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Physiological Closed-Loop Control (PCLC) Systems: Review of a Modern Frontier in Automation.

, , , and . IEEE Access, (2020)

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Nano-robotic manipulation using a RRP nanomanipulator: Part B - Robust control of manipulator's tip using fused visual servoing and force sensor feedbacks., and . Appl. Math. Comput., 206 (2): 628-642 (2008)Performance satisfaction in Harpy, a thruster-assisted bipedal robot., , and . CoRR, (2020)A Self-Sensing Piezoelectric MicroCantilever Biosensor for Detection of Ultrasmall Adsorbed Masses: Theory and Experiments., , and . Sensors, 13 (5): 6089-6108 (2013)EEG decoding of finger numeral configurations with machine learning., , , , and . J. Numer. Cogn., 9 (1): 206-221 (March 2023)An Adaptive Neuro-fuzzy Strategy in Closed-loop Control of Anesthesia., , , and . CoRR, (2019)Adaptive trajectory tracking control of microcantilever's tip used in AFM with a general nonlinear tip-sample interaction force., , and . ACC, page 2885-2890. IEEE, (2011)Performance satisfaction in Midget, a thruster-assisted bipedal robot., , and . ACC, page 3217-3223. IEEE, (2020)Forced vibration analysis of flexible Euler-Bernoulli beams with geometrical discontinuities., , and . ACC, page 4029-4034. IEEE, (2008)Physiological Closed-Loop Control (PCLC) Systems: Review of a Modern Frontier in Automation., , , and . IEEE Access, (2020)Purposeful Communication in Human-Robot Collaboration: A Review of Modern Approaches in Manufacturing., , and . IEEE Access, (2022)