Publications
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Event-related desynchronization during motion observation reflects kinematic regularities. In: Neural control of movement (NCM 2014). Neural control of movement (NCM 2014). Amsterdam, Netherlands; 2014.
. Movement decomposition and compositionality based on geometric and kinematic principles. In: Neural control of movement (NCM 2014). Neural control of movement (NCM 2014). Amsterdam, Netherlands; 2014.
. Scale-Invariant Movement Encoding in the Human Motor System. Neuron. 2014 ;18:452-462.
. Shortening preparation time for curved trajectories reveals an ongoing control of movement segments. In: Neural control of movement (NCM 2014). Neural control of movement (NCM 2014). Amsterdam, Netherlands; 2014.
. The 2/3 power law originates in the motor plan. In: Computational motor Control workshop 9. Computational motor Control workshop 9. Beer-sheva, Isreal.; 2013.
. The 2/3 power law originates in the motor plan: a motor imagery study. In: Neural control of movement (NCM 2014). Neural control of movement (NCM 2014). Amsterdam, Netherlands; 2013.
. The building blocks of curved trajectories: studying the effect of shortened preparation time on movement planning and execution. In: ISFN. ISFN. Eilat, Israel; 2013.
. Expression of emotion in the kinematics of locomotion. Experimental Brain Research [Internet]. 2013 ;225:159–176. Available from: http://www.compsens.uni-tuebingen.de/joomla/administrator/components/com_jresearch/files/publications/Barliya2012.pdf
. Models of human movement: Trajectory planning and inverse kinematics studies. Robotics and Autonomous Systems [Internet]. 2013 ;61:330-339. Available from: http://www.sciencedirect.com/science/article/pii/S0921889012001741#
. . Co-articulation of straight lines with an Artificial Neural Network. In: NCM 22nd Annual Meeting. NCM 22nd Annual Meeting. Venice; 2012.
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