27 results on '"Álvarez, Sara"'
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2. Supplementary Figure 1 from The Accumulation of Specific Amplifications Characterizes Two Different Genomic Pathways of Evolution of Familial Breast Tumors
3. Data from The Accumulation of Specific Amplifications Characterizes Two Different Genomic Pathways of Evolution of Familial Breast Tumors
4. Supplementary Table 2 from The Accumulation of Specific Amplifications Characterizes Two Different Genomic Pathways of Evolution of Familial Breast Tumors
5. Supplementary Table 1 from The Accumulation of Specific Amplifications Characterizes Two Different Genomic Pathways of Evolution of Familial Breast Tumors
6. Supplementary Table S1 from Estrogen Receptor Status Could Modulate the Genomic Pattern in Familial and Sporadic Breast Cancer
7. Supplementary Table S3 from Estrogen Receptor Status Could Modulate the Genomic Pattern in Familial and Sporadic Breast Cancer
8. Supplementary Table S1 from Estrogen Receptor Status Could Modulate the Genomic Pattern in Familial and Sporadic Breast Cancer
9. Supplementary Table S2 from Estrogen Receptor Status Could Modulate the Genomic Pattern in Familial and Sporadic Breast Cancer
10. Supplementary Figures S1-S2 from Estrogen Receptor Status Could Modulate the Genomic Pattern in Familial and Sporadic Breast Cancer
11. Supplementary Table 2 from The Accumulation of Specific Amplifications Characterizes Two Different Genomic Pathways of Evolution of Familial Breast Tumors
12. Supplementary Table 1 from The Accumulation of Specific Amplifications Characterizes Two Different Genomic Pathways of Evolution of Familial Breast Tumors
13. Supplementary Table S2 from Estrogen Receptor Status Could Modulate the Genomic Pattern in Familial and Sporadic Breast Cancer
14. Supplementary Figure 1 from The Accumulation of Specific Amplifications Characterizes Two Different Genomic Pathways of Evolution of Familial Breast Tumors
15. Supplementary Table S3 from Estrogen Receptor Status Could Modulate the Genomic Pattern in Familial and Sporadic Breast Cancer
16. Supplementary Figures S1-S2 from Estrogen Receptor Status Could Modulate the Genomic Pattern in Familial and Sporadic Breast Cancer
17. Data from Hematologic β-Tubulin VI Isoform Exhibits Genetic Variability That Influences Paclitaxel Toxicity
18. Data from Hematologic β-Tubulin VI Isoform Exhibits Genetic Variability That Influences Paclitaxel Toxicity
19. Supplementary Table 3 from Hematologic β-Tubulin VI Isoform Exhibits Genetic Variability That Influences Paclitaxel Toxicity
20. Supplementary Table 2 from Hematologic β-Tubulin VI Isoform Exhibits Genetic Variability That Influences Paclitaxel Toxicity
21. Supplementary Table 1 from Hematologic β-Tubulin VI Isoform Exhibits Genetic Variability That Influences Paclitaxel Toxicity
22. Supplementary Table 2 from Hematologic β-Tubulin VI Isoform Exhibits Genetic Variability That Influences Paclitaxel Toxicity
23. Supplementary Table 3 from Hematologic β-Tubulin VI Isoform Exhibits Genetic Variability That Influences Paclitaxel Toxicity
24. Supplementary Table 1 from Hematologic β-Tubulin VI Isoform Exhibits Genetic Variability That Influences Paclitaxel Toxicity
25. Hematologic β-Tubulin VI Isoform Exhibits Genetic Variability That Influences Paclitaxel Toxicity
26. Estrogen Receptor Status Could Modulate the Genomic Pattern in Familial and Sporadic Breast Cancer
27. The Accumulation of Specific Amplifications Characterizes Two Different Genomic Pathways of Evolution of Familial Breast Tumors
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