“Biodegradable materials of poly(L-lactic acid): 1. Melt-spun and solution-spun fibres,” Eling et. al, (6 pages) (1992). |
“Bioreabsorbable Plastic Materials for Bone Surgery”, Vert, et. al, Maromolecular Biomaterials, pp. 119-141. |
“Copolyester Studies, III. Melt-Spinning, Drawing, and Mechanical Properties of Tetramethylene Terephthalate-Tetramethylene Sebacate Copolymer Fibers”, Marrs, et. al, Journal of Applied Polymer Science, vol. 23, pp. 1095-1104 (1979). |
“Elastic Moduli of Highly Oriented Polyoxymetheylene”, Choy, et al, Polymer Engineering and Science, vol. 23, No. 16, pp. 910-922, (1983). |
“Enhancement of the mechanical properties of polylactides by solid-state extrusion”, Weiler, et. al, Biomaterials, vol. 17, No. 5 pp. 529-535 (1996). |
“Resorbable Materials of Poly(L-Lactide). II Fibers Spun from Solutons of Poly (L-Lactide) in Good Solvents”, Gogolewski et al., Journal of Applied Polymer Science, vol. 28, pp. 1045-1061 (1983). |
“Standard Test Method for Tensile Properties of Plastics”, 1994 ASTM Annual Book of ASTM Standards, vol. 08.01, Plastics (I): D638 and D638M-93, pp. 47-67 (1995). |
Kirk P. Andriano et al., “Processing and Characterization of Absorbable Polylactide Polymers for Use in Surgical Implants”, Journal of Applied Biomaterials, vol. 5, pp. 133-140 (1994). |
R. Ewers, M.D. et al., “Bioabsorbable Osteosynthesis Materials”, Clinic for Maxillofacial and Plastic Face-Surgery, University of Vienna, Vienna, Austria, pp. 206-214 (1990). |
“Poly (L-Lactide) for Use as Internal Fixation Material” —biocompatibility and preparation—. Chapter 2, PhD. Thesis, pp. 7-16 (pre 1990). |