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Wearable dummy to simulate joint impairment: Model for the discontinuous friction resistance due to arthritis.

, , , , , and . ROBIO, page 1409-1414. IEEE, (2012)

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Wearable Robot for Simulating Knee Disorders in the Training of Manual Examination Techniques., , , , , , and . AsiaHaptics, volume 277 of Lecture Notes in Electrical Engineering, page 225-230. Springer, (2014)Training on Muscle Palpation Using Artificial Muscle Nodule Models., , , , and . AsiaHaptics, volume 432 of Lecture Notes in Electrical Engineering, page 335-340. Springer, (2016)Simulated crepitus and its reality-based specification using wearable patient dummy., , , , and . Adv. Robotics, 29 (11): 699-706 (2015)Wearable dummy to simulate joint impairment: Model for the discontinuous friction resistance due to arthritis., , , , , and . ROBIO, page 1409-1414. IEEE, (2012)Ankle stretching rehabilitation machine for equinovarus: Automation of eversion and flexion control., , , , , and . SMC, page 2696-2700. IEEE, (2017)Ankle stretching rehabilitation machine for equinovarus: Design and evaluation from clinical aspects., , , , and . SMC, page 1687-1692. IEEE, (2017)Wearable dummy to simulate joint impairment: severity-based assessment of simulated spasticity of knee joint., , , , , and . SII, page 300-305. IEEE, (2013)Skin-fat-muscle urethane model for palpation for muscle disorders., , , , and . SII, page 960-964. IEEE, (2015)Exoskeleton Simulator of Impaired Ankle: Simulation of Spasticity and Clonus., , , , , , and . AsiaHaptics, volume 277 of Lecture Notes in Electrical Engineering, page 209-214. Springer, (2014)