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The effects on biomechanics of walking and balance recovery in a novel pelvis exoskeleton during zero-torque control.

, , , , , , , and . Robotica, 32 (8): 1317-1330 (2014)

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Effectiveness of a Robot-Mediated Strategy While Counteracting Multidirectional Slippages., , , , , and . Robotica, 37 (12): 2119-2131 (2019)A Serious Game for the Assessment of Visuomotor Adaptation Capabilities during Locomotion Tasks Employing an Embodied Avatar in Virtual Reality., , , , , , , , , and 4 other author(s). Sensors, 23 (11): 5017 (2023)Effects of aging and perturbation intensities on temporal parameters during slipping-like perturbations., , , , and . EMBC, page 5291-5294. IEEE, (2015)Cost function tuning improves muscle force estimation computed by static optimization during walking., , and . EMBC, page 8263-8266. IEEE, (2011)EEG/EMG based Architecture for the Early Detection of Slip-induced Lack of Balance., , , , and . IWASI, page 9-14. IEEE, (2019)Bipedal spring-damper-mass model reproduces external mechanical power of human walking., and . EMBC, page 2446-2449. IEEE, (2015)Ambulatory Assessment of the Dynamic Margin of Stability Using an Inertial Sensor Network., , , , , and . Sensors, 19 (19): 4117 (2019)Assessing the Tidal Volume through Wearables: A Scoping Review., and . Sensors, 21 (12): 4124 (2021)Extraction of muscle synergies using temporal segmentation of the record: A preliminary analysis., , and . EMBC, page 3624-3627. IEEE, (2012)Effects of slipping-like perturbation intensity on the dynamical stability., , , , and . EMBC, page 5295-5298. IEEE, (2015)