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» Comparative genome assembly
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BMCBI
2008
220views more  BMCBI 2008»
15 years 20 days ago
Gene prediction in metagenomic fragments: A large scale machine learning approach
Background: Metagenomics is an approach to the characterization of microbial genomes via the direct isolation of genomic sequences from the environment without prior cultivation. ...
Katharina J. Hoff, Maike Tech, Thomas Lingner, Rol...
BMCBI
2006
122views more  BMCBI 2006»
15 years 18 days ago
Genome comparison using Gene Ontology (GO) with statistical testing
Background: Automated comparison of complete sets of genes encoded in two genomes can provide insight on the genetic basis of differences in biological traits between species. Gen...
Zhaotao Cai, Xizeng Mao, Songgang Li, Liping Wei
76
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HICSS
2000
IEEE
110views Biometrics» more  HICSS 2000»
15 years 5 months ago
Reverse Compilation for Digital Signal Processors: A Working Example
We describe the implementation and use of a reverse compiler from Analog Devices 21xx assembler source to ANSI-C with optional use of the language extensions for the TMS320C6x pr...
Adrian Johnstone, Elizabeth Scott, Tim Womack
BMCBI
2010
102views more  BMCBI 2010»
15 years 20 days ago
Missing genes in the annotation of prokaryotic genomes
Background: Protein-coding gene detection in prokaryotic genomes is considered a much simpler problem than in intron-containing eukaryotic genomes. However there have been reports...
Andrew S. Warren, Jeremy S. Archuleta, Wu-chun Fen...
105
Voted
BMCBI
2008
125views more  BMCBI 2008»
15 years 20 days ago
A fast algorithm for the multiple genome rearrangement problem with weighted reversals and transpositions
Background: Due to recent progress in genome sequencing, more and more data for phylogenetic reconstruction based on rearrangement distances between genomes become available. Howe...
Martin Bader, Mohamed Ibrahim Abouelhoda, Enno Ohl...