36 results on '"Williams, Paul D."'
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2. Supplementary Methods and References from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy
3. Data from Concordant Gene Expression Signatures Predict Clinical Outcomes of Cancer Patients Undergoing Systemic Therapy
4. Supplementary Methods and References from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy
5. Data from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy
6. Supplementary Figures 1-2 from Concordant Gene Expression Signatures Predict Clinical Outcomes of Cancer Patients Undergoing Systemic Therapy
7. Data from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy
8. Supplementary Figures S1-S5 from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy
9. Supplementary Figure Legends from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy
10. Supplementary Figures 1-2 from Concordant Gene Expression Signatures Predict Clinical Outcomes of Cancer Patients Undergoing Systemic Therapy
11. Supplementary Tables S1-S4 from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy
12. Supplementary Figure Legends 1-2, Methods from Concordant Gene Expression Signatures Predict Clinical Outcomes of Cancer Patients Undergoing Systemic Therapy
13. Supplementary Figure Legends 1-2, Methods from Concordant Gene Expression Signatures Predict Clinical Outcomes of Cancer Patients Undergoing Systemic Therapy
14. Supplementary Figure Legends from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy
15. Data from Src and Caveolin-1 Reciprocally Regulate Metastasis via a Common Downstream Signaling Pathway in Bladder Cancer
16. Supplementary Methods, Table 1, Figure Legends 1-5 from Src and Caveolin-1 Reciprocally Regulate Metastasis via a Common Downstream Signaling Pathway in Bladder Cancer
17. Data from Src and Caveolin-1 Reciprocally Regulate Metastasis via a Common Downstream Signaling Pathway in Bladder Cancer
18. Supplementary Tables S1-S4 from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy
19. Supplementary Methods, Table 1, Figure Legends 1-5 from Src and Caveolin-1 Reciprocally Regulate Metastasis via a Common Downstream Signaling Pathway in Bladder Cancer
20. Supplementary Figures 1-5 from Src and Caveolin-1 Reciprocally Regulate Metastasis via a Common Downstream Signaling Pathway in Bladder Cancer
21. Data from Concordant Gene Expression Signatures Predict Clinical Outcomes of Cancer Patients Undergoing Systemic Therapy
22. Supplementary Figures S1-S5 from Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy
23. Supplementary Figures 1-5 from Src and Caveolin-1 Reciprocally Regulate Metastasis via a Common Downstream Signaling Pathway in Bladder Cancer
24. Abstract 78: Detection of gene fusions and exon skipping events in lung FFPE samples with Oncomine Precision Assay on Ion Torrent Genexus࣪ System
25. Abstract 177: RNA sequencing based gene fusion detection with oncomine comprehensive assay plus
26. Abstract 3118: Next generation sequencing assay for detection of gene fusions and exon deletion events in tissue and liquid biopsy samples at very low frequency
27. Abstract B45: Development of a next-generation sequencing (NGS) assay for pediatric, childhood, and young adult cancer research with comprehensive DNA and RNA variant detection
28. Genomic Profiling of Penile Squamous Cell Carcinoma Reveals New Opportunities for Targeted Therapy
29. Abstract A1-43: Targeted amplicon-based next-generation sequencing of routine solid tumor specimens to detect clinically relevant somatic alterations
30. Next-Gen Sequencing Exposes Frequent MED12 Mutations and Actionable Therapeutic Targets in Phyllodes Tumors
31. Abstract 3173: High-throughput, systematic analysis of paired-end next-generation sequencing data to characterize the gene fusion landscape in cancer.
32. Abstract 2897: Discovery and characterization of driver MAPK and PI3K pathway mutations in tumors and association with drug response in cell lines.
33. Abstract CN07-02: Target discovery with Oncomine: Discovering new targets and positioning old targets by integrative analysis of 10,000s of tumor genomes and transcriptomes.
34. Abstract 3149: OncoPredictor: A systematic approach for predicting responsive cancer populations from large scale cell line screening
35. Src and Caveolin-1 Reciprocally Regulate Metastasis via a Common Downstream Signaling Pathway in Bladder Cancer
36. Concordant Gene Expression Signatures Predict Clinical Outcomes of Cancer Patients Undergoing Systemic Therapy
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