Biblio

Found 76 results
Author Title Type [ Year(Desc)]
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2017
Mukovskiy A, Vassallo C, Naveau M, Stasse O, Souères P, Giese MA.  2017.  Adaptive synthesis of dynamically feasible full-body movements for the humanoid robot HRP-2 by flexible combination of learned dynamic movement primitives. Robotics and Autonomous Systems. 91:270–283.
Mukovskiy A, Vassallo C, Naveau M, Stasse O, Souères P, Giese MA.  2017.  Adaptive synthesis of dynamically feasible full-body movements for the humanoid robot HRP-2 by flexible combination of learned dynamic movement primitives. Robotics and Autonomous Systems. 91:270–283.
Sylos-Labini F, Magnani S, Cappellini G, La Scaleia V, Fabiano A, Picone S, Paolillo P, Di Paolo A, Lacquaniti F, Ivanenko Y.  2017.  Corrigendum: Foot Placement Characteristics and Plantar Pressure Distribution Patterns during Stepping on Ground in Neonates. Frontiers in Physiology. 8:973.
Martino G., Ivanenko Y., Serrao M., Ranavolo A., Draicchio F., Rinaldi M., Casali C., Lacquaniti F..  2017.  Differential changes in the spinal segmental locomotor output in Hereditary Spastic Paraplegia. Clinical Neurophysiology. 129:516–525.
Sylos-Labini F., Magnani S., Cappellini G., La Scaleia V., Fabiano A., Picone S., Paolillo P., Di Paolo A., Lacquaniti F., Ivanenko Y..  2017.  Foot Placement Characteristics and Plantar Pressure Distribution Patterns during Stepping on Ground in Neonates. Frontiers in Physiology. 8
Reinhart R, Shareef Z, Steil J.  2017.  Hybrid Analytical and Data-Driven Modeling for Feed-Forward Robot Control. Sensors. 17
Reinhart R, Shareef Z, Steil J.  2017.  Hybrid Analytical and Data-Driven Modeling for Feed-Forward Robot Control. Sensors. 17
Malekzadeh M, Queißer J, Steil JJ.  2017.  Imitation learning for a continuum trunk robot. Proceedings of the 25. European Symposium on Artificial Neural Networks, Computational Intelligence and Machine Learning.
Schatton C, Synofzik M, Fleszar Z, Giese MA, Schöls L, Ilg W.  2017.  Individualized exergame training improves postural control in advanced degenerative spinocerebellar ataxia: A rater-blinded, intra-individually controlled trial. Parkinsonism & Related Disorders. 39:80–84.
Schatton C, Synofzik M, Fleszar Z, Giese MA, Schöls L, Ilg W.  2017.  Individualized exergame training improves postural control in advanced degenerative spinocerebellar ataxia: A rater-blinded, intra-individually controlled trial. Parkinsonism & Related Disorders. 39:80–84.
Schatton C, Synofzik M, Fleszar Z, Giese MA, Schöls L, Ilg W.  2017.  Individualized exergame training improves postural control in advanced degenerative spinocerebellar ataxia: A rater-blinded, intra-individually controlled trial. Parkinsonism & Related Disorders. 39:80–84.
Li B, Virtanen JP, Oeltermann A, Schwarz C, Giese MA, Ziemann U, Benali A.  2017.  Lifting the veil on the dynamics of neuronal activities evoked by transcranial magnetic stimulation. eLife. 6
Mukovskiy A, Taubert N, Endres D, Vassallo C., Naveau M., Stasse O., Souères P., Giese MA.  2017.  Modeling of coordinated human body motion by learning of structured dynamic representations. Geometric and Numerical Foundations of Movements. 117:237–267.
Mukovskiy A, Taubert N, Endres D, Vassallo C., Naveau M., Stasse O., Souères P., Giese MA.  2017.  Modeling of coordinated human body motion by learning of structured dynamic representations. Geometric and Numerical Foundations of Movements. 117:237–267.
Sylos-Labini F, Zago M, Guertin PA, Lacquaniti F, Ivanenko Y.  2017.  Muscle Coordination and Locomotion in Humans. Curr Pharm Des. 23:1821–1833.
Ivanenko YP, Gurfinkel VS, Selionov V, Solopova IA, Sylos-Labini F, Guertin PA, Lacquaniti F.  2017.  Tonic and Rhythmic Spinal Activity Underlying Locomotion. Current Pharmaceutical Design. 23:1753–1763.
Ivanenko YP, Gurfinkel VS, Selionov V, Solopova IA, Sylos-Labini F, Guertin PA, Lacquaniti F.  2017.  Tonic and Rhythmic Spinal Activity Underlying Locomotion. Current Pharmaceutical Design. 23:1753–1763.
Ivanenko YP, Gurfinkel VS, Selionov V, Solopova IA, Sylos-Labini F, Guertin PA, Lacquaniti F.  2017.  Tonic and Rhythmic Spinal Activity Underlying Locomotion. Current Pharmaceutical Design. 23:1753–1763.

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