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Design of EMG-driven Musculoskeletal Model for Volitional Control of a Robotic Ankle Prosthesis.

, , , , and . IROS, page 12261-12266. IEEE, (2022)

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Evaluating and Extending Latent Methods for Link-Based Classification., , and . Formalisms for Reuse and Systems Integration, volume 346 of Advances in Intelligent Systems and Computing, Springer, (2015)Design of EMG-driven Musculoskeletal Model for Volitional Control of a Robotic Ankle Prosthesis., , , and . CoRR, (2022)Neural prosthesis control restores near-normative neuromechanics in standing postural control., , and . Sci. Robotics, (October 2023)Design of EMG-driven Musculoskeletal Model for Volitional Control of a Robotic Ankle Prosthesis., , , , and . IROS, page 12261-12266. IEEE, (2022)Abduction/Adduction Assistance From Powered Hip Exoskeleton Enables Modulation of User Step Width During Walking., , , , , and . IEEE Trans. Biomed. Eng., 71 (1): 334-342 (January 2024)A hidden treasure? Evaluating and extending latent methods for link-based classification., , and . IRI, page 669-676. IEEE Computer Society, (2014)Proportional Myoelectric Control of a Powered Ankle Prosthesis for Postural Control under Expected Perturbation: A Pilot Study., and . ICORR, page 899-904. IEEE, (2019)Direct Myoelectric Control Modifies Lower Limb Functional Connectivity: A Case Study., , , and . EMBC, page 6573-6576. IEEE, (2021)Closed-Loop Feedback Control of Human Step Width During Walking by Mediolaterally Acting Robotic Hip Exoskeleton., , , , , and . IROS, page 6097-6102. (2023)Coordination of Voluntary Residual Muscle Contractions in Transtibial Amputees: a Pilot Study., , and . EMBC, page 2128-2131. IEEE, (2018)