645 results on '"Pierce, Brandon"'
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2. Integrative cross-omics and cross-context analysis elucidates molecular links underlying genetic effects on complex traits
3. Telomere length associates with chronological age and mortality across racially diverse pulmonary fibrosis cohorts
4. An integrative multi-context Mendelian randomization method for identifying risk genes across human tissues
5. The association of cigarette smoking with DNA methylation and gene expression in human tissue samples
6. Metabolomic Effects of Folic Acid Supplementation in Adults: Evidence from the FACT Trial
7. Returning personal genetic information on susceptibility to arsenic toxicity to research participants in Bangladesh
8. DNA methylation QTL mapping across diverse human tissues provides molecular links between genetic variation and complex traits
9. Associations of polygenic risk for attention-deficit/hyperactivity disorder with general and specific dimensions of childhood psychological problems and facets of impulsivity
10. A platform for oncogenomic reporting and interpretation
11. Do Women in Leadership Reduce Sexual Harassment Claims on College Campuses?
12. Supplementary Figure 5 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
13. Supplementary Table 19 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
14. Supplementary Figure 3 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
15. Supplementary Figure 2 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
16. Supplementary Table 4 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
17. Supplementary Table 3 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
18. Supplementary Figure 8 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
19. Supplementary Figure 4 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
20. Supplementary Figure 9 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
21. Data from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
22. Supplementary Figure 6 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
23. Supplementary Table 2 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
24. Supplementary Table 7 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
25. Supplementary Figure 1 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
26. Supplementary Table 9 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
27. Supplementary Table 5 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
28. Supplementary Table 8 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
29. Supplementary Table 6 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
30. Supplementary Figure 7 from The Impact of Inherited Genetic Variation on DNA Methylation in Prostate Cancer and Benign Tissues of African American and European American Men
31. An integrative multi-context Mendelian randomization method for identifying risk genes across human tissues
32. Research Participants’ Attitudes towards Receiving Information on Genetic Susceptibility to Arsenic Toxicity in Rural Bangladesh
33. Identifying cis-mediators for trans-eQTLs across many human tissues using genomic mediation analysis
34. Lessons Learned From Past Gene-Environment Interaction Successes.
35. Tobacco and marijuana use and their association with serum prostate-specific antigen levels among African American men in Chicago
36. Mapping potential pathways from polygenic liability through brain structure to psychological problems across the transition to adolescence.
37. The impact of inherited genetic variation on DNA methylation in prostate cancer and benign tissues of African American and European American men
38. OTTERS:a powerful TWAS framework leveraging summary-level reference data
39. Genome-wide association study of prostate-specific antigen levels in 392,522 men identifies new loci and improves cross-ancestry prediction
40. Returning personal genetic information on susceptibility to arsenic toxicity to research participants in Bangladesh
41. A study of telomere length, arsenic exposure, and arsenic toxicity in a Bangladeshi cohort
42. The contribution of parent-to-offspring transmission of telomeres to the heritability of telomere length in humans
43. Assessing the impact of arsenic metabolism efficiency on DNA methylation using Mendelian randomization
44. Screening for gene–environment (G×E) interaction using omics data from exposed individuals: an application to gene-arsenic interaction
45. Abstract 1915: Cancer disparities in the University of Chicago Comprehensive Cancer Center Catchment Area
46. Metabolomic changes associated with chronic arsenic exposure in a Bangladeshi population
47. Supplementary Figure 2 from Elevation of Stromal-Derived Mediators of Inflammation Promote Prostate Cancer Progression in African-American Men
48. Supplementary Methods, Tables 1 - 6 from A Genome-wide Association Study of Early-Onset Breast Cancer Identifies PFKM as a Novel Breast Cancer Gene and Supports a Common Genetic Spectrum for Breast Cancer at Any Age
49. Supplementary Figure 4 from Elevation of Stromal-Derived Mediators of Inflammation Promote Prostate Cancer Progression in African-American Men
50. Supplementary Figure 3 from Elevation of Stromal-Derived Mediators of Inflammation Promote Prostate Cancer Progression in African-American Men
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