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Ranjit Randhawa

Showing results (1-10 of 11) with videos related to

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Bioinformatics (Oxford, England)|November 3, 2009
Model aggregation: a building-block approach to creating large macromolecular regulatory networksRanjit Randhawa, Clifford A Shaffer, John J Tyson
IEEE/ACM Transactions on Computational Biology and Bioinformatics|May 1, 2010
Model composition for macromolecular regulatory networksRanjit Randhawa, Clifford A Shaffer, John J Tyson
Methods in Molecular Biology (Clifton, N.J.)|April 29, 2009
Modeling molecular regulatory networks with JigCell and PETClifford A Shaffer, Jason W Zwolak, Ranjit Randhawa, et al.
Bioinformatics (Oxford, England)|February 23, 2012
Causal reasoning on biological networks: interpreting transcriptional changesLeonid Chindelevitch, Daniel Ziemek, Ahmed Enayetallah, et al.
Genomics|November 10, 2004
Exploring the characteristics of sequence elements in proximal promoters of human genesMinou Bina, Phillip Wyss, Wenhui Ren, et al.
Nature Communications|October 19, 2018
DRUG-seq for miniaturized high-throughput transcriptome profiling in drug discoveryChaoyang Ye, Daniel J Ho, Marilisa Neri, et al.
European Journal of Human Genetics : EJHG|October 30, 2024
Characterization of Y chromosome diversity in newfoundland and labrador: evidence for a structured founding populationHeather Zurel, Claude Bhérer, Ryan Batten, et al.
Plos One|November 11, 2011
Modeling the mechanism of action of a DGAT1 inhibitor using a causal reasoning platformAhmed E Enayetallah, Daniel Ziemek, Michael T Leininger, et al.
Nature Medicine|June 13, 2018
p53 inhibits CRISPR-Cas9 engineering in human pluripotent stem cellsRobert J Ihry, Kathleen A Worringer, Max R Salick, et al.
Communications Biology|April 28, 2023
The Newfoundland and Labrador mosaic founder population descends from an Irish and British diaspora from 300 years agoEdmund Gilbert, Heather Zurel, Margaret E MacMillan, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Bioinformatics (Oxford, England)|November 3, 2009
Model aggregation: a building-block approach to creating large macromolecular regulatory networksRanjit Randhawa, Clifford A Shaffer, John J Tyson
IEEE/ACM Transactions on Computational Biology and Bioinformatics|May 1, 2010
Model composition for macromolecular regulatory networksRanjit Randhawa, Clifford A Shaffer, John J Tyson
Methods in Molecular Biology (Clifton, N.J.)|April 29, 2009
Modeling molecular regulatory networks with JigCell and PETClifford A Shaffer, Jason W Zwolak, Ranjit Randhawa, et al.
Bioinformatics (Oxford, England)|February 23, 2012
Causal reasoning on biological networks: interpreting transcriptional changesLeonid Chindelevitch, Daniel Ziemek, Ahmed Enayetallah, et al.
Genomics|November 10, 2004
Exploring the characteristics of sequence elements in proximal promoters of human genesMinou Bina, Phillip Wyss, Wenhui Ren, et al.
Nature Communications|October 19, 2018
DRUG-seq for miniaturized high-throughput transcriptome profiling in drug discoveryChaoyang Ye, Daniel J Ho, Marilisa Neri, et al.
European Journal of Human Genetics : EJHG|October 30, 2024
Characterization of Y chromosome diversity in newfoundland and labrador: evidence for a structured founding populationHeather Zurel, Claude Bhérer, Ryan Batten, et al.
Plos One|November 11, 2011
Modeling the mechanism of action of a DGAT1 inhibitor using a causal reasoning platformAhmed E Enayetallah, Daniel Ziemek, Michael T Leininger, et al.
Nature Medicine|June 13, 2018
p53 inhibits CRISPR-Cas9 engineering in human pluripotent stem cellsRobert J Ihry, Kathleen A Worringer, Max R Salick, et al.
Communications Biology|April 28, 2023
The Newfoundland and Labrador mosaic founder population descends from an Irish and British diaspora from 300 years agoEdmund Gilbert, Heather Zurel, Margaret E MacMillan, et al.
Pageof 2