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Carlile Lavor
2010 – today
- 2013
[j15]Silas Sallaume, Simone de Lima Martins, Luiz Satoru Ochi, Warley Gramacho Da Silva, Carlile Lavor, Leo Liberti: A discrete search algorithm for finding the structure of protein backbones and side chains. IJBRA 9(3): 261-270 (2013)- 2012
[j14]Carlile Lavor, Leo Liberti, Nelson Maculan, Antonio Mucherino: The discretizable molecular distance geometry problem. Comp. Opt. and Appl. 52(1): 115-146 (2012)
[j13]Carlile Lavor, Leo Liberti, Nelson Maculan, Antonio Mucherino: Recent advances on the Discretizable Molecular Distance Geometry Problem. European Journal of Operational Research 219(3): 698-706 (2012)
[j12]Antonio Mucherino, Carlile Lavor, Leo Liberti: Exploiting Symmetry Properties of the Discretizable molecular Distance Geometry Problem. J. Bioinformatics and Computational Biology 10(3) (2012)
[j11]Carlile Lavor, Jon Lee, Audrey Lee-St. John, Leo Liberti, Antonio Mucherino, Maxim Sviridenko: Discretization orders for distance geometry problems. Optimization Letters 6(4): 783-796 (2012)
[j10]Antonio Mucherino, Carlile Lavor, Leo Liberti: The discretizable distance geometry problem. Optimization Letters 6(8): 1671-1686 (2012)
[j9]Douglas S. Gonçalves, Márcia A. Gomes-Ruggiero, Carlile Lavor, Osvaldo Jiménez Farias, P. H. Souto Ribeiro: Local solutions of maximum likelihood estimation in quantum state tomography. Quantum Information & Computation 12(9-10): 775-790 (2012)
[c13]Virginia Costa, Antonio Mucherino, Carlile Lavor, Luiz Mariano Carvalho, Nelson Maculan: On suitable orders for discretizing Molecular Distance Geometry Problems related to protein side chains. FedCSIS 2012: 379-384
[c12]Warley Gramacho, Antonio Mucherino, Carlile Lavor, Nelson Maculan: A Parallel BP Algorithm for the Discretizable Distance Geometry Problem. IPDPS Workshops 2012: 1762-1768- 2011
[j8]Carlile Lavor, Antonio Mucherino, Leo Liberti, Nelson Maculan: On the computation of protein backbones by using artificial backbones of hydrogens. J. Global Optimization 50(2): 329-344 (2011)
[j7]Michael Souza, Adilson Elias Xavier, Carlile Lavor, Nelson Maculan: Hyperbolic smoothing and penalty techniques applied to molecular structure determination. Oper. Res. Lett. 39(6): 461-465 (2011)
[c11]Antonio Mucherino, Carlile Lavor, Leo Liberti: A symmetry-driven BP algorithm for the Discretizable Molecular Distance Geometry Problem. BIBM Workshops 2011: 390-395
[c10]Leo Liberti, Benoît Masson, Jon Lee, Carlile Lavor, Antonio Mucherino: On the Number of Solutions of the Discretizable Molecular Distance Geometry Problem. COCOA 2011: 322-342
[c9]Leo Liberti, Benoît Masson, Carlile Lavor, Antonio Mucherino: Branch-and-Prune trees with bounded width. CTW 2011: 189-193
[c8]Antonio Mucherino, Carlile Lavor, Therese E. Malliavin, Leo Liberti, Michael Nilges, Nelson Maculan: Influence of Pruning Devices on the Solution of Molecular Distance Geometry Problems. SEA 2011: 206-217
[i2]Leo Liberti, Carlile Lavor, Benoît Masson, Antonio Mucherino: Polynomial cases of the Discretizable Molecular Distance Geometry Problem. CoRR abs/1103.1264 (2011)- 2010
[c7]Antonio Mucherino, Carlile Lavor, Leo Liberti, E.-G. Talbi: A parallel version of the Branch & Prune algorithm for the Molecular Distance Geometry Problem. AICCSA 2010: 1-6
[c6]Antonio Mucherino, Leo Liberti, Carlile Lavor: MD-jeep: An Implementation of a Branch and Prune Algorithm for Distance Geometry Problems. ICMS 2010: 186-197
[i1]Leo Liberti, Benoît Masson, Jon Lee, Carlile Lavor, Antonio Mucherino: On the number of solutions of the discretizable molecular distance geometry problem. CoRR abs/1010.1834 (2010)
2000 – 2009
- 2009
[j6]Leo Liberti, Carlile Lavor, Nelson Maculan, Marco Antonio Chaer Nascimento: Reformulation in mathematical programming: An application to quantum chemistry. Discrete Applied Mathematics 157(6): 1309-1318 (2009)
[j5]Leo Liberti, Carlile Lavor, Nelson Maculan, Fabrizio Marinelli: Double variable neighbourhood search with smoothing for the molecular distance geometry problem. J. Global Optimization 43(2-3): 207-218 (2009)
[c5]Antonio Mucherino, Carlile Lavor, Nelson Maculan: The Molecular Distance Geometry Problem Applied to Protein Conformations. CTW 2009: 337-340
[c4]Antonio Mucherino, Leo Liberti, Carlile Lavor, Nelson Maculan: Comparisons between an exact and a metaheuristic algorithm for the molecular distance geometry problem. GECCO 2009: 333-340
[c3]Carlile Lavor, Antonio Mucherino, Leo Liberti, Nelson Maculan: Computing artificial backbones of hydrogen atoms in order to discover protein backbones. IMCSIT 2009: 759-764
[c2]Carlile Lavor, Leo Liberti, Antonio Mucherino, Nelson Maculan: On a discretizable subclass of instances of the molecular distance geometry problem. SAC 2009: 804-805
[r1]Carlile Lavor, Leo Liberti, Nelson Maculan: Molecular Distance Geometry Problem. Encyclopedia of Optimization 2009: 2304-2311- 2008
[j4]Milan Drazic, Carlile Lavor, Nelson Maculan, Nenad Mladenovic: A continuous variable neighborhood search heuristic for finding the three-dimensional structure of a molecule. European Journal of Operational Research 185(3): 1265-1273 (2008)
[j3]Ricardo dos Santos Carvalho, Carlile Lavor, Fábio Protti: Extending the geometric build-up algorithm for the molecular distance geometry problem. Inf. Process. Lett. 108(4): 234-237 (2008)- 2005
[j2]Helio J. C. Barbosa, Carlile Lavor, Fernanda M. P. Raupp: A GA-Simplex Hybrid Algorithm for Global Minimization of Molecular Potential Energy Functions. Annals OR 138(1): 189-202 (2005)- 2004
[j1]Carlile Lavor, Nelson Maculan: A Function to Test Methods Applied to Global Minimization of Potential Energy of Molecules. Numerical Algorithms 35(2-4): 287-300 (2004)- 2000
[c1]Helio J. C. Barbosa, Fernanda M. P. Raupp, Carlile Lavor, H. Lima, Nelson Maculan: A Hybrid Genetic Algorithm for Finding Stable Conformations of Small Molecules. SBRN 2000: 90-94
Coauthor Index
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last updated on 2013-06-11 12:19 CEST by the dblp team



