By Sam Zhang
Written in a flexible, modern kind that might gain either beginner and specialist alike, Biological and Biomedical Coatings instruction manual, Two-Volume Set covers the cutting-edge within the improvement and implementation of complicated skinny motion pictures and coatings within the organic box.
Consisting of 2 volumes—Processing and Characterization and Applications—this instruction manual info the newest realizing of advances within the layout and function of organic and biomedical coatings, overlaying an unlimited array of fabric varieties, together with bio-ceramics, polymers, glass, chitosan, and nanomaterials. participants delve right into a wide selection of novel ideas utilized in the manufacture and checking out of scientific purposes for coatings within the clinical box, rather within the rising sector of regenerative drugs.
Building at the theoretical and methodological basics of coatings as provided within the first quantity, Applications covers:
- Biological/biomedical implants and different functions of carbon-based materials
- Control of drug free up from coatings
- MIcrofluidic and biosensing/bioactive coatings and applications
- Surfaces and coatings of orthopedic, dental, and different implants
- Sol–gel-derived hydroxyapatite coatings on metal implants
- Impedance spectroscopy
With chapters authored via international specialists on the leading edge of study of their respective parts, this well timed set offers searing insights and useful info to discover a topic that's basic to the good fortune of biotechnological pursuits.
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Additional info for Biological and biomedical coatings handbook
Fini. 2001. Hydroxy- and fluorapatite films on Ti alloy substrates: Sol–gel preparation and characterization. Journal of Materials Science 36 (13):3253–3260. Chai, C. , and B. Ben-Nissan. 1999. Bioactive nanocrystalline sol–gel hydroxyapatite coatings. Journal of Materials Science: Materials in Medicine 10 (8):465–469. Chang, C. , J. S. L. Mao, and C. X. Ding. 2001. Mechanical and histological evaluations of hydroxyapatite-coated and noncoated Ti6Al4V implants in tibia bone. Journal of Biomedical Materials Research 56 (1):17–23.
Analytical Chemistry 71 (1):149–153. , and C. Rey. 2002. Adsorption of proteins and calcium phosphate materials bioactivity. Biomaterials 23 (13):2817–2823. Cooley, D. , A. F. Vandellen, J. O. Burgess, and A. S. Windeler. 1992. The advantages of coated titanium implants prepared by radiofrequency sputtering from hydroxyapatite. Journal of Prosthetic Dentistry 67 (1):93–100. Dalton, J. , and S. D. Cook. 1995. In vivo mechanical and histological characteristics of HA-coated implants vary with coating vendor.
Lu, and K. Xu. 2001. Characterization and stability of hydroxyapatite coatings prepared by an electrodeposition and alkaline-treatment process. Journal of Biomedical Materials Research 54 (1):96–101. Hench, L. L. 1998. Biomaterials: a forecast for the future. Biomaterials 19 (16):1419–1423. Hench, L. , and J. Wilson. 1993. An Introduction to Bioceramics. Singapore: World Scientific. Hench, L. L. 1991. Bioceramics—from concept to clinic. Journal of the American Ceramic Society 74:1487–1510. , K.
Biological and biomedical coatings handbook by Sam Zhang