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Bioinformatics (Oxford, England)|April 8, 2011
EpiGPU: exhaustive pairwise epistasis scans parallelized on consumer level graphics cardsGibran Hemani, Athanasios Theocharidis, Wenhua Wei, et al.Plos Genetics|March 20, 2013
An evolutionary perspective on epistasis and the missing heritabilityGibran Hemani, Sara Knott, Chris HaleyHuman Molecular Genetics|July 28, 2014
Mendelian randomization: genetic anchors for causal inference in epidemiological studiesGeorge Davey Smith, Gibran HemaniTrends in Molecular Medicine|November 14, 2019
Strengthening Causal Inference for Complex Disease Using Molecular Quantitative Trait LociSonja Neumeyer, Gibran Hemani, Eleftheria ZegginiPlos Genetics|May 8, 2026
Simulated sample splitting approach to address biases due to instrument selection and participant overlap in two-sample Mendelian Randomization studiesAmanda Forde, Gibran Hemani, John FergusonPlos Genetics|September 18, 2023
Review and further developments in statistical corrections for Winner's Curse in genetic association studiesAmanda Forde, Gibran Hemani, John FergusonPlos Genetics|November 18, 2017
Orienting the causal relationship between imprecisely measured traits using GWAS summary dataGibran Hemani, Kate Tilling, George Davey SmithAmerican Journal of Epidemiology|September 7, 2018
Invited Commentary: Detecting Individual and Global Horizontal Pleiotropy in Mendelian Randomization-A Job for the Humble Heterogeneity Statistic?Jack Bowden, Gibran Hemani, George Davey SmithPlos Genetics|December 30, 2017
Correction: Orienting the causal relationship between imprecisely measured traits using GWAS summary dataGibran Hemani, Kate Tilling, George Davey SmithHuman Molecular Genetics|May 18, 2018
Evaluating the potential role of pleiotropy in Mendelian randomization studiesGibran Hemani, Jack Bowden, George Davey SmithPageof 21