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Instrumented Shoes for 3D GRF Analysis and Characterization of Human Gait.

, , , and . IWBBIO (2), volume 11466 of Lecture Notes in Computer Science, page 51-62. Springer, (2019)

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The Cervical Spine Evaluation and Rehabilitation System., , , , , and . ISR, page 70-73. IEEE, (2021)Instrumented Shoes for 3D GRF Analysis and Characterization of Human Gait., , , and . IWBBIO (2), volume 11466 of Lecture Notes in Computer Science, page 51-62. Springer, (2019)Dynamic Human Gait VGRF Reference Profile Generation via Extreme Learning Machine., , , , , , and . IJCNN, page 1-7. IEEE, (2018)Human knee joint walking pattern generation using computational intelligence techniques., , , , and . Neural Comput. Appl., 30 (6): 1701-1713 (2018)Adaptive PD Controller Modeled via Support Vector Regression for a Biped Robot., , and . IEEE Trans. Control. Syst. Technol., 21 (3): 941-949 (2013)Sagittal stability PD controllers for a biped robot using a neurofuzzy network and an SVR., , and . Robotica, 29 (5): 717-731 (2011)Development of Bath Auxiliary Robot for the Disabled Elderly., , , , , and . ISR, page 85-88. IEEE, (2021)SVR Versus Neural-Fuzzy Network Controllers for the Sagittal Balance of a Biped Robot., , and . IEEE Trans. Neural Networks, 20 (12): 1885-1897 (2009)A Rotary-Cage Valve (RCV) for Variable Damper in Prosthetic Knee., , , , , and . ICIRA (2), volume 14268 of Lecture Notes in Computer Science, page 286-297. Springer, (2023)Neuro-fuzzy control of a biped robot able to be subjected to an external pushing force in the sagittal plane., , and . IROS, page 4191. IEEE, (2008)