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Erika D'Antonio
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2020 – today
- 2023
- [j3]Elisa Galofaro, Erika D'Antonio, Nicola Lotti, Fabrizio Patane, Maura Casadio, Lorenzo Masia:
Bimanual Motor Strategies and Handedness Role in Human-Robot Haptic Interaction. IEEE Trans. Haptics 16(2): 296-310 (2023) - 2022
- [j2]Elisa Galofaro, Erika D'Antonio, Nicola Lotti, Lorenzo Masia:
Rendering Immersive Haptic Force Feedback via Neuromuscular Electrical Stimulation. Sensors 22(14): 5069 (2022) - [c6]Elisa Galofaro, Erika D'Antonio, Nicola Lotti, Lorenzo Masia:
A Hybrid Assistive Paradigm Based on Neuromuscular Electrical Stimulation and Force Control for Upper Limb Exosuits. BioRob 2022: 1-6 - [i1]Elisa Galofaro, Erika D'Antonio, Nicola Lotti, Fabrizio Patanè, Maura Casadio, Lorenzo Masia:
Bimanual Motor Strategies and Handedness Role During Human-Exoskeleton Haptic Interaction. CoRR abs/2211.12408 (2022) - 2021
- [j1]Erika D'Antonio, Elisa Galofaro, Jacopo Zenzeri, Fabrizio Patanè, Jürgen Konczak, Maura Casadio, Lorenzo Masia:
Robotic Assessment of Wrist Proprioception During Kinaesthetic Perturbations: A Neuroergonomic Approach. Frontiers Neurorobotics 15: 640551 (2021) - [c5]Erika D'Antonio, Elisa Galofaro, Fabrizio Patanè, Maura Casadio, Lorenzo Masia:
A Dual Arm Haptic Exoskeleton for Dynamical Coupled Manipulation. AIM 2021: 1237-1242 - 2020
- [c4]Erika D'Antonio, Juri Taborri, Eduardo Palermo, Stefano Rossi, Fabrizio Patanè:
A markerless system for gait analysis based on OpenPose library. I2MTC 2020: 1-6 - [c3]Erika D'Antonio, Juri Taborri, Eduardo Palermo, Stefano Rossi, Fabrizio Patanè:
Characterization of a low-cost markerless system for 3D gait analysis. MeMeA 2020: 1-6
2010 – 2019
- 2018
- [c2]Erika D'Antonio, Stefano Salvatori, Pietro Oliva, Fabrizio Patanè, Marco Girolami, Daniele Maria Trucchi:
High Precision Integrator for CVD-Diamond Detectors for Dosimetric Applications. MeMeA 2018: 1-6 - [c1]Erika D'Antonio, Stefano Salvatori, Fabrizio Patanè, Alberto Marzegan, Gianluca Bonora, Ilaria Carpinella, Maurizio Ferrarin, Stefano Rossi:
Optoelectronic-system based characterization of a robotic device for evaluation and rehabilitation of balance disorders. MeMeA 2018: 1-5
Coauthor Index
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