Additional file 7: Figure S5. The KaplanâMeier survival analysis for the 30 immune related genes in GSE3141 dataset. Some of the 30 immune related genes used to construct the immune signature demonstrated strong prognostic ability for LUAD patientsâ OS in GSE3141 dataset, while others did not exhibit prognostic ability
Abstract Background Lung cancer has become the most common cancer type and caused the most cancer de...
Additional file 12: Figure S10. Correlation of the risk signature with clinicopathologic factors in ...
Background: Immune and stromal component evaluation is necessary to establish accurate prognostic ma...
Additional file 5: Figure S3. The KaplanâMeier survival analysis for the 30 immune related genes i...
Additional file 6: Figure S4. The KaplanâMeier survival analysis for the 30 immune related genes i...
Additional file 4: Figure S2. The KaplanâMeier survival analysis for the 30 immune related genes i...
Additional file 3: Figure S1. The Kaplan–Meier survival analysis for the 30 immune related genes in ...
Additional file 9: Figure S7. The KaplanâMeier survival analysis of the signature for LUAD subgrou...
Additional file 11: Figure S9. The KaplanâMeier survival analysis of the signature for LUAD subgro...
Additional file 10: Figure S8. The KaplanâMeier survival analysis of the signature for LUAD subgro...
Additional file 8: Figure S6. The Kaplan–Meier survival analysis of the signature for LUAD subgroup ...
Additional file 2: Table S2. The coefficient value of 30 immune related risk genes
Additional file 13: Figure S11. Correlation of the risk signature with clinicopathologic factors in ...
Additional file 14: Figure S12. Correlation of the risk signature with clinicopathologic factors in ...
Additional file 15: Figure S13. Correlation of the risk signature with clinicopathologic factors in ...
Abstract Background Lung cancer has become the most common cancer type and caused the most cancer de...
Additional file 12: Figure S10. Correlation of the risk signature with clinicopathologic factors in ...
Background: Immune and stromal component evaluation is necessary to establish accurate prognostic ma...
Additional file 5: Figure S3. The KaplanâMeier survival analysis for the 30 immune related genes i...
Additional file 6: Figure S4. The KaplanâMeier survival analysis for the 30 immune related genes i...
Additional file 4: Figure S2. The KaplanâMeier survival analysis for the 30 immune related genes i...
Additional file 3: Figure S1. The Kaplan–Meier survival analysis for the 30 immune related genes in ...
Additional file 9: Figure S7. The KaplanâMeier survival analysis of the signature for LUAD subgrou...
Additional file 11: Figure S9. The KaplanâMeier survival analysis of the signature for LUAD subgro...
Additional file 10: Figure S8. The KaplanâMeier survival analysis of the signature for LUAD subgro...
Additional file 8: Figure S6. The Kaplan–Meier survival analysis of the signature for LUAD subgroup ...
Additional file 2: Table S2. The coefficient value of 30 immune related risk genes
Additional file 13: Figure S11. Correlation of the risk signature with clinicopathologic factors in ...
Additional file 14: Figure S12. Correlation of the risk signature with clinicopathologic factors in ...
Additional file 15: Figure S13. Correlation of the risk signature with clinicopathologic factors in ...
Abstract Background Lung cancer has become the most common cancer type and caused the most cancer de...
Additional file 12: Figure S10. Correlation of the risk signature with clinicopathologic factors in ...
Background: Immune and stromal component evaluation is necessary to establish accurate prognostic ma...