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Marker-based motion tracking using Microsoft Kinect.

, , , , , , and . SyRoCo, volume 51 of IFAC-PapersOnline, page 399-404. International Federation of Automatic Control, (2018)

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Self-oscillating chaos generator using CMOS multivibrator., , , and . KES (1), page 213-217. IEEE, (1998)Identification of mechanical properties of brain parenchyma for brain surgery haptic simulation., , , and . ROBIO, page 1656-1661. IEEE, (2014)Development of a Surgical Simulator for Training Retraction of Tissue with an Encountered-Type Haptic Interface Using MR Fluid., , , , , , , , and . ROBIO, page 898-903. IEEE, (2018)Drop Impact Analysis and Shock Absorbing Motion of a Life-Sized One-Legged Robot with Soft Outer Shells and a Flexible Joint., , and . AIM, page 928-933. IEEE, (2020)An impact dynamics model and sequential optimization to generate impact motions for a humanoid robot., , , , and . Int. J. Robotics Res., 30 (13): 1596-1608 (2011)Moving Particle Semi-Implicit and Finite Element Method Coupled Analysis for Brain Shift Estimation., , , , and . J. Robotics Mechatronics, 34 (6): 1306-1317 (2022)Generation of chaos with simple sets of semiconductor devices., , , and . KES (3), page 250-259. IEEE, (1998)A viscoelastic model of brain parenchyma for haptic brain surgery simulations., , , and . SII, page 490-495. IEEE, (2016)Encountered-Type Visual Haptic Display Using MR Fluid., , and . AsiaHaptics, volume 432 of Lecture Notes in Electrical Engineering, page 151-155. Springer, (2016)Numerical Model of Connective Tissue for Splitting Brain Fissure Simulation., , , and . SII, page 118-123. IEEE, (2019)