 | 2012 |
| 23 |  | 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) |
| 22 |  | 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) |
| 2011 |
| 21 |  | Antonio Mucherino,
Carlile Lavor,
Leo Liberti:
A symmetry-driven BP algorithm for the Discretizable Molecular Distance Geometry Problem.
BIBM Workshops 2011: 390-395 |
| 20 |  | 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 |
| 19 |  | Leo Liberti,
Benoît Masson,
Carlile Lavor,
Antonio Mucherino:
Branch-and-Prune trees with bounded width.
CTW 2011: 189-193 |
| 18 |  | Antonio Mucherino,
Inken Wohlers,
Gunnar W. Klau,
Rumen Andonov:
Sparsifying Distance Matrices for Protein-Protein Structure Alignments.
CTW 2011: 211-214 |
| 17 |  | Antonio Mucherino:
Extending the definition of beta-consistent biclustering for feature selection.
FedCSIS 2011: 269-274 |
| 16 |  | Antonio Mucherino,
Georg Ruß:
Recent Developments in Data Mining and Agriculture.
Industrial Conference on Data Mining - Workshops 2011: 90-98 |
| 15 |  | 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 |
| 14 |  | Leo Liberti,
Carlile Lavor,
Benoît Masson,
Antonio Mucherino:
Polynomial cases of the Discretizable Molecular Distance Geometry Problem
CoRR abs/1103.1264: (2011) |
| 13 |  | 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) |
| 2010 |
| 12 |  | 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 |
| 11 |  | Antonio Mucherino,
Leo Liberti,
Carlile Lavor:
MD-jeep: An Implementation of a Branch and Prune Algorithm for Distance Geometry Problems.
ICMS 2010: 186-197 |
| 10 |  | Antonio Mucherino,
Alejandra Urtubia:
Consistent Biclustering and Applications to Agriculture.
Industrial Conference on Data Mining - Workshops 2010: 105-113 |
| 9 |  | Antonio Mucherino,
Sonia Cafieri:
A New Heuristic for Feature Selection by Consistent Biclustering
CoRR abs/1003.3279: (2010) |
| 8 |  | 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) |
| 2009 |
| 7 |  | Sonia Cafieri,
Antonio Mucherino,
Giacomo Nannicini,
Fabien Tarissan,
Leo Liberti:
Proceedings of the 8th Cologne-Twente Workshop on Graphs and Combinatorial Optimization, CTW 2009, Paris, France, June 2-4 2009
CTW 2009 |
| 6 |  | Antonio Mucherino,
Carlile Lavor,
Nelson Maculan:
The Molecular Distance Geometry Problem Applied to Protein Conformations.
CTW 2009: 337-340 |
| 5 |  | 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 |
| 4 |  | Carlile Lavor,
Antonio Mucherino,
Leo Liberti,
Nelson Maculan:
Computing artificial backbones of hydrogen atoms in order to discover protein backbones.
IMCSIT 2009: 759-764 |
| 3 |  | Carlile Lavor,
Leo Liberti,
Antonio Mucherino,
Nelson Maculan:
On a discretizable subclass of instances of the molecular distance geometry problem.
SAC 2009: 804-805 |
| 2 |  | Antonio Mucherino,
Petraq Papajorgji,
Panos M. Pardalos:
A survey of data mining techniques applied to agriculture.
Operational Research 9(2): 121-140 (2009) |
| 2008 |
| 1 |  | Antonio Mucherino,
Susan Costantini,
Daniela di Serafino,
Marco D'Apuzzo,
Angelo M. Facchiano,
Giovanni Colonna:
Understanding the role of the topology in protein folding by computational inverse folding experiments.
Computational Biology and Chemistry 32(4): 233-239 (2008) |