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Mechanical studies of the bone-bioglass interfacial bond
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Weinstein, A.M., Klawitter, J.J. and Cook, S.D. (1980). Implant-bone interface characteristics of bioglass dental implants, J Biomed. Mater. Res., 14, 23-29.
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Hench, L.L. and West, J.K. (1996). Biological applications of bioactive glasses, Life Chem. Rep., 13, 187-241.
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Hench, L.L. (1998). Bioceramics, J.Am. Ceram. Soc., 81, 1705-1728.
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A new glass-ceramic for bone replacement: Evaluation of its bonding to bone tissue
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Nakamura, T., Yamamuro, T., Higashi, S., et al. (1985). A new glass-ceramic for bone replacement: evaluation of its bonding to bone tissue, J Biomed. Mater. Res., 19, 685-698.
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Kangasniemi, K. and Yli-Urpo, A. (1990). “Biological Response to Glasses in the SiO2-Na2O-CaO-P2O5-B2O3 System”, in Yamamuro, T., Hench L.L. and Wilson, J. (eds), Handbook of Bioactive Ceramics, vol. 1, CRC Press, Boca Raton, FL, pp. 97-108.
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Oonishi, H., Hench, L.L., Wilson, J., et al. (2000). Quantitative comparison of bone growth behaviour in granules in bioglass®, A-W glass ceramic, and hydroxyapatite, J.Biomed. Mater. Res., 51, 37-46.
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Assessment of resorbable bioactive material for grafting of critical-size cancellous defects
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Wheeler, D.L., Eschbach, E.J., Hoellrich, R.G., et al. (2000). Assessment of resorbable bioactive material for grafting of critical-size cancellous defects, J Orthop. Res., 18,140-148.
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Hench L.L. and Wilson, J. (eds), Chapman & Hall, London
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Lobel, K. (1996). “Ossicular Replacement Prostheses”, in Hench L.L. and Wilson, J. (eds), Clinical Performance of Skeletal Prostheses, Chapman & Hall, London.
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Hench, L.L., Polak, J.M., Xynos, I.D., et al. (2000). Bioactive materials to control cell cycle, Mater. Res. Innovat., 3, 313-323.
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Bioglass® 45S5 stimulates osteoblast turnover and enhances bone formation in vitro: Implications and applications for bone tissue engineering
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