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1. GateNet: A novel Neural Network Architecture for Automated Flow Cytometry Gating

2. Flow cytometry identifies changes in peripheral and intrathecal lymphocyte patterns in CNS autoimmune disorders and primary CNS malignancies

4. Differences in innate immune cell populations distinguish autoimmune from herpesvirus-associated encephalitis

7. Chemokine-mediated cell migration into the central nervous system in progressive multifocal leukoencephalopathy

8. Classification of neurological diseases using multi-dimensional cerebrospinal fluid analysis

10. Integrated single cell analysis of blood and cerebrospinal fluid leukocytes in multiple sclerosis.

11. Sunlight exposure exerts immunomodulatory effects to reduce multiple sclerosis severity

12. Immune signatures of prodromal multiple sclerosis in monozygotic twins

15. Intratumor heterogeneity and T cell exhaustion in primary CNS lymphoma

32. CD8+ T cell-mediated endotheliopathy is a targetable mechanism of neuro-inflammation in Susac syndrome

33. Multiple sclerosis endophenotypes identified by high-dimensional blood signatures are associated with distinct disease trajectories.

35. Identification of multiple sclerosis endophenotypes by high dimensional blood signatures associated with distinct disease trajectories (P1-3.008)

36. Increased Intrathecal B and Plasma Cells in Patients With Anti-IgLON5 Disease:A Case Series

37. Stroke in Patients with Bacterial Meningitis: A Cohort Study and Meta‐Analysis

39. Single-cell profiling reveals preferential reduction of memory B cell subsets in cladribine patients that correlates with treatment response

41. Enhanced pathogenicity of Th17 cells due to natalizumab treatment: Implications for MS disease rebound

42. A single-cell analysis framework allows for characterization of CSF leukocytes and their tissue of origin in multiple sclerosis

43. Neurochondrin is a neuronal target antigen in autoimmune cerebellar degeneration

45. Signatures of premature immunosenescence in patients with multiple sclerosis (P1-1.Virtual)

46. Alemtuzumab-induced immune phenotype and repertoire changes: implications for secondary autoimmunity

47. Additional file 2 of Intratumor heterogeneity and T cell exhaustion in primary CNS lymphoma

48. Additional file 4 of Intratumor heterogeneity and T cell exhaustion in primary CNS lymphoma

49. Additional file 1 of Immunoadsorption versus double-dose methylprednisolone in refractory multiple sclerosis relapses

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