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1. Amplification of the PLAG-family genes—PLAGL1 and PLAGL2—is a key feature of the novel tumor type CNS embryonal tumor with PLAGL amplification

2. Oligosarcomas, IDH-mutant are distinct and aggressive

3. Genetic and epigenetic characterization of posterior pituitary tumors

4. Subgroup and subtype-specific outcomes in adult medulloblastoma.

5. Molecular profiling of pediatric meningiomas shows tumor characteristics distinct from adult meningiomas

6. Multiomic neuropathology improves diagnostic accuracy in pediatric neuro-oncology

7. Correction to: Amplification of the PLAG-family genes—PLAGL1 and PLAGL2—is a key feature of the novel tumor type CNS embryonal tumor with PLAGL amplification

8. Glioblastomas with primitive neuronal component harbor a distinct methylation and copy-number profile with inactivation of TP53, PTEN, and RB1

9. Clear cell meningiomas are defined by a highly distinct DNA methylation profile and mutations in SMARCE1

10. A subset of pediatric-type thalamic gliomas share a distinct DNA methylation profile, H3K27me3 loss and frequent alteration of EGFR.

11. Author Correction: Multiomic neuropathology improves diagnostic accuracy in pediatric neuro-oncology

13. Rapid-CNS2: rapid comprehensive adaptive nanopore-sequencing of CNS tumors, a proof-of-concept study

14. Pleomorphic xanthoastrocytoma is a heterogeneous entity with pTERT mutations prognosticating shorter survival

15. Intimal sarcomas and undifferentiated cardiac sarcomas carry mutually exclusive MDM2, MDM4, and CDK6 amplifications and share a common DNA methylation signature

16. GOPC:ROS1 and other ROS1 fusions represent a rare but recurrent drug target in a variety of glioma types

17. PATZ1 fusions define a novel molecularly distinct neuroepithelial tumor entity with a broad histological spectrum

18. Epithelioid glioblastomas stratify into established diagnostic subsets upon integrated molecular analysis

19. Deep sequencing of WNT-activated medulloblastomas reveals secondary SHH pathway activation

20. DNA methylation-based classification of central nervous system tumours.

22. Primary mismatch repair deficient IDH-mutant astrocytoma (PMMRDIA) is a distinct type with a poor prognosis

23. Mosaic trisomy of chromosome 1q in human brain tissue associates with unilateral polymicrogyria, very early-onset focal epilepsy, and severe developmental delay

24. Molecular characterization of CNS paragangliomas identifies cauda equina paragangliomas as a distinct tumor entity

25. Molecular analysis of pediatric CNS-PNET revealed nosologic heterogeneity and potent diagnostic markers for CNS neuroblastoma with FOXR2-activation

26. Sarcoma classification by DNA methylation profiling

27. Radiation-induced gliomas represent H3-/IDH-wild type pediatric gliomas with recurrent PDGFRA amplification and loss of CDKN2A/B

28. Infratentorial IDH-mutant astrocytoma is a distinct subtype

29. CDKN2A/B homozygous deletion is associated with early recurrence in meningiomas

30. Transcriptional profiling of medulloblastoma with extensive nodularity (MBEN) reveals two clinically relevant tumor subsets with VSNL1 as potent prognostic marker

31. Molecular subgrouping of primary pineal parenchymal tumors reveals distinct subtypes correlated with clinical parameters and genetic alterations

33. YAP1-fusions in pediatric NF2-wildtype meningioma

34. Isomorphic diffuse glioma is a morphologically and molecularly distinct tumour entity with recurrent gene fusions of MYBL1 or MYB and a benign disease course

35. DNA methylation-based profiling of uterine neoplasms: a novel tool to improve gynecologic cancer diagnostics

36. Routine RNA sequencing of formalin-fixed paraffin-embedded specimens in neuropathology diagnostics identifies diagnostically and therapeutically relevant gene fusions

38. Author Correction: Multiomic neuropathology improves diagnostic accuracy in pediatric neuro-oncology

39. The Ghost

41. Array-based DNA-methylation profiling in sarcomas with small blue round cell histology provides valuable diagnostic information

42. Rosette-forming glioneuronal tumors share a distinct DNA methylation profile and mutations in FGFR1, with recurrent co-mutation of PIK3CA and NF1

43. Mutational patterns and regulatory networks in epigenetic subgroups of meningioma

44. Molecular progression of SHH-activated medulloblastomas

45. Desmoplastic/nodular medulloblastomas (DNMB) and medulloblastomas with extensive nodularity (MBEN) disclose similar epigenetic signatures but different transcriptional profiles

46. DNA methylation profiling distinguishes Ewing-like sarcoma with EWSR1–NFATc2 fusion from Ewing sarcoma

47. Papillary glioneuronal tumor (PGNT) exhibits a characteristic methylation profile and fusions involving PRKCA

48. Chordoid meningiomas can be sub-stratified into prognostically distinct DNA methylation classes and are enriched for heterozygous deletions of chromosomal arm 2p

49. Distribution of EGFR amplification, combined chromosome 7 gain and chromosome 10 loss, and TERT promoter mutation in brain tumors and their potential for the reclassification of IDHwt astrocytoma to glioblastoma

50. LGG-17. EPIGENETICALLY DEFINED ANGIOCENTRIC GLIOMAS MAY LACK ANGIOCENTRIC GROWTH AND INSTEAD SHOW A VARIETY OF GROWTH PATTERNS

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