J. Brandrup et al. Entry from Kunststoff Lexikon (Dictionary of Plastics) 8th updated and expanded edition. pp. 324-325 (with English language translation). |
E. W. Fischer, et al., “Investigation of the structure of solution grown crystals of lactide copolymers by means of chemical reactions”, Kolloid-Z.u.Z Polymere, vol. 251, pp. 980-990., (1973). |
S. Vainionpaa, et al., “Surgical Applications of Biodegradable Polymers in Human Tissues” Progress in Polymer Science, vol. 14 No. 5, pp. 679-716 (1989). |
P. Tormala, et al. “Ultra-high-strength absorbable self-reinforced polyglycolide (SR-PGA) composite rods for internal fixation of bone fractures: In vitro and in vivo study” Journal of Biomedical Materials Research, vol. 25, No. 1, pp. 1-22, (1991). |
P. Tormala, et al. “Biodegradable Self-Reinforced Composite Materials; Manufacturing Structure and Mechanical Properties” Clinical Materials, vol. 10, pp. 29-34, (1992). |
P. Rokkanen, et al., “Utilization of biodegradable implants in the surgical treatment of fractures and osteotomies”, Orthopedie Traumatologie, vol. 2, pp. 107-110—Summary in English. |
E. K. Partio, “The use of plaster cast or early mobilization of ankle fractures with absorbable screws” Unfallchirurgie, vol. 18, pp. 304-310 (1992)—Abstract in English. |
H. Pihlajamaki, et al., “Absorbable Pins of Self-Reinforced Poly-L-Lactic Acid For Fixation Of Fractures And Osteotomies” The Journal of Bone and Joint Surgery vol. 74 B, No. 6, pp. 853-857 (Nov. 1992). |
Y. Matsusue, et al., “In Vitro and in Vivo studies on bioabsorbable ultra-high-strength poly(L-lactide)rods” Journal of Biomedical Materials Research, vol. 26, No. 12, pp. 1553-1567 (Dec. 1992). |
E. J. Bergsma, et al., “Foreign Body Reactions to Resorbable Poly(L-Lactide) Bone Plates and Screws Used for the Fixation of Unstable Zygomatic Fractures” Journal of Oral and Maxillofacial Surgery, vol. 51, No. 6, pp. 666-670 (Jun. 1993). |
K.E. Rehm, et al., “Report on the working group on biodegradable implants” Akutelle Traumatologie, vol. 24, pp. 70-74 (Apr. 1994)—Abstract in English. |
M. Talja, et al., “Biodegradable Self-Reinforced Polyglycolic Acid Spiral Stent In Prevention of Postoperative Urinary Retention After Visual Laser Ablation of the Prostate-Laser Prostatectomy” The Journal of Urology, vol. 154, No. 6, pp. 2089-2092 (Dec. 1995). |
S. I. Ertel, et al., “Evaluation of poly(DTH carbonate), a tyrosine-derived degradable polymer, for orthopedic applications” Journal of Biomedical Materials Research, vol. 29, No. 11, pp. 1337-1348 (Nov. 1995). |
T. Yamamuro, et al., “Bioabsorbable osteosynthetic implants of ultra high strength poly-L-lactide” International Orthopaedics, vol. 18, No. 6, pp. 332-340 (1994). |
Textbook of Fred W. Billmeyer, Jr., Polymer Science, Wiley International Edition 1962, Structure and Properties of Polymers, 170-171. |
Die Angewandte Makmolekulare Chemie 166/167 (1989) 155-168 (2786) Bioresorbable Polymers for Temporary Therapeutic Applications. |
Journal of Applied Biomaterials, vol. I, 57-78 (1990), Mechanical Properties of Biodegradable Polymers and Composites Proposed for Internal Fixation of Bone. |
Journal of Biomedical Materials Research, vol. 28, 919-930 (1994), Evaluation of a series of tyrosine-derived polycarbonates as degradable biomaterials. |