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Haptic Rendering and Psychophysical Evaluation of a Virtual Three-Dimensional Helical Spring.

, , , , and . HAPTICS, page 57-64. IEEE Computer Society, (2008)

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Comparison of 3-D haptic peg-in-hole tasks in real and virtual environments., , , , , and . IROS, page 1751-1756. IEEE, (2001)Good vibrations: Asymmetric vibrations for directional haptic cues., , , and . WHC, page 285-289. IEEE Computer Society, (2009)The Geometric Model for Perceived Roughness Applies to Virtual Textures., , and . HAPTICS, page 3-10. IEEE Computer Society, (2008)Haptic Rendering and Psychophysical Evaluation of a Virtual Three-Dimensional Helical Spring., , , , and . HAPTICS, page 57-64. IEEE Computer Society, (2008)Temporal bone surgical simulation employing a multicore architecture., , and . CCECE, page 1-6. IEEE, (2013)A telemanipulation system for psychophysical investigation of haptic interaction., , and . ICRA, page 1253-1258. IEEE, (2003)Importance of Stereoscopy in Haptic Training of Novice Temporal Bone Surgery., , , and . MMVR, volume 220 of Studies in Health Technology and Informatics, page 439-445. IOS Press, (2016)Design and Validation of 3D Printed Complex Bone Models with Internal Anatomic Fidelity for Surgical Training and Rehearsal., , , and . MMVR, volume 196 of Studies in Health Technology and Informatics, page 439-445. IOS Press, (2014)Virtual Peg-in-Hole Performance Using a 6-DOF Magnetic Levitation Haptic Device: Comparison with Real Forces and with Visual Guidance Alone., , , , , , and . Symposium on Haptic Interfaces for Virtual Environment and Teleoperator Systems, page 263-270. IEEE Computer Society, (2002)Design and Operation of a Force-reflecting Magnetic Levitation Coarse-fine Teleoperation System., and . ICRA, page 4147-4152. IEEE, (2004)