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High Performance Computational Methods for Biological Sequence Analysis
by T. Yap Ophir Frieder R. Martino
High Performance Computational Methods for Biological Sequence Analysis presents
biological sequence analysis using an interdisciplinary approach that integrates biological,
mathematical and computational concepts. These concepts are presented so that computer scientists
and biomedical scientists can obtain the necessary background for developing better algorithms and
applying parallel computational methods. This book will enable both groups to develop the depth of
knowledge needed to work in this interdisciplinary field.
This work focuses on high performance computational approaches that are used to perform computationally
intensive biological sequence analysis tasks: pairwise sequence comparison, multiple sequence alignment,
and sequence similarity searching in large databases. These computational methods are becoming increasingly
important to the molecular biology community allowing researchers to explore the increasingly large amounts
of sequence data generated by the Human Genome Project and other related biological projects. The approaches
presented by the authors are state-of-the-art and show how to reduce analysis times significantly,
sometimes from days to minutes.
High Performance Computational Methods for Biological Sequence Analysis is tremendously important to
biomedical science students and researchers who are interested in applying sequence analyses to their
studies, and to computational science students and researchers who are interested in applying new
computational approaches to biological sequence analyses.
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