Advances in Bioinformatics and Computational Biology: 8th by Fabian Amman, Stephan H. Bernhart (auth.), João C. Setubal,

By Fabian Amman, Stephan H. Bernhart (auth.), João C. Setubal, Nalvo F. Almeida (eds.)

This ebook constitutes the refereed lawsuits of the eighth Brazilian Symposium on Bioinformatics, BSB 2013, held in Recife, Brazil, in November 2013. The 18 commonplace papers offered have been conscientiously reviewed and chosen for inclusion during this e-book. The papers disguise all points of bioinformatics and computational biology.

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Additional info for Advances in Bioinformatics and Computational Biology: 8th Brazilian Symposium on Bioinformatics, BSB 2013, Recife, Brazil, November 3-7, 2013, Proceedings

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Acad. Sci. USA 100, 7051–7056 (2003) 6. : A detailed predictive model of the mammalian circadian clock. Proc. Natl. Acad. Sci. USA 100, 14806–14811 (2003) 7. : A model of the mammalian circadian oscillator including the REV-ERBα module. Genome Inform. 15, 3–12 (2004) 8. : Modeling the circadian clock: from molecular mechanism to physiological disorders. BioEssays 30, 590–600 (2008) 9. : Modeling feedback loops of the mammalian circadian oscillator. Biophysical J. 87, 3023–3034 (2004) 10. : A functional genomics strategy reveals Rora as a component of the mammalian circadian clock.

J. Biol. Rhythms 20, 391–403 (2005) 13. : Redundant function of REV-ERVα and β non-essential role of Bmal1 cycling in transcriptional regulation of intracelluar circadian rhythms. PLoS Genetics 4(2), e10000023 (2008) Roles of RORα on Transcriptional Expressions 23 14. : A model of the cell-autonomous mammalian circadian clock. Proc. Natl. Acad. Sci. USA 106, 11107–11112 (2009) 15. : The interplay of cis-regulatory elements rules circadian rhythms in mouse liver. PLOS ONE 7(11), e46835 (2012) 16.

F. ) BSB 2010. LNCS (LNBI), vol. 6268, pp. 47–58. Springer, Heidelberg (2010) 7. : A linear-time algorithm for the perfect phylogeny haplotyping (PPH) problem. , Waterman, M. ) RECOMB 2005. LNCS (LNBI), vol. 3500, pp. 585–600. Springer, Heidelberg (2005) 8. : Inference of haplotypes from samples of diploids populations: Complexity and algorithms. Journal of Computational Biology 8, 305–324 (2001) HybHap: A Fast and Accurate Hybrid Approach 35 9. : Haplotype inference by pure parsimony. , Crochemore, M.

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