Voir la notice de l'article provenant de la source Library of Science
@article{IJAMCS_2008_18_2_a11, author = {Kukluk, J. P. and Holder, L. B. and Cook, D. J.}, title = {Inferring graph grammars by detecting overlap in frequent subgraphs}, journal = {International Journal of Applied Mathematics and Computer Science}, pages = {241--250}, publisher = {mathdoc}, volume = {18}, number = {2}, year = {2008}, language = {en}, url = {http://geodesic.mathdoc.fr/item/IJAMCS_2008_18_2_a11/} }
TY - JOUR AU - Kukluk, J. P. AU - Holder, L. B. AU - Cook, D. J. TI - Inferring graph grammars by detecting overlap in frequent subgraphs JO - International Journal of Applied Mathematics and Computer Science PY - 2008 SP - 241 EP - 250 VL - 18 IS - 2 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/IJAMCS_2008_18_2_a11/ LA - en ID - IJAMCS_2008_18_2_a11 ER -
%0 Journal Article %A Kukluk, J. P. %A Holder, L. B. %A Cook, D. J. %T Inferring graph grammars by detecting overlap in frequent subgraphs %J International Journal of Applied Mathematics and Computer Science %D 2008 %P 241-250 %V 18 %N 2 %I mathdoc %U http://geodesic.mathdoc.fr/item/IJAMCS_2008_18_2_a11/ %G en %F IJAMCS_2008_18_2_a11
Kukluk, J. P.; Holder, L. B.; Cook, D. J. Inferring graph grammars by detecting overlap in frequent subgraphs. International Journal of Applied Mathematics and Computer Science, Tome 18 (2008) no. 2, pp. 241-250. http://geodesic.mathdoc.fr/item/IJAMCS_2008_18_2_a11/
[1] Ates K., Kukluk J., Holder L., Cook D. and Zhang K. (2006). Graph grammar induction on structural data for visual programming, Proceedings of the Conference Tools with Artificial Intelligence, Washington DC, USA, pp. 232-242.
[2] Chomsky N. (1956). Three models of language, IRE Transactions on Information Theory 2(3): 113-124.
[3] Cook D. and Holder L. (1994). Substructure discovery using minimum description length and background knowledge, Journal of Artificial Intelligence Research 1: 231-255.
[4] Cook D. and Holder L. (2000). Graph-based data mining, IEEE Intelligent Systems 15(2): 32-41.
[5] Jeltsch E. and Kreowski H. (1990). Grammatical inference based on hyperedge replacement. Graph-Grammars, Lecture Notes in Computer Science 532: 461-474.
[6] Jonyer I., Holder L. and Cook C. (2002). Concept formation using graph grammars, Proceedings of the KDD Workshop on Multi-Relational Data Mining, Edmonton, Alberta, Canada, pp. 71-79.
[7] Jonyer I., Holder L. and Cook D. (2004). MDL-based contextfree graph grammar induction and applications, International Journal of Artificial Intelligence Tools, 13(1): 65-79.
[8] Kanehisa M., Goto S., Hattori M., Aoki-Kinoshita K.F., Itoh M., Kawashima S., Katayama T., Araki M. and Hirakawa M. (2006). From genomics to chemical genomics: New developments in KEGG, Nucleic Acids Res. 34: D354-357.
[9] Kukluk J., Holder L. and Cook D. (2006). Inference of node replacement recursive graph grammars, Proceedings of the 6-th SIAM International Conference on Data Mining, Washington, USA, pp. 544-548.
[10] Kukluk J., Hun You C., Holder L. and Cook D. (2007). Learning node replacement graph grammars in metabolic pathways, International Conference on Bioinformatics Computational Biology, (BIOCOMP'07), Las Vegas, NV, USA, pp. 44-50.
[11] Kuramochi M. and Karypis G. (2001). Frequent subgraph discovery, Proceedings of the IEEE 2001 International Conference on Data Mining (ICDM '01), San Jose, CA, USA, pp. 313-320.
[12] Neidle S. (Ed.) (1999). Oxford Handbook of Nucleic Acid Structure, Oxford, Oxford University Press.
[13] Nevill-Manning G. and Witten H. (1997). Identifying hierarchical structure in sequences: A linear-time algorithm, Journal of Artificial Intelligence Research, 7: 67-82.
[14] Phan A., Kuryavyi V., Ma J., Faure A., Andreola M. and Patel D. (2005). An interlocked dimeric parallel-stranded DNA quadruplex: A potent inhibitor of HIV-1 integrase, Proceedings of the National Academy of Sciences 102(3): 634-639.
[15] Oates T., Doshi S. and Huang F. (2003). Estimating maximum likelihood parameters for stochastic context-free graph grammars, Lecture Notes in Artificial Intelligence 2835: 281-298.
[16] Rissanen J. (1989). Stochastic Complexity in Statistical Inquiry. World Scientific Company.
[17] Yan X. and Han J., gSpan (2002): Graph-based substructure pattern mining, Proceedings of the IEEE International Conference on Data Mining, Maebashi City, Japan, pp. 721-724.