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3. Genome-wide Association Study of Bladder Cancer Reveals New Biological and Translational Insights

5. Supplemental Table 1 from Nitrated Polycyclic Aromatic Hydrocarbon (Nitro-PAH) Signatures and Somatic Mutations in Diesel Exhaust-Exposed Bladder Tumors

7. Table S1 from Analysis of Several Common APOBEC-type Mutations in Bladder Tumors Suggests Links to Viral Infection

8. Data from Analysis of Several Common APOBEC-type Mutations in Bladder Tumors Suggests Links to Viral Infection

9. Figure S1 from Analysis of Several Common APOBEC-type Mutations in Bladder Tumors Suggests Links to Viral Infection

12. Disinfection By-Products in Drinking Water and Bladder Cancer: Evaluation of Risk Modification by Common Genetic Polymorphisms in Two Case-Control Studies

13. Urinary mutagenicity and bladder cancer risk in northern New England.

14. Analysis of Several Common APOBEC-type Mutations in Bladder Tumors Suggests Links to Viral Infection

15. Identification of Genetic Risk Factors for Familial Urinary Bladder Cancer: An Exome Sequencing Study

16. Urine pH and Risk of Bladder Cancer in Northern New England

17. Supplemental Table 5 from Nitrated Polycyclic Aromatic Hydrocarbon (Nitro-PAH) Signatures and Somatic Mutations in Diesel Exhaust-Exposed Bladder Tumors

18. Data from Nitrated Polycyclic Aromatic Hydrocarbon (Nitro-PAH) Signatures and Somatic Mutations in Diesel Exhaust-Exposed Bladder Tumors

19. Supplemental Table 6 from Nitrated Polycyclic Aromatic Hydrocarbon (Nitro-PAH) Signatures and Somatic Mutations in Diesel Exhaust-Exposed Bladder Tumors

20. Supplemental Table 2 from Nitrated Polycyclic Aromatic Hydrocarbon (Nitro-PAH) Signatures and Somatic Mutations in Diesel Exhaust-Exposed Bladder Tumors

21. Supplemental Table 3 from Nitrated Polycyclic Aromatic Hydrocarbon (Nitro-PAH) Signatures and Somatic Mutations in Diesel Exhaust-Exposed Bladder Tumors

22. Supplemental Table 4 from Nitrated Polycyclic Aromatic Hydrocarbon (Nitro-PAH) Signatures and Somatic Mutations in Diesel Exhaust-Exposed Bladder Tumors

23. Supplemental Table 7 from Nitrated Polycyclic Aromatic Hydrocarbon (Nitro-PAH) Signatures and Somatic Mutations in Diesel Exhaust-Exposed Bladder Tumors

24. Nitrated Polycyclic Aromatic Hydrocarbon (Nitro-PAH) Signatures and Somatic Mutations in Diesel Exhaust-Exposed Bladder Tumors

27. Reply to ‘Mosaic loss of chromosome Y in leukocytes matters’

28. Supplementary from Targeted Deep Sequencing of Bladder Tumors Reveals Novel Associations between Cancer Gene Mutations and Mutational Signatures with Major Risk Factors

29. Data from The 19q12 Bladder Cancer GWAS Signal: Association with Cyclin E Function and Aggressive Disease

30. Supplementary Materials, Figures 1 - 3, Tables 1 - 4, 6 - 8 from The 19q12 Bladder Cancer GWAS Signal: Association with Cyclin E Function and Aggressive Disease

31. Supplementary Table 5 from The 19q12 Bladder Cancer GWAS Signal: Association with Cyclin E Function and Aggressive Disease

33. Identifying gender differences in reported occupational information from three US population-based case-control studies

36. Identification and replication of the interplay of four genetic high-risk variants for urinary bladder cancer

37. Worldwide trends in population-based survival for children, adolescents, and young adults diagnosed with leukaemia, by subtype, during 2000–14 (CONCORD-3): analysis of individual data from 258 cancer registries in 61 countries

38. Disinfection By-Products in Drinking Water and Bladder Cancer: Evaluation of Risk Modification by Common Genetic Polymorphisms in Two Case–Control Studies

40. Analysis of Heritability and Shared Heritability Based on Genome-Wide Association Studies for 13 Cancer Types

41. Modification of Occupational Exposures on Bladder Cancer Risk by Common Genetic Polymorphisms

43. Common genetic variants in the PSCA gene influence gene expression and bladder cancer risk

45. O-276 Diesel exhaust exposure and somatic mutations in bladder tumors

46. Combining Decision Rules from Classification Tree Models and Expert Assessment to Estimate Occupational Exposure to Diesel Exhaust for a Case-Control Study

47. Abstract 826: Large-scale genome-wide association study identifies multiple novel germline susceptibility variants associated with bladder cancer risk

49. Using Hierarchical Cluster Models to Systematically Identify Groups of Jobs With Similar Occupational Questionnaire Response Patterns to Assist Rule-Based Expert Exposure Assessment in Population-Based Studies

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