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  1. Robotic Assistance for Upper Limbs May Induce Slight Changes in Motor Modules Compared With Free Movements in Stroke Survivors: A Cluster-Based Muscle Synergy Analysis.Alessandro Scano, Andrea Chiavenna, Matteo Malosio, Lorenzo Molinari Tosatti & Franco Molteni - 2018 - Frontiers in Human Neuroscience 12.
  • Coupling Robot-Aided Assessment and Surface Electromyography (sEMG) to Evaluate the Effect of Muscle Fatigue on Wrist Position Sense in the Flexion-Extension Plane.Maddalena Mugnosso, Jacopo Zenzeri, Charmayne M. L. Hughes & Francesca Marini - 2019 - Frontiers in Human Neuroscience 13:485865.
    Proprioception is a crucial sensory modality involved in the control and regulation of coordinated movements and in motor learning. However, the extent to which proprioceptive acuity is influenced by local muscle fatigue is obscured by methodological differences in proprioceptive and fatiguing protocols. In this study, we used high resolution kinematic measurements provided by a robotic device, as well as both frequency and time domain analysis of signals captured via surface electromyography (sEMG) to examine the effects of local muscle fatigue on (...)
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  • Neuroplastic changes in resting-state functional connectivity after stroke rehabilitation.Yang-Teng Fan, Ching-yi Wu, Ho-Ling Liu, Keh-Chung Lin, Yau-yau Wai & Yao-Liang Chen - 2015 - Frontiers in Human Neuroscience 9:148968.
    Most neuroimaging research in stroke rehabilitation mainly focuses on the neural mechanisms underlying the natural history of post-stroke recovery. However, connectivity mapping from resting-state fMRI is well suited for different neurological conditions and provides a promising method to explore plastic changes for treatment-induced recovery from stroke. We examined the changes in resting-state functional connectivity (RS-FC) of the ipsilesional primary motor cortex (M1) in 10 post-acute stroke patients before and immediately after 4 weeks of robot-assisted bilateral arm therapy (RBAT). Motor performance, (...)
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