7 found
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Andreas Daffertshofer [5]A. Daffertshofer [2]
  1.  83
    Neural synchrony within the motor system: what have we learned so far?Bernadette C. M. van Wijk, Peter J. Beek & Andreas Daffertshofer - 2012 - Frontiers in Human Neuroscience 6.
  2.  25
    Neural Adaptations Associated with Interlimb Transfer in a Ballistic Wrist Flexion Task.Kathy L. Ruddy, Anne K. Rudolf, Barbara Kalkman, Maedbh King, Andreas Daffertshofer, Timothy J. Carroll & Richard G. Carson - 2016 - Frontiers in Human Neuroscience 10.
  3.  18
    Beta activity in the premotor cortex is increased during stabilized as compared to normal walking.Sjoerd M. Bruijn, Jaap H. Van Dieën & Andreas Daffertshofer - 2015 - Frontiers in Human Neuroscience 9.
  4.  37
    Talking hands: tongue motor excitability during observation of hand gestures associated with words.Naeem Komeilipoor, Carmelo Mario Vicario, Andreas Daffertshofer & Paola Cesari - 2014 - Frontiers in Human Neuroscience 8.
  5.  8
    Muscle Synergies in Children Walking and Running on a Treadmill.Margit M. Bach, Andreas Daffertshofer & Nadia Dominici - 2021 - Frontiers in Human Neuroscience 15.
    Muscle synergies reflect the presence of a common neural input to multiple muscles. Steering small sets of synergies is commonly believed to simplify the control of complex motor tasks like walking and running. When these locomotor patterns emerge, it is likely that synergies emerge as well. We hence hypothesized that in children learning to run the number of accompanying synergies increases and that some of the synergies’ activities display a temporal shift related to a reduced stance phase as observed in (...)
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  6.  33
    Three pertinent issues in the modeling of brain activity: Nonlinearities, time scales, and neural underpinnings.A. Daffertshofer, T. D. Frank, C. E. Peper & P. J. Beek - 2000 - Behavioral and Brain Sciences 23 (3):400-401.
    A critical discussion is provided of three central assumptions underlying Nunez's approach to modeling cortical activity. A plea is made for neurophysiologically realistic models involving nonlinearities, multiple time scales, and stochasticity.
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  7.  14
    Interpreting screw displacement apparent motion as a self-organizing process.T. D. Frank, A. Daffertshofer & P. J. Beek - 2001 - Behavioral and Brain Sciences 24 (4):668-669.
    Based on concepts of self-organization, we interpret apparent motion as the result of a so-called non-equilibrium phase transition of the perceptual system with the stimulus-onset asynchrony (SOA) acting as a control parameter. Accordingly, we predict a significantly increasing variance of the quality index of apparent motion close to critical SOAs. [Shepard].
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