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Oculus: faster sequence alignment by streaming read compression.

Brendan A Veeneman | Matthew K Iyer | Arul M Chinnaiyan
BMC bioinformatics | 2012

Despite significant advancement in alignment algorithms, the exponential growth of nucleotide sequencing throughput threatens to outpace bioinformatic analysis. Computation may become the bottleneck of genome analysis if growing alignment costs are not mitigated by further improvement in algorithms. Much gain has been gleaned from indexing and compressing alignment databases, but many widely used alignment tools process input reads sequentially and are oblivious to any underlying redundancy in the reads themselves.

Pubmed ID: 23148484

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Associated grants

  • Agency: Howard Hughes Medical Institute, United States

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This is a list of tools and resources that we have found mentioned in this publication.


Google Code (tool)

RRID:SCR_005786

Developer tools, APIs and resources. Search developers.google.com and code.google.com.

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ChIP-seq (tool)

RRID:SCR_001237

Set of software modules for performing common ChIP-seq data analysis tasks across the whole genome, including positional correlation analysis, peak detection, and genome partitioning into signal-rich and signal-poor regions. The tools are designed to be simple, fast and highly modular. Each program carries out a well defined data processing procedure that can potentially fit into a pipeline framework. ChIP-Seq is also freely available on a Web interface.

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