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Raffaele Molino Lova
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2010 – 2019
- 2018
- [j6]Louis L. Flynn, Joost Geeroms, Rene Jimenez-Fabian, Sophie Heins, Bram Vanderborght, Marko Munih, Raffaele Molino Lova, Nicola Vitiello, Dirk Lefeber:
The Challenges and Achievements of Experimental Implementation of an Active Transfemoral Prosthesis Based on Biological Quasi-Stiffness: The CYBERLEGs Beta-Prosthesis. Frontiers Neurorobotics 12: 80 (2018) - [j5]Stefano Betti, Raffaele Molino Lova, Erika Rovini, Giorgia Acerbi, Luca Santarelli, Manuela Cabiati, Silvia Del Ry, Filippo Cavallo:
Evaluation of an Integrated System of Wearable Physiological Sensors for Stress Monitoring in Working Environments by Using Biological Markers. IEEE Trans. Biomed. Eng. 65(8): 1748-1758 (2018) - 2017
- [j4]Virginia Ruiz Garate, Andrea Parri, Tingfang Yan, Marko Munih, Raffaele Molino Lova, Nicola Vitiello, Renaud Ronsse:
Experimental Validation of Motor Primitive-Based Control for Leg Exoskeletons during Continuous Multi-Locomotion Tasks. Frontiers Neurorobotics 11: 15 (2017) - [j3]Andrea Parri, Elena Martini, Joost Geeroms, Louis L. Flynn, Guido Pasquini, Simona Crea, Raffaele Molino Lova, Dirk Lefeber, Roman Kamnik, Marko Munih, Nicola Vitiello:
Whole Body Awareness for Controlling a Robotic Transfemoral Prosthesis. Frontiers Neurorobotics 11: 25 (2017) - 2016
- [j2]Virginia Ruiz Garate, Andrea Parri, Tingfang Yan, Marko Munih, Raffaele Molino Lova, Nicola Vitiello, Renaud Ronsse:
Walking Assistance Using Artificial Primitives: A Novel Bioinspired Framework Using Motor Primitives for Locomotion Assistance Through a Wearable Cooperative Exoskeleton. IEEE Robotics Autom. Mag. 23(1): 83-95 (2016) - [c1]Virginia Ruiz Garate, Andrea Parri, Tingfang Yan, Marko Munih, Raffaele Molino Lova, Nicola Vitiello, Renaud Ronsse:
Motor primitive-based control for lower-limb exoskeletons. BioRob 2016: 655-661 - 2014
- [j1]Luka Ambrozic, Maja Gorsic, Joost Geeroms, Louis L. Flynn, Raffaele Molino Lova, Roman Kamnik, Marko Munih, Nicola Vitiello:
CYBERLEGs: A User-Oriented Robotic Transfemoral Prosthesis with Whole-Body Awareness Control. IEEE Robotics Autom. Mag. 21(4): 82-93 (2014)
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