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1. Early Detection of Leptomeningeal Metastases Among Patients Undergoing Spinal Stereotactic Radiosurgery

2. Incidence of brain metastases in patients with early HER2-positive breast cancer receiving neoadjuvant chemotherapy with trastuzumab and pertuzumab

3. Phenotypic and molecular states of IDH1 mutation-induced CD24-positive glioma stem-like cells

4. Leptomeningeal metastatic cells adopt two phenotypic states

5. Medulloblastoma uses GABA transaminase to survive in the cerebrospinal fluid microenvironment and promote leptomeningeal dissemination

6. Molecular Interactions in the Development of Brain Metastases

7. Targeted therapy in the treatment of malignant gliomas

9. Dynamic Mutational Landscape of Cerebrospinal Fluid Circulating Tumor DNA and Predictors of Survival after Proton Craniospinal Irradiation for Leptomeningeal Metastases

10. Randomized Phase II Trial of Proton Craniospinal Irradiation Versus Photon Involved-Field Radiotherapy for Patients With Solid Tumor Leptomeningeal Metastasis

11. Melanoma central nervous system metastases: An update to approaches, challenges, and opportunities

12. Metastasis

13. Discordance Between Perceptions and Experience of Lumbar Puncture

15. Supplementary fig 5 from Dynamic Mutational Landscape of Cerebrospinal Fluid Circulating Tumor DNA and Predictors of Survival after Proton Craniospinal Irradiation for Leptomeningeal Metastases

16. Supplementary fig 1 from Dynamic Mutational Landscape of Cerebrospinal Fluid Circulating Tumor DNA and Predictors of Survival after Proton Craniospinal Irradiation for Leptomeningeal Metastases

17. Supplementary fig 2 from Dynamic Mutational Landscape of Cerebrospinal Fluid Circulating Tumor DNA and Predictors of Survival after Proton Craniospinal Irradiation for Leptomeningeal Metastases

18. Supplementary fig 3 from Dynamic Mutational Landscape of Cerebrospinal Fluid Circulating Tumor DNA and Predictors of Survival after Proton Craniospinal Irradiation for Leptomeningeal Metastases

19. Supplementary fig 4 from Dynamic Mutational Landscape of Cerebrospinal Fluid Circulating Tumor DNA and Predictors of Survival after Proton Craniospinal Irradiation for Leptomeningeal Metastases

20. Brain metastases: A Society for Neuro-Oncology (SNO) consensus review on current management and future directions

21. Figures S1-12 from Genomic Correlates of Disease Progression and Treatment Response in Prospectively Characterized Gliomas

22. Supplementary Table 1 from Brain Metastasis Cell Lines Panel: A Public Resource of Organotropic Cell Lines

23. Data from Brain Metastasis Cell Lines Panel: A Public Resource of Organotropic Cell Lines

24. Supplementary Table 2 from Brain Metastasis Cell Lines Panel: A Public Resource of Organotropic Cell Lines

25. Tables S1-9 from Genomic Correlates of Disease Progression and Treatment Response in Prospectively Characterized Gliomas

26. Data from Genomic Correlates of Disease Progression and Treatment Response in Prospectively Characterized Gliomas

27. List of Supplementary Data from Genomic Correlates of Disease Progression and Treatment Response in Prospectively Characterized Gliomas

28. Supplementary Figure 3 from Blockade of PAR1 Signaling with Cell-Penetrating Pepducins Inhibits Akt Survival Pathways in Breast Cancer Cells and Suppresses Tumor Survival and Metastasis

29. Supplementary Figure 5 from Blockade of PAR1 Signaling with Cell-Penetrating Pepducins Inhibits Akt Survival Pathways in Breast Cancer Cells and Suppresses Tumor Survival and Metastasis

30. Supplementary Figure 7 from Blockade of PAR1 Signaling with Cell-Penetrating Pepducins Inhibits Akt Survival Pathways in Breast Cancer Cells and Suppresses Tumor Survival and Metastasis

31. Supplementary Figure 6 from Blockade of PAR1 Signaling with Cell-Penetrating Pepducins Inhibits Akt Survival Pathways in Breast Cancer Cells and Suppresses Tumor Survival and Metastasis

32. Supplementary Figure 2 from Blockade of PAR1 Signaling with Cell-Penetrating Pepducins Inhibits Akt Survival Pathways in Breast Cancer Cells and Suppresses Tumor Survival and Metastasis

33. Supplementary Figure 4 from Blockade of PAR1 Signaling with Cell-Penetrating Pepducins Inhibits Akt Survival Pathways in Breast Cancer Cells and Suppresses Tumor Survival and Metastasis

34. Supplementary Figure Legends 1-7 from Blockade of PAR1 Signaling with Cell-Penetrating Pepducins Inhibits Akt Survival Pathways in Breast Cancer Cells and Suppresses Tumor Survival and Metastasis

35. Supplementary Figure 1 from Blockade of PAR1 Signaling with Cell-Penetrating Pepducins Inhibits Akt Survival Pathways in Breast Cancer Cells and Suppresses Tumor Survival and Metastasis

36. Leptomeningeal anti-tumor immunity follows unique signaling principles

37. Advances in the diagnosis, evaluation, and management of leptomeningeal disease

38. Abstract 1190: Mimicking CAFs, pial cells support leptomeningeal metastasis

40. CNSC-02. BREAST TO BRAIN METASTASIS IS EXACERBATED WITH CHEMOTHERAPY THROUGH BLOOD-CEREBRAL SPINAL FLUID-BARRIER AND INDUCES ALZHEIMER’S-LIKE PATHOLOGY

41. Metastasis to the Central Nervous System

43. Genomic characterization of metastatic patterns from prospective clinical sequencing of 25,000 patients

45. Clinical trial of proton craniospinal irradiation for leptomeningeal metastases

46. Cerebrospinal fluid circulating tumor cells as a quantifiable measurement of leptomeningeal metastases in patients with HER2 positive cancer

47. The Human Tumor Atlas Network: Charting Tumor Transitions across Space and Time at Single-Cell Resolution

48. SPCR-02 NEUROCOGNITIVE FUNCTION IN PATIENTS WITH LEPTOMENINGEAL METASTASIS TREATED WITH PROTON CRANIOSPINAL IRRADIATION

49. BSCI-12 BREAST TO BRAIN METASTASIS IS EXACERBATED WITH CHEMOTHERAPY THROUGH BLOOD-CEREBRAL SPINAL FLUID-BARRIER AND INDUCES ALZHEIMER’S-LIKE PATHOLOGY

50. Genomic characterization of metastatic patterns from prospective clinical sequencing of 25,000 patients

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