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How the brain can discover the existence of external egocentric space., and . Neurocomputing, 12 (2-3): 289-310 (1996)Connecting Neurons to a Mobile Robot: An In Vitro Bidirectional Neural Interface., , , , , and . Comput. Intell. Neurosci., (2007)Connecting Brains to Robots: An Artificial Body for Studying Computational Properties of Neural Tissues., , , , and . Artif. Life, 6 (4): 307-324 (2000)Preflexes and internal models in biomimetic robot systems., , , and . Cogn. Process., 6 (1): 25-36 (2005)Coordinate-free sensorimotor processing: computing with population codes., , , and . Neural Networks, 11 (7-8): 1417-1428 (1998)Assessment methodology for human-exoskeleton interactions: Kinetic analysis based on muscle activation., , , , and . Frontiers Neurorobotics, (September 2022)A dynamic model of hand movements for proportional myoelectric control of a hand prosthesis., and . EMBC, page 6648-6651. IEEE, (2019)Beta oscillations during adaptation to inertial and velocity dependent perturbations., , , , , , , and . BioRob, page 1210-1215. IEEE, (2020)Intention-detection strategies for upper limb exosuits: model-based myoelectric vs dynamic-based control., , , , , , and . BioRob, page 410-415. IEEE, (2020)A neural framework for robot motor planning., , and . IROS, page 237-241. IEEE, (1991)