NAVA, MICHELE
NAVA, MICHELE
DIPARTIMENTO DI CHIMICA, MATERIALI E INGEGNERIA CHIMICA "GIULIO NATTA"
A 3D Multiphysic Model for the Prediction of Engineered Tissue Growth in Perfused Bioreactors
2011-01-01 Lagana', Matteo; A., Mara; Nava, Michele; Raimondi, MANUELA TERESA
A multiphysics 3D model of tissue growth under interstitial perfusion in a tissue-engineering bioreactor
2013-01-01 Nava, Michele; Raimondi, MANUELA TERESA; Pietrabissa, Riccardo
A strain-dependent diffusivity model to study the nuclear import of mechanobiological transcription factors
2015-01-01 Nava, Michele; Fedele, Roberto; Raimondi, MANUELA TERESA
Bio-chemo-mechanical models for nuclear deformation in adherent eukaryotic cells
2014-01-01 Nava, Michele; Raimondi, MANUELA TERESA; Pietrabissa, Riccardo
Breakthroughs in Computational Modeling of Cartilage Regeneration in Perfused Bioreactors
2011-01-01 Raimondi, MANUELA TERESA; P., Causin; A., Mara; Nava, Michele; Lagana', Matteo; Sacco, Riccardo
Computational prediction of strain-dependent diffusion of transcription factors through the cell nucleus
2016-01-01 Nava, Michele; Fedele, Roberto; Raimondi, MANUELA TERESA
Controlling self renewal and differentiation of stem cells via mechanical cues.
2012-01-01 Nava, Michele; Raimondi, MANUELA TERESA; Pietrabissa, Riccardo
Coupling in vitro and in silico models for systematic 3D tissue engineering research
2012-01-01 Lagana', Matteo; Nava, Michele; Raimondi, MANUELA TERESA
Direct photo-patterning of hyaluronic acid baits onto a fouling-release perfluoropolyether surface for selective cancer cells capture and immobilization
2016-01-01 Credi, Caterina; DE MARCO, Carmela; Molena, Elena; Nava, Michele; Raimondi, MANUELA TERESA; Levi, Marinella; Turri, Stefano
Experimental/computational approach of the nuclear pore complex mechanics
2016-01-01 Garcia, A.; Marotta, R.; Tunesi, Marta; Nava, Michele; Fedele, Roberto; Jacchetti, Emanuela; RODRIGUEZ MATAS, JOSE FELIX; Raimondi, MANUELA TERESA
Hollow Fiber Bioreactor Technology for Tissue Engineering Applications
2016-01-01 Eghbali, H; Nava, Michele; Mohebbi Kalhori, D; Raimondi, MANUELA TERESA
Meccanobiologia in medicina rigenerativa
2013-01-01 Raimondi, MANUELA TERESA; Nava, Michele; Pietrabissa, Riccardo
Microfluidic testing of the neuroprotective effect of mesenchymal stromal cells using a 3D model of Parkinson’s disease
2014-01-01 Tunesi, Marta; Nava, Michele; F., Caterina; Giordano, Carmen; D., Albani; Raimondi, MANUELA TERESA
Neuroprotective effect of mesenchymal stromal cells in a 3D model of Parkinson’s disease
2014-01-01 Tunesi, Marta; Nava, Michele; F., Caterina; Giordano, Carmen; D., Albani; Raimondi, MANUELA TERESA
Optimization of femtosecond laser polymerized structural niches to control mesenchymal stromal cell fate in culture.
2014-01-01 Raimondi, MANUELA TERESA; Nava, Michele; Eaton, SHANE MICHAEL ADLER; S., Bernasconi; K. C., Vishnubhatla; Cerullo, GIULIO NICOLA; Osellame, Roberto
The effect of physical constraints on the function of cultured embryonic stem cells
2016-01-01 Nava, Michele; Piuma, A; Figliuzzi, M; Cattaneo, I; Bonandrini, Barbara; Zandrini, Tommaso; Cerullo, GIULIO NICOLA; Osellame, Roberto; Remuzzi, A; Raimondi, MANUELA TERESA
Three-dimensional structural niches engineered via two-photon laser polymerization promote stem cell homing
2013-01-01 Raimondi, MANUELA TERESA; S. M., Eaton; Lagana', Matteo; V., Aprile; Nava, Michele; Cerullo, GIULIO NICOLA; Osellame, Roberto
Two-photon laser polymerization: from fundamentals to biomedical application in tissue engineering and regenerative medicine.
2012-01-01 Raimondi, MANUELA TERESA; Eaton, Sm; Nava, Michele; Lagana', Matteo; Cerullo, GIULIO NICOLA; Osellame, Roberto
Two-photon polymerization for engineering stem cell niches
2012-01-01 Nava, Michele; Lagana', Matteo; Raimondi, MANUELA TERESA; V., Aprile; S. M., Eaton; Cerullo, GIULIO NICOLA; Osellame, Roberto
Two-photon polymerization for osteo-chondral tissue engineering
2012-01-01 Nava, Michele; Lagana', Matteo; Raimondi, MANUELA TERESA; V., Aprile; S. M., Eaton; Cerullo, GIULIO NICOLA; Osellame, Roberto