327 results on '"Sam M Janes"'
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2. The SUMMIT Study: Utilising a written ‘Next Steps’ information booklet to prepare participants for potential lung cancer screening results and follow-up
3. Uptake of invitations to a lung health check offering low-dose CT lung cancer screening among an ethnically and socioeconomically diverse population at risk of lung cancer in the UK (SUMMIT): a prospective, longitudinal cohort study
4. Utilisation of primary care electronic patient records for identification and targeted invitation of individuals to a lung cancer screening programme
5. Synthetic data for privacy-preserving clinical risk prediction
6. Mortality surrogates in combined pulmonary fibrosis and emphysema
7. Human SARS-CoV-2 challenge resolves local and systemic response dynamics
8. Supplementary Figure 1 from Induction of APOBEC3 Exacerbates DNA Replication Stress and Chromosomal Instability in Early Breast and Lung Cancer Evolution
9. Table S3 from Immune Surveillance in Clinical Regression of Preinvasive Squamous Cell Lung Cancer
10. Table S1 from BRCA1/MAD2L1 Deficiency Disrupts the Spindle Assembly Checkpoint to Confer Vinorelbine Resistance in Mesothelioma
11. Table S2 from Immune Surveillance in Clinical Regression of Preinvasive Squamous Cell Lung Cancer
12. Figure S2 from BRCA1/MAD2L1 Deficiency Disrupts the Spindle Assembly Checkpoint to Confer Vinorelbine Resistance in Mesothelioma
13. Figure S5 from BRCA1/MAD2L1 Deficiency Disrupts the Spindle Assembly Checkpoint to Confer Vinorelbine Resistance in Mesothelioma
14. Supplementary Figure 2 from Induction of APOBEC3 Exacerbates DNA Replication Stress and Chromosomal Instability in Early Breast and Lung Cancer Evolution
15. Table S1 from Immune Surveillance in Clinical Regression of Preinvasive Squamous Cell Lung Cancer
16. Table S3 from BRCA1/MAD2L1 Deficiency Disrupts the Spindle Assembly Checkpoint to Confer Vinorelbine Resistance in Mesothelioma
17. Figure S7 from BRCA1/MAD2L1 Deficiency Disrupts the Spindle Assembly Checkpoint to Confer Vinorelbine Resistance in Mesothelioma
18. Figure S4 from BRCA1/MAD2L1 Deficiency Disrupts the Spindle Assembly Checkpoint to Confer Vinorelbine Resistance in Mesothelioma
19. Figure S1 from BRCA1/MAD2L1 Deficiency Disrupts the Spindle Assembly Checkpoint to Confer Vinorelbine Resistance in Mesothelioma
20. Supplementary Data from Immune Surveillance in Clinical Regression of Preinvasive Squamous Cell Lung Cancer
21. Table S2 from BRCA1/MAD2L1 Deficiency Disrupts the Spindle Assembly Checkpoint to Confer Vinorelbine Resistance in Mesothelioma
22. Table S4 from Immune Surveillance in Clinical Regression of Preinvasive Squamous Cell Lung Cancer
23. Supplementary Tables S1-S4 from Induction of APOBEC3 Exacerbates DNA Replication Stress and Chromosomal Instability in Early Breast and Lung Cancer Evolution
24. Supplementary Figure 3 from Induction of APOBEC3 Exacerbates DNA Replication Stress and Chromosomal Instability in Early Breast and Lung Cancer Evolution
25. Figure S3 from BRCA1/MAD2L1 Deficiency Disrupts the Spindle Assembly Checkpoint to Confer Vinorelbine Resistance in Mesothelioma
26. TRACERx Consortium Members from Induction of APOBEC3 Exacerbates DNA Replication Stress and Chromosomal Instability in Early Breast and Lung Cancer Evolution
27. Supplementary Figure 4 from Induction of APOBEC3 Exacerbates DNA Replication Stress and Chromosomal Instability in Early Breast and Lung Cancer Evolution
28. Table S5 from Immune Surveillance in Clinical Regression of Preinvasive Squamous Cell Lung Cancer
29. Data from Induction of APOBEC3 Exacerbates DNA Replication Stress and Chromosomal Instability in Early Breast and Lung Cancer Evolution
30. Data from Immune Surveillance in Clinical Regression of Preinvasive Squamous Cell Lung Cancer
31. Figure S6 from BRCA1/MAD2L1 Deficiency Disrupts the Spindle Assembly Checkpoint to Confer Vinorelbine Resistance in Mesothelioma
32. Supplementary Data from Tumor Heterogeneity and Permeability as Measured on the CT Component of PET/CT Predict Survival in Patients with Non–Small Cell Lung Cancer
33. Automated airway quantification associates with mortality in idiopathic pulmonary fibrosis
34. Supplementary Table 1 from Tumor Heterogeneity and Permeability as Measured on the CT Component of PET/CT Predict Survival in Patients with Non–Small Cell Lung Cancer
35. Supplementary Figure 1 from Tumor Heterogeneity and Permeability as Measured on the CT Component of PET/CT Predict Survival in Patients with Non–Small Cell Lung Cancer
36. Appendix from Tumor Heterogeneity and Permeability as Measured on the CT Component of PET/CT Predict Survival in Patients with Non–Small Cell Lung Cancer
37. Data from Tumor Heterogeneity and Permeability as Measured on the CT Component of PET/CT Predict Survival in Patients with Non–Small Cell Lung Cancer
38. Supplementary Figure 2 from Tumor Heterogeneity and Permeability as Measured on the CT Component of PET/CT Predict Survival in Patients with Non–Small Cell Lung Cancer
39. Supplementary Figure 2 from Mesenchymal Stem Cell Delivery of TRAIL Can Eliminate Metastatic Cancer
40. Supplementary Figure 1 from Mesenchymal Stem Cell Delivery of TRAIL Can Eliminate Metastatic Cancer
41. The role of computer-assisted radiographer reporting in lung cancer screening programmes
42. Hesitancy around low-dose CT screening for lung cancer
43. Lung viral infection modelling in a bioengineered whole-organ
44. Phenotyping of lymphoproliferative tumours generated in xenografts of non-small cell lung cancer
45. Early human lung immune cell development and its role in epithelial cell fate
46. Lung cancer symptom appraisal, help‐seeking and diagnosis – rapid systematic review of differences between patients with and without a smoking history
47. Analysis of the baseline performance of five UK lung cancer screening programmes
48. Perspectives on the Treatment of Malignant Pleural Mesothelioma
49. Release of Notch activity coordinated by IL-1β signalling confers differentiation plasticity of airway progenitors via Fosl2 during alveolar regeneration
50. Decision letter: Interrogating the precancerous evolution of pathway dysfunction in lung squamous cell carcinoma using XTABLE
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