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Serge A. Hazout
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Journal Articles
- 2006
- [j19]Jean-Christophe Gelly, Alexandre G. de Brevern, Serge A. Hazout:
'Protein Peeling': an approach for splitting a 3D protein structure into compact fragments. Bioinform. 22(2): 129-133 (2006) - [j18]Gaëlle Lelandais, Pierre Vincens, Anne Badel-Chagnon, Stéphane Vialette, Claude Jacq, Serge A. Hazout:
Comparing gene expression networks in a multi-dimensional space to extract similarities and differences between organisms. Bioinform. 22(11): 1359-1366 (2006) - [j17]Jean-Christophe Gelly, Catherine Etchebest, Serge A. Hazout, Alexandre G. de Brevern:
Protein Peeling 2: a web server to convert protein structures into series of protein units. Nucleic Acids Res. 34(Web-Server-Issue): 75-78 (2006) - 2004
- [j16]Alexandre G. de Brevern, Serge A. Hazout, Alain Malpertuy:
Influence of microarrays experiments missing values on the stability of gene groups by hierarchical clustering. BMC Bioinform. 5: 114 (2004) - [j15]Alexandre G. de Brevern, Cristina Benros, Romain Gautier, Hélène Valadié, Serge A. Hazout, Catherine Etchebest:
Local backbone structure prediction of proteins. Silico Biol. 4(3): 381-386 (2004) - 2003
- [j14]Alexandre G. de Brevern, Serge A. Hazout:
'Hybrid Protein Model' for optimally defining 3D protein structure fragments. Bioinform. 19(3): 345-353 (2003) - 2002
- [j13]Pierre Vincens, Anne Badel-Chagnon, Cécile André, Serge A. Hazout:
D-ASSIRC: distributed program for finding sequence similarities in genomes. Bioinform. 18(3): 446-451 (2002) - [j12]Alexandre G. de Brevern, France Loirat, Anne Badel-Chagnon, Cécile André, Pierre Vincens, Serge A. Hazout:
Genome Compartimentation by a Hybrid Chromosome Model (HM). Application to Saccharomyces Cerevisae Subtelomeres. Comput. Chem. 26(5): 437-445 (2002) - 2001
- [j11]Cécile André, Pierre Vincens, Jean-François Boisvieux, Serge A. Hazout:
MOSAIC: segmenting multiple aligned DNA sequences. Bioinform. 17(1): 196-197 (2001) - 1999
- [j10]Marie-Hélène Mucchielli-Giorgi, Serge A. Hazout, Pierre Tufféry:
PredAcc: prediction of solvent accessibility. Bioinform. 15(2): 176-177 (1999) - 1998
- [j9]Pierre Vincens, L. Buffat, Cécile André, Jean-Paul Chevrolat, Jean-François Boisvieux, Serge A. Hazout:
A strategy for finding regions of similarity in complete genome sequences. Bioinform. 14(8): 715-725 (1998) - 1997
- [j8]S. Goldberg, P. Ferrand, N. Q. Nguyen, Jean-François Boisvieux, Serge A. Hazout:
Bi-dimensional scaling map (BDS-Map): an approach for building large genetic maps. Comput. Appl. Biosci. 13(5): 497-508 (1997) - 1994
- [j7]Lucien Leboucher, Theano Irinopoulou, Serge A. Hazout:
Grey-tone skeletons of elongated objects using the concept of morphological automaton. Application to images of DNA molecules. Pattern Recognit. Lett. 15(3): 309-315 (1994) - 1993
- [j6]Pierre Tufféry, Catherine Etchebest, Serge A. Hazout, Richard Lavery:
A critical comparison of search algorithms applied to the optimization of protein side-chain conformations. J. Comput. Chem. 14(7): 790-798 (1993) - 1992
- [j5]Colombe Chappey, Serge A. Hazout:
A method for delineating structurally homogeneous regions in protein sequences. Comput. Appl. Biosci. 8(3): 255-260 (1992) - 1991
- [j4]Colombe Chappey, A. Danckaert, Philippe Dessen, Serge A. Hazout:
MASH: an interactive program for multiple alignment and consensus sequence construction for biological sequences. Comput. Appl. Biosci. 7(2): 195-202 (1991) - [j3]A. Danckaert, Colombe Chappey, Serge A. Hazout:
'Size leap' algorithm: an efficient extraction of the longest common motifs from a molecular sequence set. Application to the DNA sequence reconstruction. Comput. Appl. Biosci. 7(4): 509-513 (1991) - [j2]Serge A. Hazout, N. Q. Nguyen:
Image analysis by morphological automata. Pattern Recognit. 24(5): 401-408 (1991) - 1988
- [j1]Pierre Tufféry, Philippe Dessen, C. Mugnier, Serge A. Hazout:
Restriction map construction using a 'complete sentences compatibility' algorithm. Comput. Appl. Biosci. 4(1): 103-110 (1988)
Conference and Workshop Papers
- 2003
- [c2]Cristina Benros, Alexandre G. de Brevern, Serge A. Hazout:
Hybrid protein model (HPM): a method for building a library of overlapping local structural prototypes. Sensitivity study and improvements of the training. NNSP 2003: 53-70 - 2000
- [c1]Alexandre G. de Brevern, Serge A. Hazout:
Hybrid Protein Model (HPM): A Method to Compact Protein 3D-Structure Information and Physicochemical Properties. SPIRE 2000: 49-54
Coauthor Index
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