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Three-dimensional protein structure prediction: Methods and computational strategies.

, , , and . Comput. Biol. Chem., (2014)

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Rosetta Ligand-Protein Docking with Self-Adaptive Differential Evolution., and . BIBE, page 23-30. IEEE, (2019)NIAS-Server: Neighbors Influence of Amino acids and Secondary Structures in Proteins., , and . J. Comput. Biol., 24 (3): 255-265 (2017)A Knowledge Based Differential Evolution Algorithm for Protein Structure Prediction., and . EvoApplications, volume 11454 of Lecture Notes in Computer Science, page 343-359. Springer, (2019)Evaluating the use of local search strategies for a memetic algorithm for the protein-ligand docking problem., , , and . SCCC, page 1-12. IEEE, (2017)A hybrid genetic algorithm for the 3-D protein structure prediction problem using a path-relinking strategy., , and . IEEE Congress on Evolutionary Computation, page 2709-2716. IEEE, (2011)D-BRKGA: A Distributed Biased Random-Key Genetic Algorithm., and . CEC, page 1398-1405. IEEE, (2017)A knowledge-based genetic algorithm to predict three-dimensional structures of polypeptides., , , and . IEEE Congress on Evolutionary Computation, page 1233-1240. IEEE, (2013)A Genetic Algorithm Based on Restricted Tournament Selection for the 3D-PSP Problem., , , and . CEC, page 1-8. IEEE, (2018)Understanding the Relationship Between Decision and Objective Space in the Multi-Objective Phylogenetic Inference Problem., , and . CEC, page 1-8. IEEE, (2018)A multi-population memetic algorithm for the 3-D protein structure prediction problem., and . Swarm Evol. Comput., (2020)