ReactomeGSA - Efficient Multi-Omics Comparative Pathway Analysis is a research paper published in Molecular & Cellular Proteomics (2020). On theSindex it has a DataRank of 0. It has been cited 386 times.
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EC | Research Executive Agency
Grant: 788042
Extending the REACTOME Pathway Database for multi-omics biomedical data analysis
US National Institutes of Health
Grant: P41 HG003751
Austrian Science Fund
Grant: P30325-B28
Austrian Science Fund FWF
Grant: P 30325
From genomics to signaling networks in triple-wt melanomas
NHGRI NIH HHS
Grant: U41 HG003751
National Institutes of Health
Grant: 3P41HG003751-04S1
Reactome: An Open Knowledgebase of Human Pathways
FWCI
12.36
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 9 of Longitudinal multi-omic changes in the transcriptome and proteome of peripheral blood cells after a 4 Gy total body radiation dose to Rhesus macaques
Additional file 9 of Longitudinal multi-omic changes in the transcriptome and proteome of peripheral blood cells after a 4 Gy total body radiation dose to Rhesus macaques
Additional file 1 of Expression of hub genes of endothelial cells in glioblastoma-A prognostic model for GBM patients integrating single-cell RNA sequencing and bulk RNA sequencing
Additional file 1 of Expression of hub genes of endothelial cells in glioblastoma-A prognostic model for GBM patients integrating single-cell RNA sequencing and bulk RNA sequencing
Additional file 1 of Vimentin-mediated buffering of internal integrin β1 pool increases survival of cells from anoikis
Additional file 1 of Vimentin-mediated buffering of internal integrin β1 pool increases survival of cells from anoikis
Additional file 2 of Vimentin-mediated buffering of internal integrin β1 pool increases survival of cells from anoikis
Additional file 2 of Vimentin-mediated buffering of internal integrin β1 pool increases survival of cells from anoikis
Additional file 2 of Expression of hub genes of endothelial cells in glioblastoma-A prognostic model for GBM patients integrating single-cell RNA sequencing and bulk RNA sequencing
Additional file 5 of Expression of hub genes of endothelial cells in glioblastoma-A prognostic model for GBM patients integrating single-cell RNA sequencing and bulk RNA sequencing
Additional file 3 of Expression of hub genes of endothelial cells in glioblastoma-A prognostic model for GBM patients integrating single-cell RNA sequencing and bulk RNA sequencing
Additional file 4 of Expression of hub genes of endothelial cells in glioblastoma-A prognostic model for GBM patients integrating single-cell RNA sequencing and bulk RNA sequencing
Additional file 2 of Expression of hub genes of endothelial cells in glioblastoma-A prognostic model for GBM patients integrating single-cell RNA sequencing and bulk RNA sequencing
Additional file 3 of Expression of hub genes of endothelial cells in glioblastoma-A prognostic model for GBM patients integrating single-cell RNA sequencing and bulk RNA sequencing
Additional file 4 of Expression of hub genes of endothelial cells in glioblastoma-A prognostic model for GBM patients integrating single-cell RNA sequencing and bulk RNA sequencing
Additional file 5 of Expression of hub genes of endothelial cells in glioblastoma-A prognostic model for GBM patients integrating single-cell RNA sequencing and bulk RNA sequencing
Additional file 2 of CD8 + T-cell marker genes reveal different immune subtypes of oral lichen planus by integrating single-cell RNA-seq and bulk RNA-sequencing
Additional file 2 of CD8 + T-cell marker genes reveal different immune subtypes of oral lichen planus by integrating single-cell RNA-seq and bulk RNA-sequencing
Additional file 1 of CD8 + T-cell marker genes reveal different immune subtypes of oral lichen planus by integrating single-cell RNA-seq and bulk RNA-sequencing
Additional file 3 of CD8 + T-cell marker genes reveal different immune subtypes of oral lichen planus by integrating single-cell RNA-seq and bulk RNA-sequencing