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Ependymal tumors across age groups have been classified solely by histopathology. It is, however, commonly accepted that this classification has limited clinical utility based on its poor reliability. We aimed at establishing a reliable and reproducible molecular classification using DNA methylation...
ORGANISM(S): Homo sapiens 
Ependymal tumors across age groups have been classified and graded solely by histopathology. It is, however, commonly accepted that this classification scheme has limited clinical utility based on its lack of reproducibility in predicting patient outcome. We aimed at establishing a reliable molecula...
ORGANISM(S): Homo sapiens 
Microarray analysis was used to determine the expression of 12,000 genes in a set of 50 gliomas, 28 glioblastomas and 22 anaplastic oligodendrogliomas. Supervised learning approaches were used to build a two-class prediction model based on a subset of 14 glioblastomas and 7 anaplastic oligodendrogli...
ORGANISM(S): Homo sapiens 
WES data from 286 diffuse gliomas under the 2021 WHO Classification of Tumors of the Central Nervous System
Molecular classification of histological origin of NSCLC
Molecular profiling of cerebral gliomas distinguishes biologically distinct tumor groups and provides prognostically relevant information beyond histological classification and IDH1/2 mutation status. We performed microarray-based genome- and transcriptome-wide molecular profiling of primary tumor s...
ORGANISM(S): Homo sapiens 
2015-04-30 | GSE61374 | GEO
An integrated diagnosis using molecular features is recommended in the updated World Health Organization (WHO) classification. Our aim was to explore the role of MALDI-Mass spectrometry imaging (MSI) coupled to microproteomics in order to classify anaplastic glioma by integration of clinical data.
ORGANISM(S): Homo sapiens (Human) 
2016-12-13 | PXD004437 | Pride
Expression data for Vanderbilt triple-negative breast cancer subtype classification
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