80 results on '"Boyd, Jeff"'
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2. Supplemental Material and Methods from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
3. Supplemental Excel File 1 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
4. Supplemental Excel File 6 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
5. Supplemental Excel File 9 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
6. Supplemental Excel File 2 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
7. Data from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
8. Supplemental Excel File 3 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
9. Data from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
10. Supplemental Excel File 7 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
11. Supplemental Excel File 10 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
12. Supplemental Excel File 4 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
13. Supplemental Excel File 1 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
14. Pyrosequencing Assay positions from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
15. Supplemental Excel File 4 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
16. Supplemental Excel File 11 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
17. Supplemental Material and Methods from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
18. Supplemental Excel File 10 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
19. Supplemental Figures, Tables, Legends from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
20. Supplemental Excel File 9 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
21. Supplemental Excel File 5 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
22. Supplemental Excel File 2 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
23. Supplemental Excel File 11 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
24. Supplemental Figures, Tables, Legends from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
25. Supplemental Excel File 5 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
26. Supplemental Excel File 8 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
27. Supplemental Excel File 7 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
28. Supplemental Excel File 6 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
29. Supplemental Excel File 8 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
30. Supplemental Excel File 3 from A New Role for ERα: Silencing via DNA Methylation of Basal, Stem Cell, and EMT Genes
31. Data from Microarray Analysis of Early Stage Serous Ovarian Cancers Shows Profiles Predictive of Favorable Outcome
32. Master Gene List from Gene Expression Profiles of Serous, Endometrioid, and Clear Cell Subtypes of Ovarian and Endometrial Cancer
33. Data from Microarray Analysis of Early Stage Serous Ovarian Cancers Shows Profiles Predictive of Favorable Outcome
34. Cav-1 Figure S4 from Gene Expression Profiles of Serous, Endometrioid, and Clear Cell Subtypes of Ovarian and Endometrial Cancer
35. Supplementary Figure S1 from Gene Expression Profiles Associated with Response to Chemotherapy in Epithelial Ovarian Cancers
36. Supplementary Tables S1-S3 from Microarray Analysis of Early Stage Serous Ovarian Cancers Shows Profiles Predictive of Favorable Outcome
37. Article Figures 1-4 from Gene Expression Profiles Associated with Response to Chemotherapy in Epithelial Ovarian Cancers
38. qRT-PCR Validation Figures S5 & S6 from Gene Expression Profiles of Serous, Endometrioid, and Clear Cell Subtypes of Ovarian and Endometrial Cancer
39. Supplementary Figure 3A Gene List from Gene Expression Profiles Associated with Response to Chemotherapy in Epithelial Ovarian Cancers
40. Data from Gene Expression Profiles Associated with Response to Chemotherapy in Epithelial Ovarian Cancers
41. Article Figures 1-4 from Gene Expression Profiles Associated with Response to Chemotherapy in Epithelial Ovarian Cancers
42. Data from Gene Expression Profiles Associated with Response to Chemotherapy in Epithelial Ovarian Cancers
43. Cav-1 Figure S4 from Gene Expression Profiles of Serous, Endometrioid, and Clear Cell Subtypes of Ovarian and Endometrial Cancer
44. Supplementary Figure 3A Gene List from Gene Expression Profiles Associated with Response to Chemotherapy in Epithelial Ovarian Cancers
45. Supplementary Figure S1 from Gene Expression Profiles Associated with Response to Chemotherapy in Epithelial Ovarian Cancers
46. Supplementary Tables S1-S3 from Microarray Analysis of Early Stage Serous Ovarian Cancers Shows Profiles Predictive of Favorable Outcome
47. Supplementary Table 3 from A Gene Signature Predicting for Survival in Suboptimally Debulked Patients with Ovarian Cancer
48. Supplementary Figure 5 from A Gene Signature Predicting for Survival in Suboptimally Debulked Patients with Ovarian Cancer
49. Data from A Gene Signature Predicting for Survival in Suboptimally Debulked Patients with Ovarian Cancer
50. Supplementary Table 4 from A Gene Signature Predicting for Survival in Suboptimally Debulked Patients with Ovarian Cancer
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