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Preliminary analysis of non-dominant proprioceptive acuity and interlimb asymmetry in the human wrist.

, , , and . EMBC, page 3598-3601. IEEE, (2015)

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Robot-Aided Bimanual Assessment of Wrist Proprioception in People with Acute Stroke., , , , , , and . BioRob, page 473-478. IEEE, (2018)A developmental approach to sensori-motor coordination in artificial systems., , and . SMC, page 3388-3393. IEEE, (1998)Neural development and sensorimotor control. Proceedings of the Fourth International Workshop on Epigenetic Robotics: Modeling Cognitive Development in Robotic Systems. Lund University Cognitive Studies, 117, page 11-13. Lund, LUCS, (2004)The development toward stereotypic arm kinematics during reaching in the first 3 years of life, and . Experimental Brain Research, (1997)Evaluation of wrist joint proprioception by means of a robotic device., , , , , and . URAI, page 531-534. IEEE, (2014)The development of goal-directed reaching in infants. II. Learning to produce task-adequate patterns of joint torque, , and . Experimental Brain Research, (1997)Can imprecise internal motor models explain the ataxic hand trajectories during reaching in young infants?, , and . EpiRob, (2009)Robot-assisted training to improve proprioception does benefit from added vibro-tactile feedback., , , and . EMBC, page 258-261. IEEE, (2015)Wrist proprioceptive acuity: A comprehensive robot-aided assessment., , , and . EMBC, page 3594-3597. IEEE, (2015)Vibro-Tactile Stimulation as a Non-Invasive Neuromodulation Therapy for Cervical Dystonia: A Case Study., , and . EMBC, page 6314-6317. IEEE, (2021)