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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, 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
S. Giusti, Pagliari, F., Vozzi, F., Tirella, A., Mazzei, D., Cabiati, M., del Ry, S., and Ahluwalia, A., SQPR 3.0: A Sensorized Bioreactor for Modulating Cardiac Phenotype, Procedia Engineering, vol. 59, pp. 219–225, 2013 [Online]. Available: http://linkinghub.elsevier.com/retrieve/pii/S187770581301028X
L. M. Marca, Tirella, A., Mattei, G., and Ahluwalia, A., {SpHyGa: fabrication of hepatic lobule replicas using tissue derived material composites}, in ESB 2013, Madrid, 2013, p. ID 520.
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, 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.
S. Giusti, Vozzi, F., Pagliari, F., Tirella, A., Mazzei, D., Cabiati, M., del Ry, S., and Ahluwalia, A., Sensorized Squeeze Pressure Bioreactor For mechanical modulation of cardiomyocyte phenotype, in Journal of tissue engineering and regenerative medicine, 2014, vol. 8 Suppl 1, pp. 67–8 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/24912686
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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
S. Giusti, Tirella, A., Galli, E., Vozzi, F., Cabiati, M., and Ahluwalia, A., Replicating the cardiac environment in the Squeeze Pressure Bioreactor, in TERMIS 3rd World Congress, 2012.
S. Giusti, Tirella, A., Galli, E., Vozzi, F., Cabiati, M., and Ahluwalia, A., Replicating the 3D cardiomyocyte environment in the squeeze pressure bioreactor, in Journal of tissue engineering and regenerative medicine, 2012, vol. 6 Suppl 1, p. 341 [Online]. Available: http://www.ncbi.nlm.nih.gov/pubmed/22941753
G. Criscenti, Tirella, A., Ahluwalia, A., Giusti, P., and Vozzi, G., Realizzazione di strutture micro fabbricate tramite tecnica di micro Laser Sintering per applicazione alla Tissue Engineering, in Congresso Nazionale Biomateriali 2008, 2008, p. –.
A. Spinelli, Vinci, B., Tirella, A., Matteucci, M., Gargani, L., Ahluwalia, A., Domenici, C., Picano, E., and Chiarelli, P., Realization of a poro-elastic ultrasound replica of pulmonary tissue, Biomatter, vol. 2, pp. 27–26, 2012 [Online]. Available: http://www.landesbioscience.com/journals/biomatter/article/19835/
G. Vozzi, Tirella, A., and Ahluwalia, A., Rapid Prototyping Composite and Complex Scaffolds with PAM2, Methods in Molecular Biology, vol. 868, pp. 57–69, 2012.
G. Vozzi, Tirella, A., and Ahluwalia, A., Rapid Prototyping Composite and Complex Scaffolds with PAM2, in Computer-Aided Tissue Engineering, vol. 868, 2010, pp. 57-69.
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C. De Maria, Tirella, A., Ahluwalia, A., and Vozzi, G., Pneumatic module of PAM2 microfabrication system: realization of bio-inspired complex scaffolds, in 3B International Conference in Bioprinting and Biofabrication, Bordeaux, France, 2009.
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, 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. Ahluwalia, Tirella, A., and Vozzi, G., PAM2 System: a Modular Approach for the Realisation of Complex Shaped Scaffold Able to Reproduce the Main Features of a Specific Micro-environment,, in 2010 International Conference on Biofabrication, 4-6 October 2010, Philadelphia, USA, 2010.
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, 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.
M. Mattioli-Belmonte, Fantauzzi, V., KYRIAKIDOU, K., Tirella, A., Ahluwalia, A., and Vozzi, G., PAM Composite Scaffold of PCL and Carbon NanoTubes for Bone Tissue Regeneration, in National Conference of Bioengineering, Pisa, Italy, 2008, p. 369.

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