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Nature Communications|January 23, 2015
Whole-exome sequencing reveals the mutational spectrum of testicular germ cell tumoursKevin Litchfield, Brenda Summersgill, Shawn Yost, et al.Human Molecular Genetics|February 4, 2010
Fine-scale mapping of the 6p25.3 chronic lymphocytic leukaemia susceptibility locusDalemari Crowther-Swanepoel, Peter Broderick, Yussanne Ma, et al.Nature Communications|October 28, 2015
Identification of four new susceptibility loci for testicular germ cell tumourKevin Litchfield, Amy Holroyd, Amy Lloyd, et al.Cancer Research|March 12, 2016
Cytochrome P450 Allele CYP3A7*1C Associates with Adverse Outcomes in Chronic Lymphocytic Leukemia, Breast, and Lung CancerNichola Johnson, Paolo De Ieso, Gabriele Migliorini, et al.Genome Research|April 28, 2009
The colorectal cancer risk at 18q21 is caused by a novel variant altering SMAD7 expressionAlan M Pittman, Silvia Naranjo, Emily Webb, et al.Nature Communications|June 23, 2016
Rare disruptive mutations and their contribution to the heritable risk of colorectal cancerDaniel Chubb, Peter Broderick, Sara E Dobbins, et al.Nature Communications|December 21, 2016
Rare disruptive mutations in ciliary function genes contribute to testicular cancer susceptibilityKevin Litchfield, Max Levy, Darshna Dudakia, et al.British Journal of Haematology|May 11, 2011
Common genetic variation at 15q25.2 impacts on chronic lymphocytic leukaemia riskDalemari Crowther-Swanepoel, Maria Chiara Di Bernardo, Krzysztof Jamroziak, et al.British Journal of Cancer|January 29, 2021
Genetically predicted physical activity levels are associated with lower colorectal cancer risk: a Mendelian randomisation studyXiaomeng Zhang, Evropi Theodoratou, Xue Li, et al.Oncotarget|March 22, 2018
Validation of loci at 2q14.2 and 15q21.3 as risk factors for testicular cancerChey Loveday, Kevin Litchfield, Max Levy, et al.Pageof 11