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FTFlex: accounting for binding site flexibility to improve fragment-based identification of druggable hot spots., , , , and . Bioinformatics, 29 (9): 1218-1219 (2013)Docking Server for the Identification of Heparin Binding Sites on Proteins., , , , , and . Journal of Chemical Information and Modeling, 54 (7): 2068-2078 (2014)Detection of ligand binding hot spots on protein surfaces via fragment-based methods: application to DJ-1 and glucocerebrosidase., , , , , , , , , and 3 other author(s). Journal of Computer-Aided Molecular Design, 23 (8): 491-500 (2009)Flexible refinement of protein-ligand docking on manifolds., , , , , , , and . CDC, page 1392-1397. IEEE, (2013)Protein-ligand docking using FFT based sampling: D3R case study., , , , , , , and . Journal of Computer-Aided Molecular Design, 32 (1): 225-230 (2018)ClusPro PeptiDock: efficient global docking of peptide recognition motifs using FFT., , , , , , and . Bioinformatics, 33 (20): 3299-3301 (2017)FTMAP: extended protein mapping with user-selected probe molecules., , , , , , , and . Nucleic Acids Research, 40 (Web-Server-Issue): 271-275 (2012)Fragment-based identification of druggable 'hot spots' of proteins using Fourier domain correlation techniques., , , , , , , and . Bioinformatics, 25 (5): 621-627 (2009)A new approach to rigid body minimization with application to molecular docking., , , , , and . CDC, page 2983-2988. IEEE, (2012)Application of asymmetric statistical potentials to antibody-protein docking., , , , , , , , and . Bioinformatics, 28 (20): 2608-2614 (2012)