Bioactive Glasses. Materials, Properties and Applications by H.O. Ylänen (Eds.)

By H.O. Ylänen (Eds.)

As a result of their biocompatibility and bioactivity, bioactive glasses are used as powerful implant fabrics in the course of the human physique to exchange or fix broken tissue. for this reason, they've been in non-stop use considering that presently after their invention within the overdue Sixties and are the topic of intensive examine worldwide.

Bioactive glasses offers readers with an in depth evaluation of the present prestige of this special fabric, its homes, applied sciences and purposes. Chapters partly one take care of the fabrics and mechanical houses of bioactive glass, studying issues comparable to floor amendment and telephone interplay. half is focussed at the purposes of bioactive glasses, masking their makes use of in wound therapeutic, maxillofacial surgical procedure and bone tissue engineering, between different topics.

With its distinct editor and professional group of participants, Bioactive glasses is a useful reference for researchers and scientists within the box of biomaterials, either in academia and in industry.

  • Provides an in depth evaluate of bioactive glasses, its houses, applied sciences and applications
  • An worthwhile reference for researchers and scientists within the box of biomaterials, either in academia and in industry
  • Comprehensively covers fabrics and mechanical homes of bioactive glass and its functions, together with wound therapeutic, maxillofacial surgical procedure and bone tissue engineering

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Bioactive Glasses. Materials, Properties and Applications

Because of their biocompatibility and bioactivity, bioactive glasses are used as powerful implant fabrics in the course of the human physique to exchange or fix broken tissue. for that reason, they've been in non-stop use given that almost immediately after their invention within the past due Sixties and are the topic of intensive examine around the world.

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In situ pH within particle beds of bioactive glasses. Acta Biomaterialia, 4 (5), 1498–505. , Aro, H. , 2009. Predicting physical and chemical properties of bioactive glasses from chemical composition. Part 3: in vitro reactivity. Glass Technology: European Journal of Glass Science and Technology, Part A, 50 (1), 1–8. , Viljanen, M. , 2010. Antibacterial effects and dissolution behavior of six bioactive glasses. Journal of Biomedical Materials Research, Part A, 93A (2), 475–83. © Woodhead Publishing Limited, 2011 2 Surface modification of bioactive glasses J.

Surface modification of bioactive glasses and ceramics. In: D. E. Clark and K. Z. Zoitos, eds. Corrosion of Glass, Ceramics and Ceramic Superconductors: Principles, Testing, Characterization and Applications. Park Ridge: Noyes Publications, pp. 298–314. Hench, L. , 1993a. Bioactive glasses. In: L. L. Hench and J. Wilson, eds. 1. Singapore: World Scientific, pp. 41–56. Hench, L. , Andersson, Ö. , 1993b. Bioactive glass coatings. In: L. L. Hench and J. Wilson, eds. An Introduction to Bioceramics.

2001. Dose-dependent behavior of bioactive glass dissolution. Journal of Biomedical Materials Research, 58 (6), pp. 720–26. Jones, J. , 2008. Bioactive glass. In: T. Kokubo, ed. Bioceramics and Their Clinical Applications. , pp. 266–86. Jones, J. , 2009. New trends in bioactive scaffolds: The importance of nanostructure. Journal of the European Ceramic Society, 29 (7), 1275–81. Karlsson, K. , 1998. Property-composition relationships for potentially bioactive glasses. Glass Science and Technology (Frankfurt/Main), 71 (5), 141–5.

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