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3. Contributors

12. DNA vaccines

17. Understanding the Genomic Structure of Copy‐Number Variation of the Low‐Affinity Fcγ Receptor Region Allows Confirmation of the Association of FCGR3B Deletion with Rheumatoid Arthritis

18. Supplementary Material from Population genetics of immune-related multilocus copy number variation in Native Americans

19. Evaluation of High-Throughput Genomic Assays for the Fc Gamma Receptor Locus (vol 10, e0142379, 2015)

21. Population genetics of immune-related multilocus copy number variation in Native Americans

22. Understanding the Genomic Structure of Copy-Number Variation of the Low-Affinity Fcγ Receptor Region Allows Confirmation of the Association ofFCGR3BDeletion with Rheumatoid Arthritis

23. Evaluation of High-Throughput Genomic Assays for the Fc Gamma Receptor Locus

24. Correction: Evaluation of High-Throughput Genomic Assays for the Fc Gamma Receptor Locus

27. A Comparison of Assays for Accurate Copy Number Measurement of the Low-Affinity Fc Gamma Receptor Genes FCGR3A and FCGR3B

28. Copy Number Variation of Fc Gamma Receptor Genes in HIV-Infected and HIV-Tuberculosis Co-Infected Individuals in Sub-Saharan Africa

30. High mobility group protein B1 is a predictor of poor survival in ovarian cancer

31. High mobility group protein B1 is a predictor of poor survival in ovarian cancer

32. High mobility group protein B1 is a predictor of poor survival in ovarian cancer.

33. High mobility group protein B1 is a predictor of poor survival in ovarian cancer.

34. High mobility group protein B1 is a predictor of poor survival in ovarian cancer

35. High mobility group protein B1 is a predictor of poor survival in ovarian cancer

36. High mobility group protein B1 is a predictor of poor survival in ovarian cancer

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