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1. Gene expression profiling identifies FLT3 mutation-like cases in wild-type FLT3 acute myeloid leukemia

2. Corrigendum: Evaluation of the Stellae-123 prognostic gene expression signature in acute myeloid leukemia.

3. Correction: Gene expression profiling identifies FLT3 mutation-like cases in wild-type FLT3 acute myeloid leukemia.

4. Evaluation of the Stellae-123 prognostic gene expression signature in acute myeloid leukemia.

5. Prognostic Stratification of Multiple Myeloma Using Clinicogenomic Models: Validation and Performance Analysis of the IAC-50 Model.

6. Prognostic Stratification of Diffuse Large B-cell Lymphoma Using Clinico-genomic Models: Validation and Improvement of the LymForest-25 Model.

7. Personally Tailored Survival Prediction of Patients With Follicular Lymphoma Using Machine Learning Transcriptome-Based Models.

8. Survival prediction and treatment optimization of multiple myeloma patients using machine-learning models based on clinical and gene expression data.

9. Detection of new drivers of frequent B-cell lymphoid neoplasms using an integrated analysis of whole genomes.

10. Personalized Survival Prediction of Patients With Acute Myeloblastic Leukemia Using Gene Expression Profiling.

11. Detection of Rare Germline Variants in the Genomes of Patients with B-Cell Neoplasms.

12. Improved personalized survival prediction of patients with diffuse large B-cell Lymphoma using gene expression profiling.

13. FLT3 inhibitors in the treatment of acute myeloid leukemia: current status and future perspectives.

14. A Three-Gene Expression Signature Identifies a Cluster of Patients with Short Survival in Chronic Lymphocytic Leukemia.

15. Identification of new putative driver mutations and predictors of disease evolution in chronic lymphocytic leukemia.

16. New Recurrent Structural Aberrations in the Genome of Chronic Lymphocytic Leukemia Based on Exome-Sequencing Data.

17. The association of germline variants with chronic lymphocytic leukemia outcome suggests the implication of novel genes and pathways in clinical evolution.

18. Time to Treatment Prediction in Chronic Lymphocytic Leukemia Based on New Transcriptional Patterns.

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