Basset: learning the regulatory code of the accessible genome with deep convolutional neural networks

DR Kelley, J Snoek, JL Rinn - Genome research, 2016 - genome.cshlp.org
The complex language of eukaryotic gene expression remains incompletely understood.
Despite the importance suggested by many noncoding variants statistically associated with …

Basset: Learning the regulatory code of the accessible genome with deep convolutional neural networks

DR Kelley, J Snoek, J Rinn - bioRxiv, 2015 - biorxiv.org
The complex language of eukaryotic gene expression remains incompletely understood.
Despite the importance suggested by many noncoding variants statistically associated with …

Basset: learning the regulatory code of the accessible genome with deep convolutional neural networks.

DR Kelley, J Snoek, JL Rinn - Genome Research, 2016 - europepmc.org
The complex language of eukaryotic gene expression remains incompletely understood.
Despite the importance suggested by many noncoding variants statistically associated with …

[PDF][PDF] Basset: Learning the regulatory code of the accessible genome with deep convolutional neural networks.

DR Kelley, J Snoek, JL Rinn, DR Kelley, J Snoek… - researchgate.net
The complex language of eukaryotic gene expression remains incompletely understood.
Despite the importance suggested by many noncoding variants statistically associated with …

Basset: learning the regulatory code of the accessible genome with deep convolutional neural networks

DR Kelley, J Snoek, JL Rinn - Genome research, 2016 - pubmed.ncbi.nlm.nih.gov
The complex language of eukaryotic gene expression remains incompletely understood.
Despite the importance suggested by many noncoding variants statistically associated with …

[PDF][PDF] Basset: learning the regulatory code of the accessible genome with deep convolutional neural networks

DR Kelley, J Snoek, JL Rinn - 2016 - scholar.archive.org
Basset: learning the regulatory code of the accessible genome with deep convolutional neural
networks Page 1 Basset: learning the regulatory code of the accessible genome with deep …

Basset: learning the regulatory code of the accessible genome with deep convolutional neural networks

DR Kelley, J Snoek, JL Rinn - Genome Research, 2016 - cir.nii.ac.jp
抄録< jats: p> The complex language of eukaryotic gene expression remains incompletely
understood. Despite the importance suggested by many noncoding variants statistically …

[HTML][HTML] Basset: learning the regulatory code of the accessible genome with deep convolutional neural networks

DR Kelley, J Snoek, JL Rinn - Genome Research, 2016 - ncbi.nlm.nih.gov
The complex language of eukaryotic gene expression remains incompletely understood.
Despite the importance suggested by many noncoding variants statistically associated with …

Basset: Learning the regulatory code of the accessible genome with deep convolutional neural networks

DR Kelley, J Snoek, J Rinn - Genome Research, 2016 - genome.cshlp.org
The complex language of eukaryotic gene expression remains incompletely understood.
Despite the importance suggested by many noncoding variants statistically associated with …

Basset: Learning the regulatory code of the accessible genome with deep convolutional neural networks

DR Kelley - pdfs.semanticscholar.org
Basset: Learning the regulatory code of the accessible genome with deep convolutional
neural networks Page 1 Basset: Learning the regulatory code of the accessible genome …