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Paper Title
Deep learning predicts DNA methylation regulatory variants in the human brain and elucidates the genetics of psychiatric disorders.
PubMed
Paper Journal Title
Proc Natl Acad Sci U S A
Paper Citation Count
10
Paper Publication Year
2022
Bio Mention
CpG sites, DNA methylation (DNAm) quantitative trait loci, DNA methylation regulatory variants, DNAm regulatory variants, functional regulatory variants, genetic variations, human, mQTL, mQTLs, novel risk genes, psychiatric disorders, regulatory genomic regions, risk loci, schizophrenia
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Author Name
Affiliation
Andrew E Jaffe
Lieber Institute for Brain Development, The Johns Hopkins Medical Campus
Andrew E Jaffe
The Johns Hopkins Bloomberg School of Public Health
Andrew E Jaffe
The Johns Hopkins Bloomberg School of Public Health
Andrew E Jaffe
The Johns Hopkins University School of Medicine
Andrew E Jaffe
The Johns Hopkins University School of Medicine
Andrew E Jaffe
The Johns Hopkins University School of Medicine
Thomas M Hyde
Lieber Institute for Brain Development, The Johns Hopkins Medical Campus
Thomas M Hyde
The Johns Hopkins University School of Medicine
Thomas M Hyde
The Johns Hopkins University School of Medicine
Joel E Kleinman
Lieber Institute for Brain Development, The Johns Hopkins Medical Campus
Joel E Kleinman
The Johns Hopkins University School of Medicine
Joel E Kleinman
Lieber Institute for Brain Development, The Johns Hopkins Medical Campus
Joel E Kleinman
The Johns Hopkins University School of Medicine
James B Potash
The Johns Hopkins University School of Medicine
Daniel R Weinberger
Lieber Institute for Brain Development, The Johns Hopkins Medical Campus
Daniel R Weinberger
The Johns Hopkins University School of Medicine
Daniel R Weinberger
The Johns Hopkins University School of Medicine
Daniel R Weinberger
The Johns Hopkins University School of Medicine
Daniel R Weinberger
The Johns Hopkins University School of Medicine
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