Computation of Median Gene Clusters

Böcker S, Jahn K, Mixtacki J, Stoye J (2009)
Journal of Computational Biology 16(8): 1085-1099.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Böcker, Sebastian; Jahn, KatharinaUniBi; Mixtacki, Julia; Stoye, JensUniBi
Erscheinungsjahr
2009
Zeitschriftentitel
Journal of Computational Biology
Band
16
Ausgabe
8
Seite(n)
1085-1099
ISSN
1066-5277
eISSN
1557-8666
Page URI
https://pub.uni-bielefeld.de/record/1898105

Zitieren

Böcker S, Jahn K, Mixtacki J, Stoye J. Computation of Median Gene Clusters. Journal of Computational Biology. 2009;16(8):1085-1099.
Böcker, S., Jahn, K., Mixtacki, J., & Stoye, J. (2009). Computation of Median Gene Clusters. Journal of Computational Biology, 16(8), 1085-1099. https://doi.org/10.1089/cmb.2009.0098
Böcker, Sebastian, Jahn, Katharina, Mixtacki, Julia, and Stoye, Jens. 2009. “Computation of Median Gene Clusters”. Journal of Computational Biology 16 (8): 1085-1099.
Böcker, S., Jahn, K., Mixtacki, J., and Stoye, J. (2009). Computation of Median Gene Clusters. Journal of Computational Biology 16, 1085-1099.
Böcker, S., et al., 2009. Computation of Median Gene Clusters. Journal of Computational Biology, 16(8), p 1085-1099.
S. Böcker, et al., “Computation of Median Gene Clusters”, Journal of Computational Biology, vol. 16, 2009, pp. 1085-1099.
Böcker, S., Jahn, K., Mixtacki, J., Stoye, J.: Computation of Median Gene Clusters. Journal of Computational Biology. 16, 1085-1099 (2009).
Böcker, Sebastian, Jahn, Katharina, Mixtacki, Julia, and Stoye, Jens. “Computation of Median Gene Clusters”. Journal of Computational Biology 16.8 (2009): 1085-1099.

13 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Finding approximate gene clusters with Gecko 3.
Winter S, Jahn K, Wehner S, Kuchenbecker L, Marz M, Stoye J, Böcker S., Nucleic Acids Res 44(20), 2016
PMID: 27679480
Constructing a Gene Team Tree in Almost O (n lg n) Time.
Wang BF, Lin CH, Yang IT., IEEE/ACM Trans Comput Biol Bioinform 11(1), 2014
PMID: 26355514
Gene expansion shapes genome architecture in the human pathogen Lichtheimia corymbifera: an evolutionary genomics analysis in the ancient terrestrial mucorales (Mucoromycotina).
Schwartze VU, Winter S, Shelest E, Marcet-Houben M, Horn F, Wehner S, Linde J, Valiante V, Sammeth M, Riege K, Nowrousian M, Kaerger K, Jacobsen ID, Marz M, Brakhage AA, Gabaldón T, Böcker S, Voigt K., PLoS Genet 10(8), 2014
PMID: 25121733
Identifying gene clusters by discovering common intervals in indeterminate strings.
Doerr D, Stoye J, Böcker S, Jahn K., BMC Genomics 15 Suppl 6(), 2014
PMID: 25571793
Statistics for approximate gene clusters.
Jahn K, Winter S, Stoye J, Böcker S., BMC Bioinformatics 14 Suppl 15(), 2013
PMID: 24564620
Gene family assignment-free comparative genomics.
Doerr D, Thévenin A, Stoye J., BMC Bioinformatics 13 Suppl 19(), 2012
PMID: 23281826
Swiftly computing center strings.
Hufsky F, Kuchenbecker L, Jahn K, Stoye J, Böcker S., BMC Bioinformatics 12(), 2011
PMID: 21504573
Consistency of sequence-based gene clusters.
Wittler R, Maňuch J, Patterson M, Stoye J., J Comput Biol 18(9), 2011
PMID: 21899413
Finding nested common intervals efficiently.
Blin G, Faye D, Stoye J., J Comput Biol 17(9), 2010
PMID: 20874403

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Daten bereitgestellt von Europe PubMed Central.


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