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Development of Automatic Controlled Walking Assistive Device Based on Fatigue and Emotion Detection.

, , , , , , , , and . J. Robotics Mechatronics, 34 (6): 1383-1397 (2022)

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Kinect-based 3D Human Motion Acquisition and Evaluation System for Remote Rehabilitation and Exercise., , , , and . AIM, page 1213-1218. IEEE, (2022)Development of Automatic Controlled Walking Assistive Device Based on Fatigue and Emotion Detection., , , , , , , , and . J. Robotics Mechatronics, 34 (6): 1383-1397 (2022)Development of a Tele-Rehabilitation System Using an Upper Limb Assistive Device., , , , , , and . J. Robotics Mechatronics, 33 (4): 877-886 (2021)Wheelchair Able to Assist the Elderly to Move on Stairs and Stand up., , and . SICE, page 1168-1173. IEEE, (2019)A Remote Rehabilitation and Evaluation System Based on Azure Kinect., , , , and . J. Robotics Mechatronics, 34 (6): 1371-1382 (2022)Extending Styles to Hypermedia Documents., and . ICMCS, page 417-424. IEEE Computer Society, (1996)A Walking Assistive Device of the Ankle Joint Motion and the Control Method According to the Emotion Condition., , , , , and . SII, page 623-627. IEEE, (2020)The Applicability of an Assistive Walking Device Integrating Overload Protection Mechanism Using a Torque Limiter., , , , and . AIM, page 851-856. IEEE, (2018)A Real-Time and Two-Dimensional Emotion Recognition System Based on EEG and HRV Using Machine Learning., , , , , , and . SII, page 1-6. IEEE, (2023)Evaluating the Interaction Between Human Walking and Two-Dimensional Emotion Variation by Using Physiological Signals., , , , , and . AHFE (1), volume 952 of Advances in Intelligent Systems and Computing, page 40-47. Springer, (2019)