273 results on '"Calogero, Raffaele A"'
Search Results
2. Single-Cell RNAseq Clustering
3. Single-Cell RNAseq Complexity Reduction
4. Single-Cell RNAseq Data QC and Preprocessing
5. Using “Galaxy-rCASC”: A Public Galaxy Instance for Single-Cell RNA-Seq Data Analysis
6. Additional copies of 1q negatively impact the outcome of multiple myeloma patients and induce transcriptomic deregulation in malignant plasma cells
7. Feed restriction during the suckling period of ewe Assaf lambs (F0) modifies milk quality and milk exosomal miRNAome of the filial generation (F1)
8. CREDO: a friendly Customizable, REproducible, DOcker file generator for bioinformatics applications
9. Urine-derived podocytes from steroid resistant nephrotic syndrome patients as a model for renal-progenitor derived extracellular vesicles effect and drug screening
10. A single cell RNAseq benchmark experiment embedding “controlled” cancer heterogeneity
11. Single Cell Transcriptional Perturbome in Pluripotent Stem Cell Models
12. Computational Analysis of Single-Cell RNA-Seq Data
13. Computational Analysis of circRNA Expression Data
14. RNAseq Analysis of Livers from Pigs Treated with Testosterone and Nandrolone Esters: Selection and Field Validation of Transcriptional Biomarkers
15. Multiple Sclerosis Disease: A Computational Approach for Investigating Its Drug Interactions
16. Surface protein and functional analyses identify CD4+CD39+ TCR αβ+ and activated TCR Vδ1+ cells with distinct pro-inflammatory functions in Crohn's Disease lesions
17. Promiscuous recognition of MR1 drives self-reactive mucosal-associated invariant T cell responses
18. Targeting CCR7-PI3Kγ overcomes resistance to tyrosine kinase inhibitors in ALK-rearranged lymphoma
19. Differential Expression Analysis in Single-Cell Transcriptomics
20. Circulating hsa-miR-5096 predicts 18F-FDG PET/CT positivity and modulates somatostatin receptor 2 expression: a novel miR-based assay for pancreatic neuroendocrine tumors
21. p140Cap inhibits β-Catenin in the breast cancer stem cell compartment instructing a protective anti-tumor immune response
22. CONNECTOR, fitting and clustering of longitudinal data to reveal a new risk stratification system
23. Supplementary Table S5 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
24. Supplementary Table S8 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
25. Supplementary Legends from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
26. Supplementary Figure S2 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
27. Supplementary Table S6 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
28. Supplementary Table S8 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
29. Supplementary Table S6 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
30. Supplementary Data from Transcriptional Analysis of an E2F Gene Signature as a Biomarker of Activity of the Cyclin-Dependent Kinase Inhibitor PHA-793887 in Tumor and Skin Biopsies from a Phase I Clinical Study
31. Supplementary Table S3 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
32. Supplementary Table from Regulation of leukemic cell differentiation and retinoid-induced gene expression by statins
33. Supplementary Table S3 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
34. Supplementary Legends from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
35. Supplementary Table S2 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
36. Supplementary Table S7 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
37. Supplementary Table S9 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
38. Supplementary Figure S2 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
39. Supplementary Table S4 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
40. Supplementary Data from Transcriptional Analysis of an E2F Gene Signature as a Biomarker of Activity of the Cyclin-Dependent Kinase Inhibitor PHA-793887 in Tumor and Skin Biopsies from a Phase I Clinical Study
41. Supplementary Table S9 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
42. Supplementary Fig. from Regulation of leukemic cell differentiation and retinoid-induced gene expression by statins
43. Supplementary Table S4 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
44. Supplementary Table S5 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
45. Supplementary Figure S1 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
46. Supplementary Figure S1 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
47. Supplementary Table S7 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
48. Supplementary Table S2 from Transcriptional Profiling of Polycythemia Vera Identifies Gene Expression Patterns Both Dependent and Independent from the Action of JAK2V617F
49. Supplementary Fig. from Regulation of leukemic cell differentiation and retinoid-induced gene expression by statins
50. Supplementary Table from Regulation of leukemic cell differentiation and retinoid-induced gene expression by statins
Catalog
Books, media, physical & digital resources
Discovery Service for Jio Institute Digital Library
For full access to our library's resources, please sign in.