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145 results on '"Schüller, A"'

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

4. Integrated analyses reveal two molecularly and clinically distinct subtypes of H3 K27M-mutant diffuse midline gliomas with prognostic significance.

5. Heterogeneity within the PF-EPN-B ependymoma subgroup

6. Identification of a putative molecular subtype of adult-type diffuse astrocytoma with recurrent MAPK pathway alterations.

7. Transcriptomic and epigenetic dissection of spinal ependymoma (SP-EPN) identifies clinically relevant subtypes enriched for tumors with and without NF2 mutation

8. Molecular characteristics and improved survival prediction in a cohort of 2023 ependymomas

9. Clinically relevant molecular hallmarks of PFA ependymomas display intratumoral heterogeneity and correlate with tumor morphology

10. Temporal change of DNA methylation subclasses between matched newly diagnosed and recurrent glioblastoma

12. Embryonal tumor with abundant neuropil and true rosettes (ETANTR), ependymoblastoma, and medulloepithelioma share molecular similarity and comprise a single clinicopathological entity.

13. Clinical, genomic, and epigenomic analyses of H3K27M-mutant diffuse midline glioma long-term survivors reveal a distinct group of tumors with MAPK pathway alterations

14. TERT promoter mutations are highly recurrent in SHH subgroup medulloblastoma.

15. 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

16. LIN28A immunoreactivity is a potent diagnostic marker of embryonal tumor with multilayered rosettes (ETMR).

17. Recurrent atypical teratoid/rhabdoid tumors (AT/RT) reveal discrete features of progression on histology, epigenetics, copy number profiling, and transcriptomics

18. 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

19. Identification of low and very high-risk patients with non-WNT/non-SHH medulloblastoma by improved clinico-molecular stratification of the HIT2000 and I-HIT-MED cohorts

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

21. Recurrent fusions in PLAGL1 define a distinct subset of pediatric-type supratentorial neuroepithelial tumors

22. Genetic and epigenetic profiling identifies two distinct classes of spinal meningiomas

24. Neurofibromatosis type 2 predisposes to ependymomas of various localization, histology, and molecular subtype

25. Atypical teratoid/rhabdoid tumors (ATRTs) with SMARCA4 mutation are molecularly distinct from SMARCB1-deficient cases

26. Molecular characterization of histopathological ependymoma variants

27. Identification of low and very high-risk patients with non-WNT/non-SHH medulloblastoma by improved clinico-molecular stratification of the HIT2000 and I-HIT-MED cohorts.

28. Recurrent fusions in PLAGL1 define a distinct subset of pediatric-type supratentorial neuroepithelial tumors

29. Genome-wide DNA methylation profiles distinguish silent from non-silent ACTH adenomas

32. Neurofibromatosis type 2 predisposes to ependymomas of various localization, histology, and molecular subtype

33. TERT promoter mutation and chromosome 6 loss define a high-risk subtype of ependymoma evolving from posterior fossa subependymoma

36. Atypical teratoid/rhabdoid tumors (ATRTs) with SMARCA4 mutation are molecularly distinct from SMARCB1-deficient cases

37. Genome-wide DNA methylation profiles distinguish silent from non-silent ACTH adenomas

38. Macrophage-tumor cell interaction promotes ATRT progression and chemoresistance

39. Molecular characterization of histopathological ependymoma variants

40. Medulloblastoma: experimental models and reality

42. TCF4 (E2-2) harbors tumor suppressive functions in SHH medulloblastoma

43. Primary intracranial spindle cell sarcoma with rhabdomyosarcoma-like features share a highly distinct methylation profile and DICER1 mutations

44. TCF4 (E2-2) harbors tumor suppressive functions in SHH medulloblastoma

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

46. Histologically distinct neuroepithelial tumors with histone 3 G34 mutation are molecularly similar and comprise a single nosologic entity

47. Macrophage-tumor cell interaction promotes ATRT progression and chemoresistance.

48. Molecular characterization of histopathological ependymoma variants.

49. Correction to: DNA methylation-based reclassification of olfactory neuroblastoma

50. Primary intracranial spindle cell sarcoma with rhabdomyosarcoma-like features share a highly distinct methylation profile and DICER1 mutations

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