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Titlebook: Bioinformatics and Computational Biology; First International Sanguthevar Rajasekaran Conference proceedings 2009 Springer-Verlag Berlin H

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Die keramischen Dauermagnetwerkstoffe,a long time due to the high computational complexity it requires, pseudoknot is one type of RNA structures that has been given a lot of attention lately. Pseudoknot structures have functional importance since they appear, for example, in viral genome RNAs and ribozyme active sites. In this paper, we
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Herstellung keramischer Magnete,ng this assumption, the common interval appears to be a good candidate. For evidences, we propose herein an approach to compute the common intervals between two circular genomes that takes into account duplications. Its application on a concrete case, comparing E. coli and V. cholerae, is accurate.
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https://doi.org/10.1007/978-3-663-04879-4ion 3-D models of developing barley grains. Three-dimensional histological structures are resolved by reconstructing specimen from large stacks of serially sectioned material, which is a preliminary for the spatial assignment of key tissues in differentiation. By sampling and constructing models at
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The Morphology and Dynamics of Filaments biological process. Currently, several successful methods utilize Pearson Correlation Coefficient (PCC) based gene expression analysis across all samples in datasets. However, microarray datasets are fraught with spurious samples or samples of diverse origin, and many genes/proteins that function i
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The Morphology and Dynamics of Filamentsses that is not obtainable through experiment. However, large-scale MD simulations require access to multicore clusters or supercomputers that are not always available to all researchers. Recently, many have begun to explore the power of graphics processing units (GPUs) for various applications, suc
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Genotype and Haplotype Reconstruction from Low-Coverage Short Sequencing Reads. Coupled with continuously decreasing sequencing costs, HTS data provides opportunities to study genome structure, function, and evolution at an unprecedented scale, and is profoundly transforming biomedical research.
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