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Shuxiang Guo

Showing results (21-30 of 62) with videos related to

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Micromachines|December 24, 2021
ADRC-Based Control Method for the Vascular Intervention Master-Slave Surgical Robotic SystemWei Zhou, Shuxiang Guo, Jin Guo, et al.
Biomedical Microdevices|August 4, 2018
Development of a powered variable-stiffness exoskeleton device for elbow rehabilitationYi Liu, Shuxiang Guo, Hideyuki Hirata, et al.
Sensors (Basel, Switzerland)|February 28, 2013
Implementation of human-machine synchronization control for active rehabilitation using an inertia sensorZhibin Song, Shuxiang Guo, Nan Xiao, et al.
The International Journal of Medical Robotics + Computer Assisted Surgery : MRCAS|February 20, 2015
A virtual reality-based method of decreasing transmission time of visual feedback for a tele-operative robotic catheter operating systemJin Guo, Shuxiang Guo, Takashi Tamiya, et al.
Journal of Medical and Biological Engineering|May 12, 2015
Electromyography-Based Quantitative Representation Method for Upper-Limb Elbow Joint Angle in Sagittal PlaneMuye Pang, Shuxiang Guo, Qiang Huang, et al.
Sensors (Basel, Switzerland)|May 22, 2015
Design of a novel telerehabilitation system with a force-sensing mechanismSongyuan Zhang, Shuxiang Guo, Baofeng Gao, et al.
IEEE Journal of Biomedical and Health Informatics|July 14, 2025
A Home-based Dual-mode Upper Limb Rehabilitation System: Teleoperation Mode and Bilateral Mode with sEMG and IMUHe Li, Shuxiang Guo, Ruijie He, et al.
Micromachines|May 28, 2022
Kinetics Analysis and ADRC-Based Controller for a String-Driven Vascular Intervention Surgical Robotic SystemWei Zhou, Shuxiang Guo, Jin Guo, et al.
IEEE Journal of Biomedical and Health Informatics|May 20, 2022
A Home-based Tele-rehabilitation System With Enhanced Therapist-patient Remote Interaction: A Feasibility StudyYi Liu, Shuxiang Guo, Ziyi Yang, et al.
Sensors (Basel, Switzerland)|April 21, 2015
Comparison of sEMG-Based Feature Extraction and Motion Classification Methods for Upper-Limb MovementShuxiang Guo, Muye Pang, Baofeng Gao, et al.
Pageof 7

Showing results (21-30 of 62) with videos related to

Sort By:
Pageof 7
Micromachines|December 24, 2021
ADRC-Based Control Method for the Vascular Intervention Master-Slave Surgical Robotic SystemWei Zhou, Shuxiang Guo, Jin Guo, et al.
Biomedical Microdevices|August 4, 2018
Development of a powered variable-stiffness exoskeleton device for elbow rehabilitationYi Liu, Shuxiang Guo, Hideyuki Hirata, et al.
Sensors (Basel, Switzerland)|February 28, 2013
Implementation of human-machine synchronization control for active rehabilitation using an inertia sensorZhibin Song, Shuxiang Guo, Nan Xiao, et al.
The International Journal of Medical Robotics + Computer Assisted Surgery : MRCAS|February 20, 2015
A virtual reality-based method of decreasing transmission time of visual feedback for a tele-operative robotic catheter operating systemJin Guo, Shuxiang Guo, Takashi Tamiya, et al.
Journal of Medical and Biological Engineering|May 12, 2015
Electromyography-Based Quantitative Representation Method for Upper-Limb Elbow Joint Angle in Sagittal PlaneMuye Pang, Shuxiang Guo, Qiang Huang, et al.
Sensors (Basel, Switzerland)|May 22, 2015
Design of a novel telerehabilitation system with a force-sensing mechanismSongyuan Zhang, Shuxiang Guo, Baofeng Gao, et al.
IEEE Journal of Biomedical and Health Informatics|July 14, 2025
A Home-based Dual-mode Upper Limb Rehabilitation System: Teleoperation Mode and Bilateral Mode with sEMG and IMUHe Li, Shuxiang Guo, Ruijie He, et al.
Micromachines|May 28, 2022
Kinetics Analysis and ADRC-Based Controller for a String-Driven Vascular Intervention Surgical Robotic SystemWei Zhou, Shuxiang Guo, Jin Guo, et al.
IEEE Journal of Biomedical and Health Informatics|May 20, 2022
A Home-based Tele-rehabilitation System With Enhanced Therapist-patient Remote Interaction: A Feasibility StudyYi Liu, Shuxiang Guo, Ziyi Yang, et al.
Sensors (Basel, Switzerland)|April 21, 2015
Comparison of sEMG-Based Feature Extraction and Motion Classification Methods for Upper-Limb MovementShuxiang Guo, Muye Pang, Baofeng Gao, et al.
Pageof 7