157 results on '"Manalis, Scott R."'
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2. Single-cell mass distributions reveal simple rules for achieving steady-state growth
3. Leukemia circulation kinetics revealed through blood exchange method
4. P1207: SERIAL SINGLE-CELL PROFILING OF MANTLE CELL LYMPHOMA REVEALS FUNCTIONAL AND MOLECULAR CORRELATES OF RESISTANCE TO BTK INHIBITOR-INCLUSIVE TRIPLET THERAPY
5. Direct quantification of unicellular algae sinking velocities reveals cell size, light, and nutrient-dependence
6. Data from Oncogenic HSP90 Facilitates Metabolic Alterations in Aggressive B-cell Lymphomas
7. Supplementary Data from Oncogenic HSP90 Facilitates Metabolic Alterations in Aggressive B-cell Lymphomas
8. Data from Oncogenic HSP90 Facilitates Metabolic Alterations in Aggressive B-cell Lymphomas
9. Supplementary Data from Oncogenic HSP90 Facilitates Metabolic Alterations in Aggressive B-cell Lymphomas
10. Supplementary Data from Oncogenic HSP90 Facilitates Metabolic Alterations in Aggressive B-cell Lymphomas
11. Supplementary Data from Oncogenic HSP90 Facilitates Metabolic Alterations in Aggressive B-cell Lymphomas
12. Supplemental Movie 6 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
13. Supplemental Figure Legends from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
14. Supplemental Movie 2 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
15. Supplemental Movie 8 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
16. Supplemental Movie 6 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
17. Supplemental Movie 3 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
18. Supplemental Movie 5 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
19. Supplemental Movie 4 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
20. Supplemental Movie 7 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
21. Supplemental Movie 7 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
22. Data from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
23. Figure S6. from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
24. Figure S5. from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
25. Supplemental Movie 1 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
26. Supplemental Movie 1 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
27. Supplemental Movie 4 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
28. Figure S2. from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
29. Figure S4 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
30. Supplemental Figure Legends from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
31. Supplementary Materials and Methods from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
32. Figure S3. from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
33. Supplemental Movie 9 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
34. Figure S1 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
35. Figure S6. from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
36. Data from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
37. Figure S3. from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
38. Figure S2. from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
39. Figure S1 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
40. Supplementary Materials and Methods from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
41. Supplemental Movie 2 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
42. Figure S5. from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
43. Supplemental Movie 3 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
44. Supplemental Movie 5 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
45. Supplemental Movie 9 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
46. Figure S4 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
47. Supplemental Movie 8 from YAP Enhances Tumor Cell Dissemination by Promoting Intravascular Motility and Reentry into Systemic Circulation
48. Author Correction: Metabolic regulation of species-specific developmental rates
49. Single-cell mass distributions reveal simple rules for achieving steady-state growth
50. Metabolic regulation of species-specific developmental rates
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