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Automatic adjustment of initial drop speed of foot for intelligently controllable ankle foot orthosis., , , and . SII, page 276-281. IEEE, (2013)Motor function assessment for upper limb with virtual wiping program of rehabilitation system SEMUL., , , , , , and . SII, page 27-32. IEEE, (2015)Development of a 6-DOF force display system using ER actuators with high-safety., , , , , , , , and . VRCIA, page 405-408. ACM, (2006)Development of virtual reality bike with cylindrical MR fluid brake., , and . ROBIO, page 1753-1758. IEEE, (2012)Basic study on prediction of initial contact for intelligently controlled ankle foot orthosis (I-AFO)., , , , , and . ROBIO, page 86-90. IEEE, (2008)Development of cylindrical magnetorheological fluid brake for virtual cycling system., and . ROBIO, page 2547-2552. IEEE, (2011)Development of Ankle Support Shoes with Elastomer-Embedded Flexible Joints., , , , , and . J. Robotics Mechatronics, 32 (5): 1080-1087 (2020)Development and Evaluation of Dorsiflexion Support Unit Using Elastomer Embedded Flexible Joint., , , , , , and . J. Robotics Mechatronics, 34 (4): 857-866 (2022)Motivating intervention to rehabilitate motor function of the upper limbs via visual feedback of a rehabilitation game., , , , and . SII, page 483-488. IEEE, (2020)Development of a Compact Magnetorheological Fluid Clutch for Human-Friendly Actuator., , , , , , and . Adv. Robotics, 25 (9-10): 1362 (2011)