Biomedical Engineering Reference
In-Depth Information
292. Chesnaud, A., Bogicevic, C., Karolak, F., Estourǹs, C., and Dezanneau, G.
(2007) Preparation of transparent oxyapatite ceramics by combined
use of freeze-drying and spark-plasma sintering,
Chem. Comm.
, 1550-
1552.
293. Ishihara, S., Matsumoto, T., Onoki, T., Sohmura, T., and Nakahira, A.
(2009) New concept bioceramics composed of octacalcium phosphate
(OCP) and dicarboxylic acid-intercalated OCP via hydrothermal hot-
pressing,
, 1885-1888.
294. Yanagisawa, K., Kim, J. H., Sakata, C., Onda, A., Sasabe, E., Yamamoto, T.,
Matamoros-Veloza, Z., and Rendón-Angeles, J. C. (2010) Hydrothermal
sintering under mild temperature conditions: preparation of calcium-
deficient hydroxyapatite compacts. Zeitschrift fur Naturforschung -
Section B,
Mater. Sci. Eng. C
,
29
, 1038-1044.
295. Gross, K. A., and Berndt C. C. (2002) Biomedical application of apatites.
In: Phosphates: geochemical, geobiological and materials importance,
Series: Reviews in Mineralogy and Geochemistry
J. Chem. Sci.
,
65
, vol. 48, (ed. Hughes,
J. M., Kohn, M., and Rakovan, J.), Mineralogical Society of America,
Washington, D.C., pp. 631-672.
296. LeGeros, R. Z., and LeGeros, J. P. (1993) Dense hydroxyapatite, in,
An
, (ed. Hench, L. L., and Wilson, J.), World
Scientific, London, pp. 139-180.
297. Evans, J. R. G. (2008) Seventy ways to make ceramics,
Introduction to Bioceramics
J. Eur. Ceram.
, 1421-1432.
298. Black, J. (2005) Biological Performance of Materials: Fundamentals of
Biocompatibility, 4th edn., CRC Press, Boca Raton, p. 520.
299. Benaqqa, C., Chevalier, J., Saädaoui, M., and Fantozzi, G. (2005) Slow
crack growth behaviour of hydroxyapatite ceramics,
Soc.
,
28
Biomaterials
,
26
,
6106-6112.
300. Linhart, W., Briem, D., Amling, M., Rueger, J. M., and Windolf, J. (2004)
Mechanical failure of porous hydroxyapatite ceramics 7.5 years after
implantation in the proximal tibial,
, 154-157.
301. In materials science, fracture toughness is a property, which describes
the ability of a material containing a crack to resist fracture and is one
of the most important properties of any material for virtually all design
applications.
302. Ramesh, S., Tan, C. Y., Sopyan, I., Hamdi, M., and Teng, W. D. (2007)
Consolidation of nanocrystalline hydroxyapatite powder,
Unfallchirurg.
,
107
Sci. Technol.
Adv. Mater.
,
8
, 124-130.
Search WWH ::




Custom Search