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Flexible isoform-level differential expression analysis with Ballgown

Alyssa C. Frazee, Geo Pertea, Andrew E. Jaffe, Ben Langmead, Steven L. Salzberg, Jeffrey T. Leek
doi: https://doi.org/10.1101/003665
Alyssa C. Frazee
1Department of Biostatistics, Johns Hopkins Bloomberg School of Public Health
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Geo Pertea
2McKusick-Nathans Institute of Genetic Medicine, Johns Hopkins University School of Medicine
3Center for Computational Biology, Johns Hopkins University
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Andrew E. Jaffe
1Department of Biostatistics, Johns Hopkins Bloomberg School of Public Health
3Center for Computational Biology, Johns Hopkins University
4Lieber Institute for Brain Development, Johns Hopkins Medical Campus
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Ben Langmead
1Department of Biostatistics, Johns Hopkins Bloomberg School of Public Health
2McKusick-Nathans Institute of Genetic Medicine, Johns Hopkins University School of Medicine
3Center for Computational Biology, Johns Hopkins University
5Department of Computer Science, Johns Hopkins University
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Steven L. Salzberg
1Department of Biostatistics, Johns Hopkins Bloomberg School of Public Health
2McKusick-Nathans Institute of Genetic Medicine, Johns Hopkins University School of Medicine
3Center for Computational Biology, Johns Hopkins University
5Department of Computer Science, Johns Hopkins University
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Jeffrey T. Leek
1Department of Biostatistics, Johns Hopkins Bloomberg School of Public Health
3Center for Computational Biology, Johns Hopkins University
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  • For correspondence: jtleek@gmail.com
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Posted March 30, 2014.
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Flexible isoform-level differential expression analysis with Ballgown
Alyssa C. Frazee, Geo Pertea, Andrew E. Jaffe, Ben Langmead, Steven L. Salzberg, Jeffrey T. Leek
bioRxiv 003665; doi: https://doi.org/10.1101/003665
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Flexible isoform-level differential expression analysis with Ballgown
Alyssa C. Frazee, Geo Pertea, Andrew E. Jaffe, Ben Langmead, Steven L. Salzberg, Jeffrey T. Leek
bioRxiv 003665; doi: https://doi.org/10.1101/003665

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