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Vittorio Sanguineti
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2020 – today
- 2024
- [c21]Cecilia de Vicariis, Ekaterina Ivanova, Vittorio Sanguineti, Etienne Burdet:
Haptic Communication in a Redundant Sensorimotor Interactive Task. BioRob 2024: 444-449 - [c20]Georgii Kurshakov, Andrea Maffia, Tiziano Cosso, Renzo Chiostri, Vittorio Sanguineti, Giorgio Delzanno:
Loosely-Coupled GNSS/INS Integration for Foot Trajectory Reconstruction in Outdoor Environments. BioRob 2024: 1409-1414 - 2023
- [c19]Beatrice Bregante, Gabriella Paoli, Vittorio Sanguineti, Gaetano Stefano Scillieri, Mauro Giacomini:
Comparison of Different Telemedicine Services to Pre-Evaluate Their Use in a New "Computational Hospital". EFMI-STC 2023: 165-169 - 2022
- [j19]Vasco Fanti, Vittorio Sanguineti, Darwin G. Caldwell, Jesús Ortiz, Christian Di Natali:
Assessment methodology for human-exoskeleton interactions: Kinetic analysis based on muscle activation. Frontiers Neurorobotics 16 (2022) - 2021
- [c18]Tommaso Poliero, Matteo Iurato, Matteo Sposito, Christian Di Natali, Stefano Toxiri, Sara Anastasi, Francesco Draicchio, Luigi Monica, Darwin G. Caldwell, Vittorio Sanguineti, Jesús Ortiz:
A case study on occupational back-support exoskeletons versatility in lifting and carrying. PETRA 2021: 210-217 - 2020
- [j18]Nicola Lotti, Michele Xiloyannis, Guillaume Durandau, Elisa Galofaro, Vittorio Sanguineti, Lorenzo Masia, Massimo Sartori:
Adaptive Model-Based Myoelectric Control for a Soft Wearable Arm Exosuit: A New Generation of Wearable Robot Control. IEEE Robotics Autom. Mag. 27(1): 43-53 (2020) - [c17]Nicola Lotti, Michele Xiloyannis, Francesco Missiroli, Domenico Chiaradia, Antonio Frisoli, Vittorio Sanguineti, Lorenzo Masia:
Intention-detection strategies for upper limb exosuits: model-based myoelectric vs dynamic-based control. BioRob 2020: 410-415 - [c16]Serena Ricci, Elisa Tatti, Donatella Mattia, Febo Cincotti, Vittorio Sanguineti, Pietro Morasso, Andrea Canessa, Maura Casadio:
Beta oscillations during adaptation to inertial and velocity dependent perturbations. BioRob 2020: 1210-1215
2010 – 2019
- 2019
- [j17]Vinil T. Chackochan, Vittorio Sanguineti:
Incomplete information about the partner affects the development of collaborative strategies in joint action. PLoS Comput. Biol. 15(12) (2019) - [c15]Giovanna Beninati, Vittorio Sanguineti:
A dynamic model of hand movements for proportional myoelectric control of a hand prosthesis. EMBC 2019: 6648-6651 - 2018
- [j16]Atsushi Takagi, Francesco Usai, Ganesh Gowrishankar, Vittorio Sanguineti, Etienne Burdet:
Haptic communication between humans is tuned by the hard or soft mechanics of interaction. PLoS Comput. Biol. 14(3) (2018) - [c14]Nicola Lotti, Vittorio Sanguineti:
Estimation of Muscle Torques from EMG and Kinematics During Planar Arm Movements. BioRob 2018: 948-953 - 2017
- [c13]Nicola Lotti, Vittorio Sanguineti:
Toward EMG-controlled force field generation for training and rehabilitation: From movement data to muscle geometry. ICORR 2017: 90-95 - [c12]Giulia Sedda, Marcella Ottonello, Elena Fiabane, Caterina Pistarini, Anna Sedda, Vittorio Sanguineti:
Computational rehabilitation of neglect: Using state-space models to understand the recovery mechanisms. ICORR 2017: 187-192 - 2015
- [c11]Susanna Summa, Irene Tamagnone, Giulia Asprea, Clelia Capurro, Vittorio Sanguineti:
Modulation of motor performance by a monetary incentive: A pilot study. EMBC 2015: 238-241 - [c10]Mario Saiano, Eleonora Garbarino, Simonetta Lumachi, Silvano Solari, Vittorio Sanguineti:
Effect of interface type in the VR-based acquisition of pedestrian skills in persons with ASD. EMBC 2015: 5728-5731 - 2014
- [j15]Nathanaël Jarrassé, Vittorio Sanguineti, Etienne Burdet:
Slaves no longer: review on role assignment for human-robot joint motor action. Adapt. Behav. 22(1): 70-82 (2014) - 2013
- [j14]Maura Casadio, Irene Tamagnone, Susanna Summa, Vittorio Sanguineti:
Neuromotor recovery from stroke: computational models at central, functional, and muscle synergy level. Frontiers Comput. Neurosci. 7: 97 (2013) - [c9]Irene Tamagnone, Maura Casadio, Vittorio Sanguineti:
Reward-based learning of a redundant task. ICORR 2013: 1-5 - 2011
