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  1. 1.
    0507669 - ÚI 2020 CH eng M - Monography Chapter
    Alexandrov, A.V. - Lippi, V. - Mergner, T. - Frolov, A. - Hettich, G. - Húsek, Dušan
    Human-Inspired Eigenmovement Concept Provides Coupling-Free Sensorimotor Control in Humanoid Robot.
    Neuromechanics and Control of Physical Behavior: from Experimental and Computational Formulations to Bio-inspired Technologies. Lausanne: Frontiers, 2019 - (Sartori, M.; Valero-Cuevas, F.; Schouten, A.; Tresch, M.; Nakamura, Y.; Sreenivasa, M.), s. 208-220. Frontiers Research Topics. ISBN 978-2-88945-946-9
    Institutional support: RVO:67985807
    Keywords : human sensorimotor system * neuromechanics * biorobotics * motor control * eigenmovements
    OECD category: Robotics and automatic control
    https://www.frontiersin.org/research-topics/4698/neuromechanics-and-control-of-physical-behavior-from-experimental-and-computational-formulations-to#overview
    Permanent Link: http://hdl.handle.net/11104/0298655
    FileDownloadSizeCommentaryVersionAccess
    0507669-aoa2.pdf03.8 MBv2, OpenAccessPublisher’s postprintrequire
     
     
  2. 2.
    0382473 - ÚI 2014 RIV HR eng M - Monography Chapter
    Frolov, A. - Húsek, Dušan - Bobrov, P. - Mokienko, O. - Tintěra, J.
    Sources of Electrical Brain Activity Most Relevant to Performance of Brain-Computer Interface Based on Motor Imagery.
    Brain-Computer Interface Systems - Recent Progress and Future Prospects. Rijeka: InTech, 2013 - (Fazel-Rezai, R.), s. 175-193. ISBN 978-953-51-1134-4
    R&D Projects: GA ČR GAP202/10/0262
    Grant - others:GA MŠk(CZ) ED1.1.00/02.0070
    Program: ED
    Institutional support: RVO:67985807
    Keywords : brain computer interface * BCI * EEG * fMRI * signal separation * inverse EEG task
    Subject RIV: IN - Informatics, Computer Science
    Permanent Link: http://hdl.handle.net/11104/0212683
     
     


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