Biomedical Engineering Reference
In-Depth Information
17. Li S.M., Garreau H. and Vert M., Structure property relationships in the degradation of massive poly
( α hydroxy acids) in aqueous media. Part 3: Infl uence of the morphology of poly(L lactic acid), Journal
of Materials Science—Materials in Medicine , 1, 198-206, 1990.
18. Chu C.C., A comparison of the the effect of pH on the biodegradation of two synthetic absorbable
sutures, Annals of Surgery , 195, 55-59, 1982.
19. Makino K., Ohshima H. and Kondo T., Mechanism of hydrolytic degradation properties of poly(L-lactide)
microcapsules: Effect of pH, ionic strength and buffer concentration, Journal of Microencapsulation , 3,
203-212, 1986.
20. Chu C.C. and Moncrief G., An in vitro evaluation of the stability of mechanical properties in various pH
conditions, Annals of Surgery , 198, 223-228, 1983.
21. Weir N.A., Buchanan F.J., Orr J.F., Farrar D.F. and Boyd A., Processing, annealing and sterilisation of
poly-l-lactide, Biomaterials , 25, 3939-3949, 2004.
22. Pihaljamaki H., Salminen S., Laitinen O., Tynninen O. and Bostman O., Tissue response to polyglycolide,
polydioxanone, polylevolactide, and metallic pins in cancellous bone: An experimental study on rabbits,
Journal of Orthopaedic Research , 24, 1597-1606, 2006.
23. An Y.H., Woolf S.K. and Friedman R.J., Pre-clinical in vivo evaluation of orthopaedic bioabsorbable
devices, Biomaterials , 21, 2635-2652, 2000.
24. Ashammakhi N. and Rokkanen P., Review: Absorbable polyglycolide devices in trauma and bone sur-
gery, Biomaterials , 18, 3-9, 1997.
25. Ignatius A.A. and Claes L.E., In vitro biocompatibility of bioresorbable polymers: Poly(l, dl lactide)
and poly(l-lactide- co -glycolide), Biomaterials , 17, 831-839, 1996.
26. Hilkka H.P., Dorrit H., Terttu T., Pertti H. and Timo W., SR-PLLA and SR-PGA miniscrews:
Biodegradation and tissue reactions in the calvarium and dura mater, Journal of Cranio-Maxillofacial
Surgery , 27, 42-50, 1999.
27. Harri P., Ole B., Olli T. and Outi L., Long-term tissue response to bioabsorbable poly-l-lactide and
metallic screws: An experimental study, Bone , 39, 932-937, 2006.
28. Corden T.J., Jones I.A., Rudd C.D., Christian P., Downes S. and. McDougall K.E., Physical and bio-
compatibility properties of poly- ε -caprolactone produced using in situ polymerisation: A novel
manufacturing technique for long-fi bre composite materials, Biomaterials , 21, 713-724, 2000.
29. Serrano M.C., Pagani R., Vallet-Regí M., Peña J., Rámila A., Izquierdo I. and Portolés M.T., In vitro
biocompatibility assessment of poly ( ε -caprolactone ) fi lms using L929 mouse fi broblasts, Biomaterials ,
25, 5603-5611, 2004.
30. Li S., Garreau H. and Vert M., Structure-property relationships in the case of the degradation of mas-
sive poly( α -hydroxy acids) in aqueous media. Part 3: Infl uence of the morphology of poly(l-lactic acid),
Journal of Materials Science—Materials in Medicine , 1, 198-206, 1990.
31. Jarret P., Benedict C. and Bell J.P. et al., Mechanism of the biodegradation of of polycaprolactone,
Polymer Preprints (American Chemical Society, Division of Polymer Chemistry), 24, 32-33, 1983.
32. Pitt C.G., Chasalow F.I. and Hibionada Y.M. et al., Aliphatic polyesters. I. The degradation of
poly(caprolactone) in vivo, Journal of Applied polymer Science , 26, 3779-3787, 1981.
33. Nobuto K., Kazunori Y., Harukazu T., Masanori Y. and Yoshie T., Primary stability of three posterior
cruciate ligament reconstruction procedures: A biomechanical in vitro study arthroscopy, The Journal
of Arthroscopic and Related Surgery , 21, 970-978, 2005.
34. Suggs L.J. and Mikos A.G., Synthetic biodegradable polymers for medical applications, In: J.E. Mark,
Editor, Physical Properties of Polymers Handbook , Springer-Verlag, Berlin (1997), pp. 615-624.
35. Agrawal C.M., Best J., Heckman J.D. and Boyan B.D., Protein release kinetics of a biodegradable
implant for fracture non-unions, Biomaterials , 16, 1255-1260, 1995.
36. Lo H., Kadiyala S., Guggino S.E. and Leong K.W., Poly(l-lactic acid) foams with cell seeding and con-
trolled-release capacity, Journal of Biomedical Materials Research , 30, 475-484, 1996.
37. Athanasiou K.A., Schmitz J.P. and Agrawal C.M., The effects of porosity on degradation of PLA-PGA
implants, Tissue Engineering , 4, 53-63, 1998.
38. Agrawal C.M., McKinney J.S., Lanctot D. and Athanasiou K.A., Effects of fl uid fl ow on the in vitro deg-
radation kinetics of biodegradable scaffolds for tissue engineering, Biomaterials , 21, 2443-2452, 2000.
39. Doddi N., Versfelt C.C. and Wasserman D., Synthetic absorbable devices of polydioxanone, U.S. Patent,
4, 052,988, 1976.
40. Sabino M.A., González S., Márquez L. and Feijoo J.L., Study of the hydrolytic degradation of
polydioxanone PPDX, Polymer Degradation and Stability , 69, 209-216, 2000.
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