- [c8]Angelo Basteris, Vittorio Sanguineti:
Toward 'optimal' schemes of robot assistance to facilitate motor skill learning. EMBC 2011: 2355-2358 - 2010
- [c7]Gabriel Baud-Bovy, Valentina Squeri, Vittorio Sanguineti:
Size-Change Detection Thresholds of a Hand-Held Bar at Rest and during Movement. EuroHaptics (2) 2010: 327-332
2000 – 2009
- 2007
- [j13]Antonio Novellino, Paolo D'Angelo, Laura Cozzi, Michela Chiappalone, Vittorio Sanguineti, Sergio Martinoia:
Connecting Neurons to a Mobile Robot: An In Vitro Bidirectional Neural Interface. Comput. Intell. Neurosci. 2007 (2007) - [j12]Maura Casadio, Vittorio Sanguineti, Claudio Solaro, Pietro G. Morasso:
A Haptic Robot Reveals the Adaptation Capability of Individuals with Multiple Sclerosis. Int. J. Robotics Res. 26(11-12): 1225-1233 (2007) - 2006
- [j11]Laura Cozzi, Paolo D'Angelo, Vittorio Sanguineti:
Encoding of Time-varying Stimuli in Populations of Cultured Neurons. Biol. Cybern. 94(5): 335-349 (2006) - [c6]Roberta Alessio, Laura Cozzi, Vittorio Sanguineti:
Cultures of dissociated neurons display a variety of avalanche behaviours. ESANN 2006: 515-520 - 2005
- [j10]Pietro Morasso, Alessandra Bottaro, Maura Casadio, Vittorio Sanguineti:
Preflexes and internal models in biomimetic robot systems. Cogn. Process. 6(1): 25-36 (2005) - [j9]Laura Cozzi, Paolo D'Angelo, Michela Chiappalone, Alessandro Noriaki Ide, Antonio Novellino, Sergio Martinoia, Vittorio Sanguineti:
Coding and decoding of information in a bi-directional neural interface. Neurocomputing 65-66: 783-792 (2005) - [j8]Yoshiyuki Tanaka, Toshio Tsuji, Vittorio Sanguineti, Pietro G. Morasso:
Bio-mimetic trajectory generation using a neural time-base generator. J. Field Robotics 22(11): 625-637 (2005) - 2004
- [j7]Sergio Martinoia, Vittorio Sanguineti, Laura Cozzi, Luca Berdondini, Jaap van Pelt, J. Tomas, G. Le Masson, Fabrizio Davide:
Towards an embodied in vitro electrophysiology: the NeuroBIT project. Neurocomputing 58-60: 1065-1072 (2004) - 2002
- [j6]Toshio Tsuji, Yoshiyuki Tanaka, Pietro Morasso, Vittorio Sanguineti, Makoto Kaneko:
Bio-mimetic trajectory generation of robots via artificial potential field with time base generator. IEEE Trans. Syst. Man Cybern. Part C 32(4): 426-439 (2002) - 2000
- [j5]Bernard D. Reger, Karen M. Fleming, Vittorio Sanguineti, Simon Alford, Ferdinando A. Mussa-Ivaldi:
Connecting Brains to Robots: An Artificial Body for Studying Computational Properties of Neural Tissues. Artif. Life 6(4): 307-324 (2000) - [c5]Vittorio Sanguineti, Claudio Parodi, Sergio Perissinotto, Francesco Frisone, Paolo Vitali, Pietro Morasso, Guido Rodriguez:
Analysis of fMRI Time Series with Mixtures of Gaussians. IJCNN (1) 2000: 331-335
1990 – 1999
- 1998
- [j4]Pietro G. Morasso, Vittorio Sanguineti, Francesco Frisone, Luca Perico:
Coordinate-free sensorimotor processing: computing with population codes. Neural Networks 11(7-8): 1417-1428 (1998) - 1997
- [j3]Vittorio Sanguineti, Rafael Laboissière, Yohan Payan:
A control model of human tongue movements in speech. Biol. Cybern. 77(1): 11-22 (1997) - [j2]Pietro Morasso, Vittorio Sanguineti, Gino Spada:
A computational theory of targeting movements based on force fields and topology representing networks. Neurocomputing 15(3-4): 411-434 (1997) - [c4]Pietro Morasso, Vittorio Sanguineti, Francesco Frisone:
A Principled Approach to a Theory of Self-organization in Cortical Maps Based on EM-Learning. ICONIP (1) 1997: 166-169 - [c3]Vittorio Sanguineti, Rafael Laboissière, David J. Ostry:
An integrated model of the biomechanics and neural control of the tongue, jaw, hyoid and larynx system. EUROSPEECH 1997: 2023-2026 - 1996
- [j1]Pietro Morasso, Vittorio Sanguineti:
How the brain can discover the existence of external egocentric space. Neurocomputing 12(2-3): 289-310 (1996) - 1995
- [c2]Rafael Laboissière, Vittorio Sanguineti, Yohan Payan:
On the biomechanical control variables of the tongue during speech movements. EUROSPEECH 1995: 1289-1292 - 1991
- [c1]Stefano Pagliano, Vittorio Sanguineti, Pietro G. Morasso:
A neural framework for robot motor planning. IROS 1991: 237-241
Coauthor Index
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last updated on 2024-11-11 22:24 CET by the dblp team
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