Rapid manufacturing of multilayered microfluidic devices for organ on a chip applications R Paoli, D Di Giuseppe, M Badiola-Mateos, E Martinelli, ... Sensors 21 (4), 1382, 2021 | 30 | 2021 |
Neuromuscular activity induces paracrine signaling and triggers axonal regrowth after injury in microfluidic lab-on-chip devices J Sala-Jarque, F Mesquida-Veny, M Badiola-Mateos, J Samitier, ... Cells 9 (2), 302, 2020 | 25 | 2020 |
Challenges and future prospects on 3D in-vitro modelling of the neuromuscular circuit M Badiola-Mateos, A Hervera, JA Del Río, J Samitier Medical and Industrial Applications of Microfluidic-based Cell/Tissue …, 2019 | 20* | 2019 |
A novel multi-frequency trans-endothelial electrical resistance (MTEER) sensor array to monitor blood-brain barrier integrity M Badiola-Mateos, D Di Giuseppe, R Paoli, MJ Lopez-Martinez, ... Sensors and Actuators B: Chemical 334, 129599, 2021 | 18 | 2021 |
3D bioprinting of thermosensitive inks based on gelatin, hyaluronic acid, and fibrinogen: reproducibility and role of printing parameters F Iberite, M Badiola-Mateos, S Loggini, C Paci, J Ruspi, D Iachetta, ... Bioprinting 39, e00338, 2024 | 4 | 2024 |
In vitro modelling of human proprioceptive sensory neurons in the neuromuscular system M Badiola-Mateos, T Osaki, RD Kamm, J Samitier Scientific Reports 12 (1), 1-19, 2022 | 4 | 2022 |
Pluripotent Stem Cells and Skeletal Muscle Differentiation: Challenges and Immediate Applications E Garreta, A Marco, C Eguizábal, C Tarantino, M Samitier, M Badiola, ... The Plasticity of Skeletal Muscle: From Molecular Mechanism to Clinical …, 2017 | 1 | 2017 |
Compartmentalised microfluidic culture systems for in vitro modelling of neurological and neuromuscular microenvironments M Badiola Mateos Universitat de Barcelona, 2021 | | 2021 |
A novel multi-frequency trans-endothelial electrical resistance (MTEER) sensor array to monitor blood-brain barrier integrity D Giuseppe, A Mencattini, J Samitier i Martí, E Martinelli, ... | | |