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BMC Bioinformatics
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January 27, 2007
Motif kernel generated by genetic programming improves remote homology and fold detection
Tony Håndstad, Arne J H Hestnes, Pål Saetrom
BMC Biology
|
November 26, 2011
Clustered ChIP-Seq-defined transcription factor binding sites and histone modifications map distinct classes of regulatory elements
Morten Rye, Pål Sætrom, Tony Håndstad, et al.
Plos One
|
May 3, 2011
A ChIP-Seq benchmark shows that sequence conservation mainly improves detection of strong transcription factor binding sites
Tony Håndstad, Morten Beck Rye, Finn Drabløs, et al.
BMC Bioinformatics
|
July 26, 2012
The Triform algorithm: improved sensitivity and specificity in ChIP-Seq peak finding
Karl Kornacker, Morten Beck Rye, Tony Håndstad, et al.
BMC Genomics
|
August 7, 2012
Cell-type specificity of ChIP-predicted transcription factor binding sites
Tony Håndstad, Morten Rye, Rok Močnik, et al.
Page
of 1
Search research articles
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Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
BMC Bioinformatics
|
January 27, 2007
Motif kernel generated by genetic programming improves remote homology and fold detection
Tony Håndstad, Arne J H Hestnes, Pål Saetrom
BMC Biology
|
November 26, 2011
Clustered ChIP-Seq-defined transcription factor binding sites and histone modifications map distinct classes of regulatory elements
Morten Rye, Pål Sætrom, Tony Håndstad, et al.
Plos One
|
May 3, 2011
A ChIP-Seq benchmark shows that sequence conservation mainly improves detection of strong transcription factor binding sites
Tony Håndstad, Morten Beck Rye, Finn Drabløs, et al.
BMC Bioinformatics
|
July 26, 2012
The Triform algorithm: improved sensitivity and specificity in ChIP-Seq peak finding
Karl Kornacker, Morten Beck Rye, Tony Håndstad, et al.
BMC Genomics
|
August 7, 2012
Cell-type specificity of ChIP-predicted transcription factor binding sites
Tony Håndstad, Morten Rye, Rok Močnik, et al.
Page
of 1