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An Evolutionary Conservation & Rigidity Analysis Machine Learning Approach for Detecting Critical Protein Residues.

, , and . BCB, page 779. ACM, (2013)

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Guiding protein docking with Geometric and Evolutionary Information., , , and . J. Bioinform. Comput. Biol., (2012)Refining multimeric protein complexes using conservation, electrostatics and probabilistic selection., and . BIBM Workshops, page 648-653. IEEE Computer Society, (2012)Extensible and Precise Modeling for Wireless Sensor Networks., , and . UNISCON, volume 20 of Lecture Notes in Business Information Processing, page 551-562. Springer, (2009)An evolutionary-guided iterative refinement approach for protein multimers., and . BIBM Workshops, page 941. IEEE Computer Society, (2012)Towards a hybrid method for detecting critical protein residues., , and . BIBM Workshops, page 82-85. IEEE Computer Society, (2012)Accurate prediction of docked protein structure similarity using neural networks and restricted Boltzmann machines., , and . BIBM, page 1296-1303. IEEE Computer Society, (2015)An Evolutionary Conservation & Rigidity Analysis Machine Learning Approach for Detecting Critical Protein Residues., , and . BCB, page 779. ACM, (2013)Ranking Protein-Protein Binding Using Evolutionary Information and Machine Learning., , and . BCB, page 667-672. ACM, (2017)Refinement of docked protein complex structures using evolutionary traces., , , and . BIBM Workshops, page 400-404. IEEE Computer Society, (2011)Protein docking with information on evolutionary conserved interfaces., , , and . BIBM Workshops, page 358-365. IEEE Computer Society, (2011)