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A. Tirella, Liberto, T., and Ahluwalia, A., Riboflavin and collagen: New crosslinking methods to tailor the stiffness of hydrogels, Materials Letters, vol. 74, pp. 58–61, 2012 [Online]. Available: http://dx.doi.org/10.1016/j.matlet.2012.01.036
A. Tirella, Orsini, A., Vozzi, G., and Ahluwalia, A., A phase diagram for microfabrication of geometrically controlled hydrogel scaffolds, Biofabrication, vol. 1, p. 045002, 2009 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/20811111
A. Tirella and Ahluwalia, A., The impact of fabrication parameters and substrate stiffness in direct writing of living constructs, Biotechnology progress, vol. 28, pp. 1315–1320, 2012 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/22736619
A. Tirella, De Maria, C., Criscenti, G., Vozzi, G., and Ahluwalia, A., The PAM2 system: a multilevel approach for fabrication of complex three-dimensional microstructures, Rapid Prototyping Journal, vol. 18, pp. 299–307, 2012.
A. Tirella, Vozzi, F., De Maria, C., Vozzi, G., Sandri, T., Sassano, D., Cognolato, L., and Ahluwalia, A., Substrate stiffness influences high resolution printing of living cells with an ink-jet system, Journal of bioscience and bioengineering, vol. 112, pp. 79–85, 2011 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/21497548
A. Tirella, Marano, M., Vozzi, F., and Ahluwalia, A., A microfluidic gradient maker for toxicity testing of bupivacaine and lidocaine, Toxicology in vitro, vol. 22, pp. 1957–64, 2008 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/18940244
A. Tirella, Vozzi, F., Vozzi, G., and Ahluwalia, A., PAM2 (Piston Assisted Microsyringe): A New Rapid Prototyping Technique for Biofabrication of Cell Incorporated Scaffolds, Tissue Eng Part C Methods, vol. 17, 2011.
A. Tirella, Montemurro, F., Vinci, B., Vozzi, F., Vozzi, G., Sassano, D., Sandri, T., Cognolato, L., and Ahluwalia, A., Site Specific Nano-Tuning of Scaffolds Using Inkjet Printing, in NIP Conference, Austin, Texas , 2010.
A. Tirella, Vozzi, F., Vozzi, G., and Ahluwalia, A., Hydrogel Bioactive Scaffold Fabricated with PAM2 System: Realization of Complex Shaped Scaffold with a Homogeneous Dispersion of HepG2 cells, in NIP Conference, 2010.
A. Tirella, Vozzi, F., Vinci, B., Vozzi, G., and Ahluwalia, A., PAM2 microfabricated three-dimensional bioactive hydrogel systems: realisation of a hepatic-like structure, in Congresso Nazionale di Bioingegneria 2010, 2010.
A. Tirella, Vozzi, G., Tirelli, N., and Ahluwalia, A., Enzymatic cross-linked hydrogel: role of Lysyl oxidase as an initiator of fibroblast inflammatory response, in Congresso Nazionale di Bioingegneria 2010, 2010.
A. Tirella and Vozzi, G., Microfabrication of Hydrogels scaffolds including cells and mechanical characterization, in Congresso Nazionale di Bioingegneria 2008, Pisa, Italy, 2008, pp. 367-368.
A. Tirella, Vozzi, G., and Ahluwalia, A., Biomimicry of PAM Microfabricated Hydrogel Scaffolds, in International Conference on Digital Printing Technologies Conference Proceedings, 2008, p. –.
A. Tirella, De Maria, C., Vozzi, G., and Ahluwalia, A., Da scaffold a tessuti: progettazione, realizzazione e caratterizzazione di architetture 3D per la medicina rigenerativa , in Approccio Integrato per la medicina rigenerativa - book of XXXII School of Bioengineering, 2013.
A. Tirella, Mattei, G., and Ahluwalia, A., {Strain rate viscoelastic analysis of soft and highly hydrated biomaterials.}, Journal of biomedical materials research. Part A, 2013 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/23946054
A. Tirella, Mazzei, D., Vozzi, G., and Ahluwalia, A., Microfluidic Gradient Maker for Pattern Generation, in TERMIS-EU, Porto, Portugal, 2008, p. 879.
A. Tirella, Mattei, G., and Ahluwalia, A., New method for the viscoelastic analysis of soft and highly hydrated biomaterials, in National Conference of Bioengineering, Rome, Italy, 2012.
A. Tirella, Ahluwalia, A., De Maria, C., Vozzi, F., Vozzi, G., Sandri, T., Sassano, D., and Cognolato, L., How dimension a substrate for the realisation of controlled micro- and bio-inspired environment, in Euromat-FEMS, Montpellier, France, 2011.
A. Tirella, Ahluwalia, A., Aylott, J., and Carroll, L. A., {Monitoring microconstructs: cell and nanosensor encapsulation in alginate micro-beads}, in TERMIS 3rd World Congress, Vienna, Austria, 2012.
A. Tirella, La Marca, M., Carroll, L. A., Aylott, J., and Ahluwalia, A., Towards a controlled and monitorable hepatic micro-environment, in Advanced Cell Culture, Liverpool, UK, 2013.
A. Tirella, Ahluwalia, A., Di Nardo, P., Gaudiello, E., Giusti, S., and Pagliari, F., A multi-stimuli environment for cardiac tissue engineering, in TERMIS 3rd World Congress, Vienna, Austria, 2012.
A. Tirella, Carroll, L. A., Aylott, J., and Ahluwalia, A., Monitoring cell culture 3D microenvironments: oxygen and pH nano-sensors within hydrogels, in National Conference of Bioengineering, Rome, Italy, 2012.
A. Tirella, Mattei, G., Montemurro, F., Vozzi, G., and Ahluwalia, A., Modelling and realisation of smart graded hydrogel scaffolds, in Euromat-FEMS, Montpellier, France, 2011.
A. Tirella, Magliaro, C., Penta, M., Troncone, M., Pimentel, R., and Ahluwalia, A., Sphyga: a multiparameter open source tool for fabricating smart and tunable hydrogel microbeads, Biofabrication, vol. 6, no. 025009, 2014.
A. Tirella, La Marca, M., Brace, L. A., Mattei, G., Aylott, J., and Ahluwalia, A., Nano-in-Micro Self-Reporting Hydrogel Constructs, Journal of Biomedical Nanotechnology, vol. 11, pp. 1451–1460, 2015 [Online]. Available: http://openurl.ingenta.com/content/xref?genre=article&issn=1550-7033&volume=11&issue=8&spage=1451