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Force-Rate Cues Reduce Object Deformation Necessary to Discriminate Compliances Harder than the Skin., и . IEEE Trans. Haptics, 11 (2): 232-240 (2018)Using Digital Image Correlation to Quantify Skin Deformation With Von Frey Monofilaments., , и . IEEE Trans. Haptics, 15 (1): 26-31 (2022)Thin Films on the Skin, but not Frictional Agents, Attenuate the Percept of Pleasantness to Brushed Stimuli., , , , , и . WHC, стр. 49-54. IEEE, (2021)Validating a Population Model of TactileMechanotransduction of Slowly AdaptingType I Afferents at Levels of Skin Mechanics, Single-Unit Response and Psychophysics., , , , и . IEEE Trans. Haptics, 7 (2): 216-228 (2014)Natural variation in skin thickness argues for mechanical stimulus control by force instead of displacement., , , , и . World Haptics, стр. 645-650. IEEE, (2013)Evaluating populations of tactile sensors for curvature discrimination., и . HAPTICS, стр. 59-62. IEEE Computer Society, (2010)Roles of Force Cues and Proprioceptive Joint Angles in Active Exploration of Compliant Objects., , , и . WHC, стр. 353-358. IEEE, (2019)The Sampling Position Within, Not the Undulating Geometry of, Fingertip Skin Microstructure May Amplify the Sensation of Edges.. HAPTICS, стр. 22. IEEE Computer Society, (2006)Simulation framework for training chest tube insertion using virtual reality and force feedback., , , , , и . SMC, стр. 2261-2266. IEEE, (2007)A computerized physical simulator for training clinical prostate palpation skills., , , и . SMC, стр. 2223-2227. IEEE, (2007)