PASQUINI, MARIA
PASQUINI, MARIA
Istituto di Biorobotica
A robotic system for adaptive training and function assessment of forelimb retraction in mice
2018-01-01 Pasquini, Maria; Lai, Stefano; Spalletti, Cristina; Cracchiolo, Marina; Conti, Sara; Panarese, Alessandro; Matteo, Caleo; Micera, Silvestro
Combining Optogenetic Stimulation and Motor Training Improves Functional Recovery and Perilesional Cortical Activity
2022-01-01 Conti, E.; Scaglione, A.; de Vito, G.; Calugi, F.; Pasquini, M.; Pizzorusso, T.; Micera, S.; Allegra Mascaro, A. L.; Pavone, F. S.
Experimental and Computational Study on Motor Control and Recovery After Stroke: Toward a Constructive Loop Between Experimental and Virtual Embodied Neuroscience
2020-01-01 Allegra Mascaro, A. L.; Falotico, E.; Petkoski, S.; Pasquini, M.; Vannucci, L.; Tort-Colet, N.; Conti, E.; Resta, F.; Spalletti, C.; Ramalingasetty, S. T.; von Arnim, A.; Formento, E.; Angelidis, E.; Blixhavn, C. H.; Leergaard, T. B.; Caleo, M.; Destexhe, A.; Ijspeert, A.; Micera, S.; Laschi, C.; Jirsa, V.; Gewaltig, M. -O.; Pavone, F. S.
Fast-Spiking Interneurons of the Premotor Cortex Contribute to Initiation and Execution of Spontaneous Actions
2023-01-01 Giordano, N.; Alia, C.; Fruzzetti, L.; Pasquini, M.; Palla, G.; Mazzoni, A.; Micera, S.; Fogassi, L.; Bonini, L.; Caleo, M.
Preclinical upper limb neurorobotic platform to assess, rehabilitate, and develop therapies
2022-01-01 Pasquini, M.; James, N. D.; Dewany, I.; Coen, F. -V.; Cho, N.; Lai, S.; Anil, S.; Carpaneto, J.; Barraud, Q.; Lacour, S. P.; Micera, S.; Courtine, G.
Towards in-silico robotic post-stroke rehabilitation for mice
2019-01-01 Vannucci, Lorenzo; Pasquini, Maria; Spalletti, Cristina; Caleo, Matteo; Micera, Silvestro; Laschi, Cecilia; Falotico, Egidio
Wide-field imaging of cortical neuronal activity with red-shifted functional indicators during motor task execution
2019-01-01 Montagni, E.; Resta, F.; Conti, E.; Scaglione, A.; Pasquini, M.; Micera, S.; Mascaro, A. L. A.; Pavone, F. S.
Titolo | Data di pubblicazione | Autore(i) | File |
---|---|---|---|
A robotic system for adaptive training and function assessment of forelimb retraction in mice | 1-gen-2018 | Pasquini, Maria; Lai, Stefano; Spalletti, Cristina; Cracchiolo, Marina; Conti, Sara; Panarese, Alessandro; Matteo, Caleo; Micera, Silvestro | |
Combining Optogenetic Stimulation and Motor Training Improves Functional Recovery and Perilesional Cortical Activity | 1-gen-2022 | Conti, E.; Scaglione, A.; de Vito, G.; Calugi, F.; Pasquini, M.; Pizzorusso, T.; Micera, S.; Allegra Mascaro, A. L.; Pavone, F. S. | |
Experimental and Computational Study on Motor Control and Recovery After Stroke: Toward a Constructive Loop Between Experimental and Virtual Embodied Neuroscience | 1-gen-2020 | Allegra Mascaro, A. L.; Falotico, E.; Petkoski, S.; Pasquini, M.; Vannucci, L.; Tort-Colet, N.; Conti, E.; Resta, F.; Spalletti, C.; Ramalingasetty, S. T.; von Arnim, A.; Formento, E.; Angelidis, E.; Blixhavn, C. H.; Leergaard, T. B.; Caleo, M.; Destexhe, A.; Ijspeert, A.; Micera, S.; Laschi, C.; Jirsa, V.; Gewaltig, M. -O.; Pavone, F. S. | |
Fast-Spiking Interneurons of the Premotor Cortex Contribute to Initiation and Execution of Spontaneous Actions | 1-gen-2023 | Giordano, N.; Alia, C.; Fruzzetti, L.; Pasquini, M.; Palla, G.; Mazzoni, A.; Micera, S.; Fogassi, L.; Bonini, L.; Caleo, M. | |
Preclinical upper limb neurorobotic platform to assess, rehabilitate, and develop therapies | 1-gen-2022 | Pasquini, M.; James, N. D.; Dewany, I.; Coen, F. -V.; Cho, N.; Lai, S.; Anil, S.; Carpaneto, J.; Barraud, Q.; Lacour, S. P.; Micera, S.; Courtine, G. | |
Towards in-silico robotic post-stroke rehabilitation for mice | 1-gen-2019 | Vannucci, Lorenzo; Pasquini, Maria; Spalletti, Cristina; Caleo, Matteo; Micera, Silvestro; Laschi, Cecilia; Falotico, Egidio | |
Wide-field imaging of cortical neuronal activity with red-shifted functional indicators during motor task execution | 1-gen-2019 | Montagni, E.; Resta, F.; Conti, E.; Scaglione, A.; Pasquini, M.; Micera, S.; Mascaro, A. L. A.; Pavone, F. S. |