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Task-Dependent Adaptations in Closed-Loop Motor Control Based on Electrotactile Feedback.

, , and . IEEE Trans. Hum. Mach. Syst., 52 (6): 1227-1235 (2022)

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Continuous Transition Impairs Discrimination of Electrotactile Frequencies., , and . IEEE Trans. Haptics, 15 (4): 753-758 (2022)Closed-loop Control using Electrotactile Feedback Encoded in Frequency and Pulse Width., , and . IEEE Trans. Haptics, 13 (4): 818-824 (2020)Task-Dependent Adaptations in Closed-Loop Motor Control Based on Electrotactile Feedback., , and . IEEE Trans. Hum. Mach. Syst., 52 (6): 1227-1235 (2022)A new generation of double-sided intramuscular electrodes for multi-channel recording and stimulation., , , , , , and . EMBC, page 7135-7138. IEEE, (2015)A Novel Technology for Motion Capture Using Passive UHF RFID Tags., , , , , and . IEEE Trans. Biomed. Eng., 60 (5): 1453-1457 (2013)A soft wearable robot for tremor assessment and suppression., , , , , , , , , and 4 other author(s). ICRA, page 2249-2254. IEEE, (2011)Electrotactile and Vibrotactile Feedback Enable Similar Performance in Psychometric Tests and Closed-Loop Control., , , , and . IEEE Trans. Haptics, 15 (1): 222-231 (2022)Relation Between the Frequency of Short-Pulse Electrical Stimulation of Afferent Nerve Fibers and Evoked Muscle Force., , , and . IEEE Trans. Biomed. Eng., 64 (11): 2737-2745 (2017)A modelling study on transmission of the central oscillator in tremor by a motor neuron pool., , , , , and . EMBC, page 2037-2040. IEEE, (2011)Noninvasive analysis of motor unit behavior in pathological tremor., , , , and . EMBC, page 7512-7515. IEEE, (2011)