Biomedical Engineering Reference
In-Depth Information
66. Milroy, G. E., Cameron, R. E., Mantle, M. D., Gladden, L. F. and Huatan, H.,
The distribution of water in degrading polyglycolide. Part II: Magnetic resonance
imaging and drug release. Journal of Materials Science: Materials in Medicine ,
465-473 (2003).
67. Chu, C. C., Degradation phenomena of two linear aliphatic polyester fibres used
in medicine and surgery. Polymer 26 , 591-594 (1985).
68. Cutright, D. E., Hunsuck, E. E. and Beasley, J. D., Degradation rates of polymers
and copolymers of polylactic and polyglycolic acids. Oral Surgery , 142-152
(1974).
69. Ginde, R. M. and Gupta, R. K., In vitro chemical degradation of poly(glycolic
acid) pellets and fibres. Journal of Applied Polymer Science 33 , 2411 (1987).
70. Makino, K., Ohshima, H. and Kondo, T., Mechanism of hydrolytic degradation of
poly( l -lactide) microcapsules: effects of pH, ionic strength and buffer concentration.
Journal of Microencapsulation 3 , 203-212 (1986).
71. Zaikov, G. E., Quantitative aspects of polymer degradation in the living body.
Journal of Macromolecular Science, Part C: Polymer Reviews C25 , 551-597
(1985).
72. Schmitt, E. A., Flanagan, D. R. and Linhardt, R. J., Importance of distinct water
environments in the hydrolysis of poly( d l -lactide-co-glycolide). Macromolecules
27 , 743-748 (1994).
73. Pratt, L., Chu, C., Auer, J., Chu, A., Kim., J., Zollweg, J. A. and Chu, C. C., The
effect of ionic electrolytes on hydrolytic degradation of biodegradable polymers:
mechanical and thermodynamic properties and molecular modeling. Journal of
Polymer Science: Part A: Polymer Chemistry 31 , 1759-1769 (1993).
74. Mason, M. S., Miles, C. S. and Sparks, R. E., Polymer Science Technology 14 ,
279 (1981).
75. Zhu, J. H., Shen, Z. R., Wu, L. T. and Yang, S. L., In vitro degradation of polylactide
and poly(lactide-co-glycolide) microspheres. Journal of Applied Polymer Science
43 , 2099-2106 (1991).
76. Park, T. G., Degradation of poly(lactic-co-glycolic acid) microspheres: effects of
copolymer composition. Biomaterials 16 , 1123-1130 (1995).
77. Visscher, G. E., Pearson, J. E., Fong, J. W., Argentieri, G. J. and Robinson, R. L.,
Journal of Biomedical Materials Research 22 , 733 (1988).
78. Kyriacos, A., Athanasiou, A., Gabriele, G., Neiderauer, G. and Agrawal, C.,
Sterilisation, toxicity, biocompatibility and clinical applications of polylactic acid/
polyglycolic acid copolymers. Biomaterials 17 , 93-102 (1996).
79. Vainionpaa, S., Kilpikari, J., Laiho, J., Helevirta, P., Rokkanen, P. and Törmälä, P.,
Strength and strength retention in vitro , of absorbable, self reinforced polyglycolide
(PGA) rods for fracture fixation. Biomaterials 8 , 46-49 (1987).
80. Lin, A. S. P., Barrows, T. H., Cartmell, S. H. and Guldberg, R. E., Microarchitectural
and mechanical characterisation of oriented porous polymer scaffolds. Biomaterials
24 , 482-489 (2003).
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