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A Performance Evaluation of a Local DNA Sequence Alignment Algorithm on a Cluster of Workstations.

, , , , , and . IPDPS, IEEE Computer Society, (2004)

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Exact Parallel Alignment of megabase genomic Sequences with Tunable Work Distribution., , , , and . Int. J. Found. Comput. Sci., 23 (2): 407-429 (2012)Local DNA Sequence Alignment in a Cluster ofWorkstations: Algorithms and Tools., , , , and . J. Braz. Comput. Soc., 10 (2): 73-80 (2004)Computing Binary Space Partition Trees using a Scope Consistent DSM System in a Cluster of Workstations., , and . PDP, page 93-100. IEEE Computer Society, (2003)A Performance Evaluation of a Local DNA Sequence Alignment Algorithm on a Cluster of Workstations., , , , , and . IPDPS, IEEE Computer Society, (2004)Exact pairwise alignment of megabase genome biological sequences using a novel z-align parallel strategy., , and . IPDPS, page 1-8. IEEE, (2009)Comparing Two Long Biological Sequences Using a DSM System., , , , , , and . Euro-Par, volume 2790 of Lecture Notes in Computer Science, page 517-524. Springer, (2003)A parallel strategy for biological sequence alignment in restricted memory space., , and . J. Parallel Distributed Comput., 68 (4): 548-561 (2008)Parallel DNA Sequence Alignment Using a DSM System in a Cluster of Workstations., , , and . International Conference on Computational Science, volume 2658 of Lecture Notes in Computer Science, page 981-990. Springer, (2003)Z-align: An Exact and Parallel Strategy for Local Biological Sequence Alignment in User-Restricted Memory Space., and . CLUSTER, IEEE Computer Society, (2006)Using a DSM application to locally align DNA sequences., , , and . CCGRID, page 372-378. IEEE Computer Society, (2004)