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AppendicitisScan Tool: A New Tool for the Efficient Classification of Childhood Abdominal Pain Clinical Cases Using Machine Learning Tools.

, , , and . EANN (2), volume 384 of Communications in Computer and Information Science, page 110-118. Springer, (2013)

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Development of advanced computational intelligence models for complex bioinformatics and biosignal processing applications. University of Patras, Greece, (2002)National Archive of PhD Theses: oai:10442/26399.The Supervised Network Self-Organizing Map for Classification of Large Data Sets., , , , and . Appl. Intell., 16 (3): 185-203 (2002)The software architecture for performing scientific computation with the JLAPACK libraries in ScalaLab., , , and . Sci. Program., 20 (4): 379-391 (2012)A New Framework for Bridging the Gap from Protein-Protein Interactions to Biological Process Interactions., , , , and . AIAI Workshops, volume 437 of IFIP Advances in Information and Communication Technology, page 196-204. Springer, (2014)Enhanced Weighted Restricted Neighborhood Search Clustering: A Novel Algorithm for Detecting Human Protein Complexes from Weighted Protein-Protein Interaction Graphs., , , , and . EANN (2), volume 384 of Communications in Computer and Information Science, page 231-240. Springer, (2013)A Probabilistic Symmetric Encryption Scheme for Very Fast Secure Communication Based on Chaotic Systems of difference equations., , , and . Int. J. Bifurc. Chaos, 11 (12): 3107-3116 (2001)The Human Interactome Knowledge Base (HINT-KB): an integrative human protein interaction database enriched with predicted protein-protein interaction scores using a novel hybrid technique., , , , , , , and . Artif. Intell. Rev., 42 (3): 427-443 (2014)Gene expression data analysis with a dynamically extended self-organized map that exploits class information., , and . Bioinform., 18 (11): 1446-1453 (2002)Predicting protein complexes from weighted protein-protein interaction graphs with a novel unsupervised methodology: Evolutionary enhanced Markov clustering., , , , , , , and . Artif. Intell. Medicine, 63 (3): 181-189 (2015)ScalaLab and GroovyLab: Comparing Scala and Groovy for Scientific Computing., , , , and . Sci. Program., (2015)