Calcium and zinc ion release from polyalkenoate cements formed from zinc oxide/apatite mixtures
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[1] G. Tortora,et al. Illustratedc notebook to accompany Introduction to the human body : the essentials of anatomy and physiology, seventh edition , 2007 .
[2] G. Danscher,et al. The positive effects of zinc on skeletal strength in growing rats. , 2001, Bone.
[3] T. Kokubo,et al. Effect of polyacrylic acid on the apatite formation of a bioactive ceramic in a simulated body fluid: fundamental examination of the possibility of obtaining bioactive glass-ionomer cements for orthopaedic use. , 2001, Biomaterials.
[4] M. Buggy,et al. In Vitro Response of Osteoblast-Like Cells to Hydroxyapatite-Zinc Oxide-Poly(Acrylic Acid) Cements , 2001 .
[5] M. Buggy,et al. The influence of hydroxyapatite: Zinc oxide ratio on the setting behavior and mechanical properties of polyalkenoate cements , 2001, Journal of materials science. Materials in medicine.
[6] M. Vallet‐Regí,et al. Static and dynamic in vitro study of a sol-gel glass bioactivity. , 2001, Biomaterials.
[7] I. Silver,et al. Interactions of bioactive glasses with osteoblasts in vitro: effects of 45S5 Bioglass, and 58S and 77S bioactive glasses on metabolism, intracellular ion concentrations and cell viability. , 2001, Biomaterials.
[8] M. Towler,et al. The influence of poly(acrylic acid) molar mass on the properties of polyalkenoate cements formed from zinc oxide/apatite mixtures , 2000, Journal of materials science. Materials in medicine.
[9] M. Yamaguchi,et al. Stimulatory effect of zinc acexamate administration on fracture healing of the femoral-diaphyseal tissues in rats. , 1999, General pharmacology.
[10] P. Revell,et al. In vivo skeletal response and biomechanical assessment of two novel polyalkenoate cements following femoral implantation in the female New Zealand White rabbit , 1998, Journal of materials science. Materials in medicine.
[11] G. Tortora. Introduction to the Human Body: The Essentials of Anatomy and Physiology , 1997 .
[12] D. Williams,et al. Biocompatibility of glass ionomer cements. , 1993, Biomaterials.
[13] R. Hill. The fracture properties of glass polyalkenoate cements as a function of cement age , 1993, Journal of Materials Science.
[14] R. Utley. Nutritional factors associated with wound healing in the elderly. , 1992, Ostomy/wound management.
[15] D. Wood,et al. Glass ceramic approach to controlling the properties of a glass-ionomer bone cement. , 1991, Biomaterials.
[16] C. Grobbelaar,et al. The biocompatibility of glass-ionomer cement in joint replacement: Bulk testing , 1989 .
[17] Y. Suketa,et al. Stimulatory effect of zinc on bone formation in tissue culture. , 1987, Biochemical pharmacology.
[18] W. Long,et al. ZINC AND WOUND HEALING , 1967, Surgery, gynecology & obstetrics.
[19] A. D. Wilson,et al. The properties of a glass ionomer cement , 1973, British Dental Journal.
[20] D. Smith,et al. The biological response to zinc polyacrylate cement. , 1972, Clinical orthopaedics and related research.
[21] D. Smith. Medical and dental applications of cements. , 1971, Journal of biomedical materials research.