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Statistical Inter-stimulus Interval Window Estimation for Transient Neuromodulation via Paired Mechanical and Brain Stimulation.

, , , and . Frontiers Neurorobotics, (2020)

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Nonlinear time-course of lumbar muscle fatigue using recurrence quantifications., , , , and . Biol. Cybern., 82 (5): 373-382 (2000)Unpowered Sensorimotor-Enhancing Suit Reduces Muscle Activation and Improves Force Perception., , , , and . IEEE Trans. Hum. Mach. Syst., 47 (6): 1158-1163 (2017)Statistical Inter-stimulus Interval Window Estimation for Transient Neuromodulation via Paired Mechanical and Brain Stimulation., , , and . Frontiers Neurorobotics, (2020)Wearable sensorimotor enhancer for a fingertip based on stochastic resonance., , and . ICRA, page 3790-3795. IEEE, (2011)Optimal inter-stimulus interval for paired associative stimulation with mechanical stimulation., , and . EMBC, page 1134-1137. IEEE, (2017)Automatic analysis of ultrasound shear-wave elastography in skeletal muscle without non-contractile tissue contamination., , , and . Int. J. Intell. Robotics Appl., 2 (2): 209-225 (2018)Robotic rehabilitation exercise in hemiparetic limbs based on functional synchronization of voluntary and involuntary nerve impulses., , , , , and . ARSO, page 114-120. IEEE, (2014)Intelligent upper-limb exoskeleton using deep learning to predict human intention for sensory-feedback augmentation., , , , , , , , , and 7 other author(s). CoRR, (2023)Wearable Sensorimotor Enhancer for Fingertip Based on Stochastic Resonance Effect., , and . IEEE Trans. Hum. Mach. Syst., 43 (3): 333-337 (2013)Unloading muscle activation enhances force perception., , , , and . AH, page 4:1-4:4. ACM, (2014)