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Marcel Turcotte
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2020 – today
- 2023
- [j14]Kevin Sutanto, Marcel Turcotte:
Assessing Global-Local Secondary Structure Fingerprints to Classify RNA Sequences With Deep Learning. IEEE ACM Trans. Comput. Biol. Bioinform. 20(5): 2736-2747 (2023) - 2021
- [j13]Aseel Awdeh, Marcel Turcotte, Theodore J. Perkins:
WACS: improving ChIP-seq peak calling by optimally weighting controls. BMC Bioinform. 22(1): 69 (2021) - [c13]Kevin Sutanto, Marcel Turcotte:
Extracting and Evaluating Features from RNA Virus Sequences to Predict Host Species Susceptibility Using Deep Learning. ICBBT 2021: 81-89 - 2020
- [c12]Kevin Sutanto, Marcel Turcotte:
Assessing the Use of Secondary Structure Fingerprints and Deep Learning to Classify RNA Sequences. BIBM 2020: 42-49
2010 – 2019
- 2016
- [c11]Manuel Belmadani, Marcel Turcotte:
MotifGP: Using multi-objective evolutionary computing for mining network expressions in DNA sequences. CIBCB 2016: 1-6 - 2014
- [j12]Alex R. Gawronski, Marcel Turcotte:
RiboFSM: Frequent subgraph mining for the discovery of RNA structures and interactions. BMC Bioinform. 15(S-13): S2 (2014) - [j11]Ghada Hany Badr, Isra Al-Turaiki, Marcel Turcotte, Hassan Mathkour:
IncMD: Incremental trie-based structural motif discovery algorithm. J. Bioinform. Comput. Biol. 12(5) (2014) - 2012
- [c10]Oksana Korol, Marcel Turcotte:
Learning relationships between over-represented motifs in a set of DNA sequences. CIBCB 2012: 144-149 - 2011
- [j10]Mikhail Jiline, Stan Matwin, Marcel Turcotte:
Annotation concept synthesis and enrichment analysis: a logic-based approach to the interpretation of high-throughput experiments. Bioinform. 27(17): 2391-2398 (2011) - [c9]Ghada Badr, Marcel Turcotte:
Component-Based Matching for Multiple Interacting RNA Sequences. ISBRA 2011: 73-86 - 2010
- [c8]Mikhail Jiline, Stan Matwin, Marcel Turcotte:
Annotation Concept Synthesis and Enrichment Analysis. Canadian AI 2010: 304-308
2000 – 2009
- 2007
- [j9]Amelia B. Bellamy-Royds, Marcel Turcotte:
Can Clustal-style progressive pairwise alignment of multiple sequences be used in RNA secondary structure prediction? BMC Bioinform. 8 (2007) - [j8]Victor X. Jin, Marcel Turcotte:
Detecting Localized Interspersed Motifs in Genomic Sequences. IEEE Trans. Instrum. Meas. 56(5): 1770-1775 (2007) - [c7]Étienne Ogoubi, Abdelhakim Hafid, Marcel Turcotte:
An Isometric on on-Chip Multiprocessor Architecture. ICECS 2007: 991-994 - [c6]Étienne Ogoubi, David Pouliot, Marcel Turcotte, Abdelhakim Hafid:
Parallel Multiprocessor Approaches to the RNA Folding Problem. PPAM 2007: 1230-1239 - 2006
- [j7]Mohammad Anwar, Truong Nguyen, Marcel Turcotte:
Identification of consensus RNA secondary structures using suffix arrays. BMC Bioinform. 7: 244 (2006) - [c5]Mohammad Anwar, Marcel Turcotte:
An Approach to Selecting Putative RNA Motifs Using MDL Principle. BIOCOMP 2006: 560-569 - [c4]Mohammad Anwar, Marcel Turcotte:
Evaluation of RNA Secondary Structure Motifs using Regression Analysis. CCECE 2006: 1747-1752 - 2005
- [j6]Beeta Masoumi, Marcel Turcotte:
Simultaneous alignment and structure prediction of three RNA sequences. Int. J. Bioinform. Res. Appl. 1(2): 230-245 (2005) - [c3]Beeta Masoumi, Marcel Turcotte:
Simultaneous Alignment and Structure Prediction of RNAs. International Conference on Computational Science (2) 2005: 936-943 - 2002
- [j5]Marcel Turcotte, Stephen H. Muggleton, Michael J. E. Sternberg:
Generating Protein Three-dimensional Fold Signatures using Inductive Logic Programming. Comput. Chem. 26(1): 57-64 (2002) - 2001
- [j4]Marcel Turcotte, Stephen H. Muggleton, Michael J. E. Sternberg:
The Effect of Relational Background Knowledge on Learning of Protein Three-Dimensional Fold Signatures. Mach. Learn. 43(1/2): 81-95 (2001) - 2000
- [j3]Marcel Turcotte, Stephen H. Muggleton, Michael J. E. Sternberg:
Use of Inductive Logic Programming to Learn Principles of Protein Structure. Electron. Trans. Artif. Intell. 4(B): 119-124 (2000)
1990 – 1999
- 1998
- [c2]Marcel Turcotte, Stephen H. Muggleton, Michael J. E. Sternberg:
Application of Inductive Logic Programming to Discover Rules Governing the Three-Dimensional Topology of Protein Structure. ILP 1998: 53-64 - 1995
- [j2]Marcel Turcotte, Guy Lapalme, François Major:
Exploring the Conformations of Nucleic Acids. J. Funct. Program. 5(3): 443-460 (1995) - 1994
- [j1]Marc Feeley, Marcel Turcotte, Guy Lapalme:
Using Multilisp for Solving Constraint Satisfaction Problems: An Application to Nucleic Acid 3D Structure Determination. LISP Symb. Comput. 7(2-3): 231-247 (1994) - 1993
- [c1]François Major, Marcel Turcotte, Guy Lapalme:
Constraint Satisfaction in Functional Programming. PPCP 1993: 174-177
Coauthor Index
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