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The Effect of ECG Interference on Pattern-Recognition-Based Myoelectric Control for Targeted Muscle Reinnervated Patients., , , and . IEEE Trans. Biomed. Engineering, 56 (9): 2197-2201 (2009)Altered Neural Control Reduces Shear Forces and Ankle Impedance on a Slippery Surface., , and . IEEE Trans. Biomed. Engineering, 66 (8): 2381-2389 (2019)A Decision-Based Velocity Ramp for Minimizing the Effect of Misclassifications During Real-Time Pattern Recognition Control., , , and . IEEE Trans. Biomed. Engineering, 58 (8): 2360-2368 (2011)Effect of additional mechanical sensor data on an EMG-based pattern recognition system for a powered leg prosthesis., , , and . NER, page 639-642. IEEE, (2015)Linear regression using intramuscular EMG for simultaneous myoelectric control of a wrist and hand system., , and . NER, page 619-622. IEEE, (2015)Preliminary results for an adaptive pattern recognition system for novel users using a powered lower limb prosthesis., , , and . EMBC, page 5083-5086. IEEE, (2016)Proceedings of the first workshop on Peripheral Machine Interfaces: going beyond traditional surface electromyography., , , , , , , , , and 10 other author(s). Front. Neurorobot., (2014)Design, development, and testing of a lightweight hybrid robotic knee prosthesis., , , and . I. J. Robotics Res., 37 (8): 953-976 (2018)A Comparison of Surface and Intramuscular Myoelectric Signal Classification., , and . IEEE Trans. Biomed. Engineering, 54 (5): 847-853 (2007)Speed-Adaptation Mechanism: Robotic Prostheses Can Actively Regulate Joint Torque., , and . IEEE Robot. Automat. Mag., 21 (4): 94-107 (2014)