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Materiali e Tecnologie per la realizzazione di sostituti - FedOA ...

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RIFERIMENTI BIBLIOGRAFICI - 265<br />

[ 49 ]. Owan, I., Burr, D. B., Turner, C. H., Qiu, J., Tu, Y., Onyia, J. E. & Duncan, R. L. (1997) Am. J.Phys.<br />

273, C810–C815.<br />

[ 50 ]. Smalt, R.,Mitchell, F. T., Howard, R. L. & Chambers, T. J. – (1997) Am. J. Phys. 273, E751–E758. 22.<br />

[ 51 ]. V. Barron, E. Lyons, C. Stenson-Cox, P.E. McHugh, A.Pan<strong>di</strong>t - Bioreactors for Car<strong>di</strong>ovascu<strong>la</strong>r Cell<br />

and Tissue Growth: A Review - Annals of Biome<strong>di</strong>cal Engineering, Vol. 31, pp. 1017–1030,<br />

2003.<br />

[ 52 ]. Ivan Martin, David Wendt and Michael Heberer - The role of bioreactors in tissue engineering -<br />

Biotechnology Vol.22 No.2 February 2004;<br />

[ 53 ]. X. Yu, C.T. Laurencin - Bioreactor-based bone tissue engineering - PNAS August 2004 vol.<br />

101 no. 31, 11203–11208<br />

[ 54 ]. G.N. Bancroft, A.G. Mikos - Fluid flow increases mineralized matrix deposition in 3D<br />

<strong>per</strong>fusion culture of marrow stromal osteob<strong>la</strong>sts in a dose-dependent manner - PNAS<br />

October 2002 vol. 99 no. 20, 12600–12605.<br />

[ 55 ]. X.P. Ma – Scaffolds for Tissue engineering – Materials Today - May 2004 - p.30-40<br />

[ 56 ]. M.A.K. Liebschner and M. A. Wettergreen - Optimization of Bone Scaffold Engineering for Load<br />

Bearing Applications - Topics in Tissue Engineering 2003. Eds. N. Ashammakhi & P. Ferretti<br />

[ 57 ]. E.Rabkin, F.J. Schoen - Car<strong>di</strong>ovascu<strong>la</strong>r tissue engineering - Car<strong>di</strong>ovascu<strong>la</strong>r Pathology 11 (2002)<br />

305– 317<br />

[ 58 ]. A. J. Salgado, O. P. Coutinho, R. L. Reis - Bone Tissue Engineering: State of the Art and Future<br />

Trends - Macromol. Biosci. 2004, 4, 743–765;<br />

[ 59 ]. Leong K. F., Cheah C. M., Chua C. K. - Solid freeform fabrication of three-<strong>di</strong>mensional scaffolds<br />

for engineering rep<strong>la</strong>cement tissues and organs - Biomaterials 24 (2003): 2363-2378;.<br />

[ 60 ]. S.Yang, K. F. Leong, Z. Du, C. K. Chua - Tissue Eng. 2001,7, 679.<br />

[ 61 ]. J. E. Davies - Int. J. Prosthodont. 1998, 11, 391.<br />

[ 62 ]. T. Albrektsson, C. Johansson, Eur. Spine J. 2001, 10.<br />

[ 63 ]. C. M. Agrawal, R. B. Ray, - J. Biomed. Mater. Res. 2001, 55-144.<br />

[ 64 ]. R.C. Thomson, M.J. Yaszemsky, A.G. Mikos – Polymer scaffold processing – Principles of tissue<br />

engineering cap.18 – 1997.<br />

[ 65 ]. Synthesis of biodegradable polymers, in: W. Schnabel (Ed.), Polymer Degradation, Hauser<br />

International, Wien, 1981, p.169-173.<br />

[ 66 ]. K. Van de Velde, P. Kiekens - Thermop<strong>la</strong>stic polymers: overview of several pro<strong>per</strong>ties and their<br />

consequences in polymer/f<strong>la</strong>x composites - Polymer Testing 20 (8) (2001) 885-893.<br />

[ 67 ]. D.F. Williams - Review: biodegradation of surgical polymers. J. Mater. Sci. 1982, 17, 1233-<br />

1246.<br />

[ 68 ]. K.Van de Velde, P.Kiekens – Biopolymers: overview of several pro<strong>per</strong>ties and consequences of<br />

on their applications – Polymer testing 21 (2002), 433-442;<br />

[ 69 ]. S.A.M. Ali, S.P. Zhong, P.J. Doherty, D.F: Williams - Mechanism of polymer degradation in<br />

imp<strong>la</strong>ntable devices – Biomaterials - vol.14 no.9. (1993).<br />

[ 70 ]. W.L.Murphy, R.G.Dennis, J.L.Kileny D.J.Mooney – Salt fusion: An approach to improve pore<br />

interconnectivity within tissue engineering scaffolds – Tissue Engineering vol.8, N. 1, 2002.<br />

[ 71 ]. D.W. Hutmacher – Scaffold design and fabrication technologies for engineering tissues –<br />

state of the art and future <strong>per</strong>spectives – J. Biomater. Sci. Polymer Edn, Vol.12, 1, 107-124<br />

(2001).<br />

[ 72 ]. Yoshikawa T., Ohgushi H., Tamai S. - Interme<strong>di</strong>ate bone forming capability of prefabricated<br />

osteogenic hydroxyapatite. - J Biomed Mater Res 1996; 32(3): 481-92;

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