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Titlebook: Bioinformatics Research and Applications; 9th International Sy Zhipeng Cai,Oliver Eulenstein,Daniel Schwartz Conference proceedings 2013 Sp

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,Tragfähigkeit und Wirkungsgrad,ifications are very different among different kinds of genomic feature categories (protein, RNA, pseudogene and transposon elements). These patterns can be used to distinguish the types of genomic features. DNA methylation and H3K4me3 methylation emerged as features with most discriminative power. F
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,Krankheitskonzepte bei Schlafstörungen,r on human chromosomes, we are able to identify 4 known disease related LCRs, and predict a few more possible novel LCRs. We also showed that existing tools designed for finding repeats in a genome, such RepeatScout and WindowMasker are not able to identify LCRs and tools designed for detecting SDs
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So sehen wir die Sache: Fallstudien,s with better log likelihood scores on a fixed, reasonable tree topology than the naïve approach to the PMA, which ignores the fact that branch lengths are linked across partitions. By re-analyzing a large empirical dataset, we show that phylogenies inferred under a PMA calculated by our heuristics
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https://doi.org/10.1007/978-3-0348-6137-3netic relatedness among DNA species using spectral alignments (MSA). MSA was formulated and solved as a network flow problem. It enables an accurate comparison of MS profiles and provides a direct evaluation of genetic distances between DNA molecules without invoking sequences. MSA may serve as accu
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0302-9743 comparative genomics and phylogenomics, molecular modeling and simulation, pattern discovery and classification, computational proteomics, population genetics, data mining and visualization, software tools and applications.978-3-642-38035-8978-3-642-38036-5Series ISSN 0302-9743 Series E-ISSN 1611-3349
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https://doi.org/10.1007/978-3-540-71860-4s of understanding animal sociality, from data collection (identifying individual animals from photographs by stripes and spots) to hypothesis formulation (by designing a novel computational framework for analysis of dynamic social networks).
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,Tragfähigkeit und Wirkungsgrad,ge of recent multicore and multiprocessor architectures. We present our particle-based system, detail the behaviour of our entities, and describe our parallel computing algorithms. Comparisons between simulations and theoretical results are exposed, as well as a performance evaluation of our algorithms.
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