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Conference Paper
Nordmann A, Wrede S, Steil JJ. Modeling of Movement Control Architectures based on Motion Primitives using Domain-Specific Languages. In: Int. Conf. Robotics and Automation. Int. Conf. Robotics and Automation. IEEE; 2015.
Ajallooeian M, Gay S, Tuleu A, Sproewitz A, Ijspeert A. Modular Control of Limit Cycle Locomotion over Unperceived Rough Terrain. In: ; 2013. Available from:
Ajallooeian M, Gay S, Tuleu A, Sprowitz A, Ijspeert A. Modular control of limit cycle locomotion over unperceived rough terrain. In: Intelligent Robots and Systems (IROS), 2013 IEEE/RSJ International Conference on. Intelligent Robots and Systems (IROS), 2013 IEEE/RSJ International Conference on. IEEE; 2013.
Meirovitch Y, Bennequin D, Flash T. 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.
Gaspers J, Panzner M, Lemme A, Cimiano P, Rohlfing KJ, Wrede S. A multi-modal corpus for evaluation of computational models for (grounded) language acquisition process. In: EACL, Workshop on Cognitive Aspects of Computer Language Learning. EACL, Workshop on Cognitive Aspects of Computer Language Learning. ; 2014.
Journal Article
Waegeman T, Hermans M, Schrauwen B. MACOP Modular Architecture for Control with Primitives. Frontiers in Computational Neuroscience. 2013 ;7.
Galtier M, Touboul J. Macroscopic Equations Governing Noisy Spiking Neuronal Populations with Linear Synapses. PLOS one. 2013 ;8:e78917. (888.85 KB)
Frank C, Land W, Schack T. Mental representation and learning: The influence of practice on the development of mental representation structure in complex action. Psychology of Sport & Exercise [Internet]. 2013 . Available from:
Schack T, Essig K, Frank C, Koester D. Mental Representation and Motor Imagery Training. Frontiers in Human Neuroscience [Internet]. 2014 ;8. Available from:
Cappellini G, Ivanenko YP, Dominici N, Poppele RR, Lacquaniti F. Migration of motor pool activity in the spinal cord reflects body mechanics in human locomotion. J Neurophysiol. 2010 ;104:3064-73.
Flash T, Meirovitch Y, Barliya A. Models of human movement: Trajectory planning and inverse kinematics studies. Robotics and Autonomous Systems [Internet]. 2013 ;61:330-339. Available from:
Chiovetto E. The motor system plays the violin: a musical metaphor inferred from the oscillatory activity of the alpha-motoneuron pools during locomotion. J Neurophysiol [Internet]. 2011 . Available from:
Soltoggio A, Lemme A. Movement Primitives as a Robotic Tool to Interpret Trajectories in Learning-by-doing. International Journal of Automation and Computing [Internet]. 2013 ;10:375-386. Available from: (747.67 KB)
Emmerich C, Reinhart RF, Steil JJ. Multi-directional Continuous Association with Input-driven Neural Dynamics. Neurocomputing (Special Issue ESANN 2012). 2013 .
MacLellan M, Ivanenko YP, Massaad F, Bruijn S, Duysens J, Lacquaniti F. Muscle Activation Patterns are Bilaterally Linked during Split-Belt Treadmill Walking in Humans. J Neurophysiol. 2014 .
Alessandro C, Delis I, Nori F, Panzeri S, Berret B. Muscle synergies in neuroscience and robotics: from input-space to task-space perspectives. Frontiers in Computational Neuroscience [Internet]. 2013 . Available from:

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