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Francesca Callegari
ORCID
Publication Activity (10 Years)
Years Active: 2022-2024
Publications (10 Years): 9
Top Topics
Brain Injury
Hyaluronic Acid
Solar Cells
Resting State
Top Venues
PLoS computational biology
APL bioengineering
Micromachines
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This page only lists publications with an associated author ORCID identifier.
Publications
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Francesca Callegari
,
Martina Brofiga
,
Mariateresa Tedesco
,
Paolo Massobrio
Electrophysiological features of cortical 3D networks are deeply modulated by scaffold properties.
APL bioengineering
8 (3) (2024)
Francesca Callegari
,
Martina Brofiga
,
Mariateresa Tedesco
,
Paolo Massobrio
Electrophysiological features of cortical 3D networks are deeply modulated by scaffold properties.
APL bioengineering
8 (3) (2024)
Francesca Callegari
,
Martina Brofiga
,
Paolo Massobrio
Modeling the three-dimensional connectivity of in vitro cortical ensembles coupled to Micro-Electrode Arrays.
PLoS computational biology
19 (2) (2023)
Francesca Callegari
,
Martina Brofiga
,
Paolo Massobrio
Modeling the three-dimensional connectivity of in vitro cortical ensembles coupled to Micro-Electrode Arrays.
PLoS computational biology
19 (2) (2023)
Francesca Callegari
,
Martina Brofiga
,
Paolo Massobrio
Modeling the three-dimensional connectivity of in vitro cortical ensembles coupled to Micro-Electrode Arrays.
PLoS computational biology
19 (2) (2023)
Francesca Callegari
,
Martina Brofiga
,
Paolo Massobrio
Modeling the three-dimensional connectivity of in vitro cortical ensembles coupled to Micro-Electrode Arrays.
PLoS computational biology
19 (2) (2023)
Francesca Callegari
,
Martina Brofiga
,
Paolo Massobrio
Modeling the three-dimensional connectivity of in vitro cortical ensembles coupled to Micro-Electrode Arrays.
PLoS computational biology
19 (2) (2023)
Francesca Callegari
,
Martina Brofiga
,
Paolo Massobrio
Modeling the three-dimensional connectivity of in vitro cortical ensembles coupled to Micro-Electrode Arrays.
PLoS computational biology
19 (2) (2023)
Francesca Callegari
,
Martina Brofiga
,
Fabio Poggio
,
Paolo Massobrio
Stimulus-Evoked Activity Modulation of In Vitro Engineered Cortical and Hippocampal Networks.
Micromachines
13 (8) (2022)