Biomedical Engineering Reference
In-Depth Information
4. Wang, L., Nancollas, G.H.: Calcium orthophosphates: crystallization and dissolution. Chem.
Rev. 108 , 4628-4669 (2008)
5. Combes, C., Rey, C.: Amorphous calcium phosphates: synthesis, properties and uses in
biomaterials. Acta Biomaterialia 6 (9), 3362-3378 (2010)
6. Elliot, J.C.: Monoclinic space group of hydroxyapatite. Nature 230 , 72 (1971)
7. Posner, A.S., Perloff, A., Diorio, A.F.: Refinement of the hydroxyapatite structure. Acta. Cryst.
11 , 308-309 (1958)
8. Elliot, J.C., Mackie, P.E., Young, R.A.: Monoclinic hydroxyapatite. Science 180 , 1055-1057
(1973)
9. Bauer, M.: R ontgenographische und Dielektrische Untersuchungen an Apatiten. Dissertation,
Fakultat fur Physik, Universitat Karlsruhe (1991)
10. Dallemagne, M.J., Richelle, L.J.: Inorganic chemistry of bone. Biological mineralization,
pp. 23-42. Wiley, New York (1973)
11. Weatherell, J.A., Robinson, C.: The inorganic composition of teeth. Biological mineralization,
pp. 43-74. Wiley, New York (1973)
12. Bienenstock, A., Posner, A.S.: Calculations of the X-ray intensities from arrays of small
crystallites of hydroxyapatite. Arch. Biochem. Biophys. 124 , 604-607 (1968)
13. Eanes, E.D., Gillessen, I.H., Posner, A.S.: Intermediate states in the precipitation of hydroxya-
patite. Nature 208 , 365-367 (1965)
14. Termine, J.D., Posner, A.S.: Calcium phosphate formation in vitro. I. Factors affecting initial
phase separation. Arch. Biochem. Biophys. 140 , 307-317 (1970)
15. Termine, J.D., Eanes, E.D.: Comparative chemistry of amorphous and apatitic calcium
phosphate preparations. Calcif. Tissue. Res. 10 , 171-197 (1972)
16. Dorozhkin, S.V., Epple, M.: Biological and medical significance of calcium phosphates.
Angew. Chem. Int. Ed. 41 , 3130-3146 (2002)
17. Christofferesen, J., Christofferesen, M.R., Kibalczyc, W., Andersen, A.: A contribution of
understanding of the formation of calcium phosphates. J. Cryst. Growth 94 , 767-777 (1989)
18. Christofferesen, J., Christofferesen, M.R., Kibalczyc, W.: Apparent solubilities of two amor-
phous calcium phosphates and of octacalcium phosphate in the temperature range 30-42 ı C.
J. Cryst. Growth 106 , 349-354 (1990)
19. Posner, A.S., Betts, F.: Synthetic amorphous calcium phosphate and its relation to bone
mineral. Accounts Chem. Res. 8 , 273-281 (1975)
20. Tropp, J., Blumenthal, N.C., Waugh, J.S.: Phosphorous NMR study of solid amorphous
calcium phosphate. J. Am. Chem. Soc. 105 , 22-26 (1983)
21. Harries, J.E., Hukins, D.W.L., Hasnain, S.S.: Analysis of the EXAFS spectrum of hydroxyap-
atite. Mater. Res. Bull. 9 , 353-360 (1986)
22. Harries, J.E., Hukins, D.W.L., Holt, C., Hasnain, S.S.: Conversion of amorphous calcium
phosphate into hydroxyapatite investigated by EXAFS spectroscopy. J. Cryst. Growth 84 ,
563-570 (1987)
23. Peters, F., Schwarz, K., Epple, M.: The structure of bone studied with synchrotron X-ray
diffraction, X-ray absorption spectroscopy and thermal analysis. Thermochim. Acta. 361 ,
131-138 (2000)
24. Onuma, K., Oyane, A., Tsutsui, K., Tanaka, K., Treboux, G., Kanzaki, N., Ito, A.: Precipitation
kinetics of hydroxyapatite revealed by the continuous-angle laser light-scattering technique.
J. Phys. Chem. B 104 , 10563-10568 (2000)
25. Pan, H.-B., Darvell, B.W.: Calcium phosphate solubility: the need for re-evaluation. Cryst.
Growth & Des. 9 , 639-645 (2009)
26. Burton, W.K., Cabrera, N., Frank, F.C.: The growth of crystals and the equilibrium structure of
their surfaces. Phil. Trans. Roy. Soc. London A234 , 299-358 (1951)
27. Bennema, P.: Crystal growth measurements on potassium aluminium alum and sodium chlorate
from slightly supersaturated solutions. Phy. Stat. Solidi. 17 , 563-570 (1966)
28. Denk Jr., E.G., Botsaris, G.D.: Mechanisms of potassium alum crystal growth from solution.
J. Cryst. Growth 6 , 241-244 (1970)
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