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Marco Rasponi

Showing results (31-40 of 83) with videos related to

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Lab on a Chip|March 26, 2011
How to embed three-dimensional flexible electrodes in microfluidic devices for cell culture applicationsAndrea Pavesi, Francesco Piraino, Gianfranco B Fiore, et al.
Elife|March 19, 2017
Human cardiac fibroblasts adaptive responses to controlled combined mechanical strain and oxygen changes in vitroGiovanni Stefano Ugolini, Andrea Pavesi, Marco Rasponi, et al.
Heliyon|June 14, 2023
Immunomodulatory biomimetic nanoparticles target articular cartilage trauma after systemic administrationChiara Mancino, Anna Pasto, Enrica De Rosa, et al.
Advanced Healthcare Materials|August 21, 2025
An Innovative "Tooth-On-Chip" Microfluidic Device Emulating the Structure and Physiology of the Dental Pulp TissueAlessandro Cordiale, Deborah Stanco, Roberta Visone, et al.
Scientific Reports|July 3, 2015
Controlled electromechanical cell stimulation on-a-chipAndrea Pavesi, Giulia Adriani, Marco Rasponi, et al.
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|September 11, 2025
A Compartmentalized Joint-on-chip (JoC) Model to Unravel the Contribution of Cartilage and Synovium to Osteoarthritis PathogenesisCecilia Palma, Shima Salehi, Michela Anna Polidoro, et al.
ASAIO Journal (American Society for Artificial Internal Organs : 1992)|August 2, 2007
Computational and functional evaluation of a microfluidic blood flow deviceRichard J Gilbert, Hyesung Park, Marco Rasponi, et al.
Advanced Healthcare Materials|November 9, 2023
In Vitro Mechanical Stimulation to Reproduce the Pathological Hallmarks of Human Cardiac Fibrosis on a Beating Chip and Predict The Efficacy of Drugs and Advanced TherapiesRoberta Visone, Camilla Paoletti, Alessandro Cordiale, et al.
Medical Engineering & Physics|September 5, 2017
Microfludic platforms for the evaluation of anti-platelet agent efficacy under hyper-shear conditions associated with ventricular assist devicesAnnalisa Dimasi, Marco Rasponi, Filippo Consolo, et al.
Nature Biomedical Engineering|June 5, 2019
Hyperphysiological compression of articular cartilage induces an osteoarthritic phenotype in a cartilage-on-a-chip modelPaola Occhetta, Andrea Mainardi, Emiliano Votta, et al.
Pageof 9

Showing results (31-40 of 83) with videos related to

Sort By:
Pageof 9
Lab on a Chip|March 26, 2011
How to embed three-dimensional flexible electrodes in microfluidic devices for cell culture applicationsAndrea Pavesi, Francesco Piraino, Gianfranco B Fiore, et al.
Elife|March 19, 2017
Human cardiac fibroblasts adaptive responses to controlled combined mechanical strain and oxygen changes in vitroGiovanni Stefano Ugolini, Andrea Pavesi, Marco Rasponi, et al.
Heliyon|June 14, 2023
Immunomodulatory biomimetic nanoparticles target articular cartilage trauma after systemic administrationChiara Mancino, Anna Pasto, Enrica De Rosa, et al.
Advanced Healthcare Materials|August 21, 2025
An Innovative "Tooth-On-Chip" Microfluidic Device Emulating the Structure and Physiology of the Dental Pulp TissueAlessandro Cordiale, Deborah Stanco, Roberta Visone, et al.
Scientific Reports|July 3, 2015
Controlled electromechanical cell stimulation on-a-chipAndrea Pavesi, Giulia Adriani, Marco Rasponi, et al.
Advanced Science (Weinheim, Baden-Wurttemberg, Germany)|September 11, 2025
A Compartmentalized Joint-on-chip (JoC) Model to Unravel the Contribution of Cartilage and Synovium to Osteoarthritis PathogenesisCecilia Palma, Shima Salehi, Michela Anna Polidoro, et al.
ASAIO Journal (American Society for Artificial Internal Organs : 1992)|August 2, 2007
Computational and functional evaluation of a microfluidic blood flow deviceRichard J Gilbert, Hyesung Park, Marco Rasponi, et al.
Advanced Healthcare Materials|November 9, 2023
In Vitro Mechanical Stimulation to Reproduce the Pathological Hallmarks of Human Cardiac Fibrosis on a Beating Chip and Predict The Efficacy of Drugs and Advanced TherapiesRoberta Visone, Camilla Paoletti, Alessandro Cordiale, et al.
Medical Engineering & Physics|September 5, 2017
Microfludic platforms for the evaluation of anti-platelet agent efficacy under hyper-shear conditions associated with ventricular assist devicesAnnalisa Dimasi, Marco Rasponi, Filippo Consolo, et al.
Nature Biomedical Engineering|June 5, 2019
Hyperphysiological compression of articular cartilage induces an osteoarthritic phenotype in a cartilage-on-a-chip modelPaola Occhetta, Andrea Mainardi, Emiliano Votta, et al.
Pageof 9