceptibility using the iCOGS-genotyping arrayEdward J Saunders, Tokhir Dadaev, Daniel A Leongamornlert, et al.
Genetic Epidemiology|February 18, 2017
gsSKAT: Rapid gene set analysis and multiple testing correction for rare-variant association studies using weighted linear kernelsNicholas B Larson, Shannon McDonnell, Lisa Cannon Albright, et al.
BMC Medicine|April 6, 2016
Pubertal development and prostate cancer risk: Mendelian randomization study in a population-based cohortCarolina Bonilla, Sarah J Lewis, Richard M Martin, et al.
Nature Genetics|September 22, 2009
Multiple loci on 8q24 associated with prostate cancer susceptibilityAli Amin Al Olama, Zsofia Kote-Jarai, Graham G Giles, et al.
Human Molecular Genetics|November 1, 2016
Prostate cancer risk regions at 8q24 and 17q24 are differentially associated with somatic TMPRSS2:ERG fusion statusManuel Luedeke, Antje E Rinckleb, Liesel M FitzGerald, et al.
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