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J Timothy Westwood

Showing results (1-10 of 26) with videos related to

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Methods in Enzymology|August 30, 2006
Optimizing experiment and analysis parameters for spotted microarraysScott J Neal, J Timothy Westwood
Developmental Cell|June 5, 2007
The mother-to-child transitionWael Tadros, J Timothy Westwood, Howard D Lipshitz
Biodata Mining|April 4, 2013
Prediction of Drosophila melanogaster gene function using Support Vector MachinesNicholas Mitsakakis, Zak Razak, Michael Escobar, et al.
Plos One|February 27, 2015
Transcriptional profile of muscle following acute induction of symptoms in a mouse model of Kennedy's disease/spinobulbar muscular atrophyKatherine Halievski, Kaiguo Mo, J Timothy Westwood, et al.
Behavioural Brain Research|July 27, 2010
Chronic alcohol exposure induced gene expression changes in the zebrafish brainYi Pan, Mo Kaiguo, Zak Razak, et al.
BMC Genomics|October 1, 2011
Genome-wide examination of the transcriptional response to ecdysteroids 20-hydroxyecdysone and ponasterone A in Drosophila melanogasterSarah E Gonsalves, Scott J Neal, Amy S Kehoe, et al.
Genome|November 11, 2003
Construction of a cDNA-based microarray for Drosophila melanogaster: a comparison of gene transcription profiles from SL2 and Kc167 cellsScott J Neal, Meredith L Gibson, Anthony K-C So, et al.
Plos One|January 26, 2011
Whole-genome analysis reveals that active heat shock factor binding sites are mostly associated with non-heat shock genes in Drosophila melanogasterSarah E Gonsalves, Alan M Moses, Zak Razak, et al.
Experimental Gerontology|December 29, 2009
Gene expression profiling implicates OXPHOS complexes in lifespan extension of flies over-expressing a small mitochondrial chaperone, Hsp22Hyun-Ju Kim, Geneviève Morrow, J Timothy Westwood, et al.
The Journal of Experimental Biology|November 11, 2011
Divergent transcriptomic responses to repeated and single cold exposures in Drosophila melanogasterJian Zhang, Katie E Marshall, J Timothy Westwood, et al.
Pageof 3

Showing results (1-10 of 26) with videos related to

Sort By:
Pageof 3
Methods in Enzymology|August 30, 2006
Optimizing experiment and analysis parameters for spotted microarraysScott J Neal, J Timothy Westwood
Developmental Cell|June 5, 2007
The mother-to-child transitionWael Tadros, J Timothy Westwood, Howard D Lipshitz
Biodata Mining|April 4, 2013
Prediction of Drosophila melanogaster gene function using Support Vector MachinesNicholas Mitsakakis, Zak Razak, Michael Escobar, et al.
Plos One|February 27, 2015
Transcriptional profile of muscle following acute induction of symptoms in a mouse model of Kennedy's disease/spinobulbar muscular atrophyKatherine Halievski, Kaiguo Mo, J Timothy Westwood, et al.
Behavioural Brain Research|July 27, 2010
Chronic alcohol exposure induced gene expression changes in the zebrafish brainYi Pan, Mo Kaiguo, Zak Razak, et al.
BMC Genomics|October 1, 2011
Genome-wide examination of the transcriptional response to ecdysteroids 20-hydroxyecdysone and ponasterone A in Drosophila melanogasterSarah E Gonsalves, Scott J Neal, Amy S Kehoe, et al.
Genome|November 11, 2003
Construction of a cDNA-based microarray for Drosophila melanogaster: a comparison of gene transcription profiles from SL2 and Kc167 cellsScott J Neal, Meredith L Gibson, Anthony K-C So, et al.
Plos One|January 26, 2011
Whole-genome analysis reveals that active heat shock factor binding sites are mostly associated with non-heat shock genes in Drosophila melanogasterSarah E Gonsalves, Alan M Moses, Zak Razak, et al.
Experimental Gerontology|December 29, 2009
Gene expression profiling implicates OXPHOS complexes in lifespan extension of flies over-expressing a small mitochondrial chaperone, Hsp22Hyun-Ju Kim, Geneviève Morrow, J Timothy Westwood, et al.
The Journal of Experimental Biology|November 11, 2011
Divergent transcriptomic responses to repeated and single cold exposures in Drosophila melanogasterJian Zhang, Katie E Marshall, J Timothy Westwood, et al.
Pageof 3