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Visualization of Molecular Structure: State of the Art Revisited, , , , , , , , and . Computer Graphics Forum, 36 (8): 178-204 (2016)Visualization of Large Molecular Trajectories., , , , , and . IEEE Trans. Vis. Comput. Graph., 25 (1): 987-996 (2019)AnimoAminoMiner: Exploration of Protein Tunnels and their Properties in Molecular Dynamics., , , , and . IEEE Trans. Vis. Comput. Graph., 22 (1): 747-756 (2016)LOOPS: Visual Analysis Tool for Non-Periodic Protein Structures., , and . EuroVis (Posters), page 93-95. Eurographics Association, (2019)AnthroVis: visual analysis of 3D mesh ensembles for forensic anthropology., , and . SCCG, page 17:1-17:9. ACM, (2017)Visualization of molecular structure : state of the art, , , , , , , , and . Eurographics Conference on Visualization (EuroVis) : STARs - State of The Art Reports, page 61-81. Geneve, The Eurographics Association, (2015)Visual Analysis of Ligand Trajectories in Molecular Dynamics., , , , , , , and . PacificVis, page 212-221. IEEE, (2019)Application of sampling-based path planning for tunnel detection in dynamic protein structures., and . MMAR, page 1010-1015. IEEE, (2016)Visibility-based approach to surface detection of tunnels in proteins., , , and . SCCG, page 65-72. ACM, (2015)CAVER Analyst 1.0: graphic tool for interactive visualization and analysis of tunnels and channels in protein structures., , , , , , , , , and 5 other author(s). Bioinformatics, 30 (18): 2684-2685 (2014)