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Computational Biology and Chemistry
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December 4, 2003
The PRALINE online server: optimising progressive multiple alignment on the web
V A Simossis, J Heringa
Nucleic Acids Research
|
June 28, 2005
PRALINE: a multiple sequence alignment toolbox that integrates homology-extended and secondary structure information
V A Simossis, J Heringa
Computational Biology and Chemistry
|
November 24, 2004
The influence of gapped positions in multiple sequence alignments on secondary structure prediction methods
V A Simossis, J Heringa
Current Protein & Peptide Science
|
August 24, 2004
Integrating protein secondary structure prediction and multiple sequence alignment
V A Simossis, J Heringa
Nucleic Acids Research
|
February 9, 2005
Homology-extended sequence alignment
V A Simossis, J Kleinjung, J Heringa
Nucleic Acids Research
|
May 2, 2009
DIANA-microT web server: elucidating microRNA functions through target prediction
M Maragkakis, M Reczko, V A Simossis, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 6) with videos related to
Sort By:
Page
of 1
Computational Biology and Chemistry
|
December 4, 2003
The PRALINE online server: optimising progressive multiple alignment on the web
V A Simossis, J Heringa
Nucleic Acids Research
|
June 28, 2005
PRALINE: a multiple sequence alignment toolbox that integrates homology-extended and secondary structure information
V A Simossis, J Heringa
Computational Biology and Chemistry
|
November 24, 2004
The influence of gapped positions in multiple sequence alignments on secondary structure prediction methods
V A Simossis, J Heringa
Current Protein & Peptide Science
|
August 24, 2004
Integrating protein secondary structure prediction and multiple sequence alignment
V A Simossis, J Heringa
Nucleic Acids Research
|
February 9, 2005
Homology-extended sequence alignment
V A Simossis, J Kleinjung, J Heringa
Nucleic Acids Research
|
May 2, 2009
DIANA-microT web server: elucidating microRNA functions through target prediction
M Maragkakis, M Reczko, V A Simossis, et al.
Page
of 1