Dream: powerful differential expression analysis for repeated measures designs is a research paper published in Bioinformatics (2020). On theSindex it has a DataRank of 0. It has been cited 347 times.
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NIMH
Grant: U01MH116442
NIMH
Grant: R01MH109677
NIMH
Grant: R01MH109897
NIMH
Grant: R01MH110921
NIA
Grant: R01AG050986
Veterans Affairs merit
Grant: BX002395
NARSAD Young Investigator Award
Grant: 26313
BLRD VA
Grant: I01 BX002395
NIH HHS
Grant: S10 OD018522
NIH HHS
Grant: S10 OD026880
National Institutes of Health
Grant: 3R01AG050986-04S1
Higher Order Chromatin and Genetic Risk for Alzheimer's Disease
National Institutes of Health
Grant: 5U01MH116442-03
The 3D genome in transcriptional regulation across the postnatal life span, with implications for schizophrenia and bipolar disorder
National Institutes of Health
Grant: 5R01MH109677-02
Risk genetic variants and cis regulation of gene expression in Bipolar Disorder
National Institutes of Health
Grant: 5R01MH110921-04
Molecular Profiling of Schizophrenia
FWCI
11.78
Citation Percentile
1.0%
Citation Trend
Fields of Study
MeSH Terms
Keywords
Additional file 1 of A Markov random field model for network-based differential expression analysis of single-cell RNA-seq data
Additional file 1 of A Markov random field model for network-based differential expression analysis of single-cell RNA-seq data
Additional file 2 of A Markov random field model for network-based differential expression analysis of single-cell RNA-seq data
Additional file 2 of A Markov random field model for network-based differential expression analysis of single-cell RNA-seq data
Additional file 1 of The relationship between regulatory changes in cis and trans and the evolution of gene expression in humans and chimpanzees
Additional file 1 of The relationship between regulatory changes in cis and trans and the evolution of gene expression in humans and chimpanzees
Additional file 5 of The relationship between regulatory changes in cis and trans and the evolution of gene expression in humans and chimpanzees
Additional file 5 of The relationship between regulatory changes in cis and trans and the evolution of gene expression in humans and chimpanzees
Additional file 1 of X-chromosome inactivation in human iPSCs provides insight into X-regulated gene expression in autosomes
Additional file 1 of X-chromosome inactivation in human iPSCs provides insight into X-regulated gene expression in autosomes
Additional file 3 of X-chromosome inactivation in human iPSCs provides insight into X-regulated gene expression in autosomes
Additional file 3 of X-chromosome inactivation in human iPSCs provides insight into X-regulated gene expression in autosomes
Additional file 7 of Multi-tissue metabolic and transcriptomic responses to a short-term heat stress in swine
Additional file 2 of X-chromosome inactivation in human iPSCs provides insight into X-regulated gene expression in autosomes
Additional file 2 of X-chromosome inactivation in human iPSCs provides insight into X-regulated gene expression in autosomes
Additional file 7 of Multi-tissue metabolic and transcriptomic responses to a short-term heat stress in swine
Additional file 3 of Multi-tissue metabolic and transcriptomic responses to a short-term heat stress in swine
Additional file 4 of Multi-tissue metabolic and transcriptomic responses to a short-term heat stress in swine
Additional file 6 of Multi-tissue metabolic and transcriptomic responses to a short-term heat stress in swine
Additional file 5 of Multi-tissue metabolic and transcriptomic responses to a short-term heat stress in swine