Biomedical Engineering Reference
In-Depth Information
82. Jarcho, M., Salsbury, R. L., Thomas, M. B., and Doremus, R. H. (1979)
Synthesis and fabrication of β-tricalcium phosphate ceramics for
potential prosthetic applications,
, 142-150.
83. Jarcho, M. (1981) Calcium phosphate ceramics as hard tissue
prosthetics,
J. Mater. Sci.
,
14
, 259-278.
84. Rejda, B. V., Peelen, J. G. J., and de Groot, K. (1977) Tricalcium phosphate
as a bone substitute,
Clin. Orthop. Rel. Res.
,
157
, 93-97.
85. de Groot, K. (1980) Bioceramics consisting of calcium phosphate salts,
Biomaterials
J. Bioeng.
,
1
, 47-50.
86. de Groot, K. (ed.) (1983)
,
1
Bioceramics of Calcium Phosphate
, CRC Press,
Boca Raton, p. 146.
87. Aoki, H., Kato, K. M., Ogiso, M., and Tabata, T. (1977) Studies on the
application of apatite to dental materials,
, 86-89.
88. Kato, K., Aoki, H., Tabata, T., and Ogiso, M. (1979) Biocompatibility of
apatite ceramics in mandibles,
J. Dent. Eng.
,
18
Biomater. Med. Dev. Artif. Organs
,
7
,
291-297.
89. Akao, M., Aoki, H., and Kato, K. (1981) Mechanical properties of sintered
hydroxyapatite for prosthetic applications,
, 809-812.
90. Akao, M., Aoki, H., Kato, K., and Sato, A. (1982) Dense polycrystalline
β-tricalcium phosphate for prosthetic applications,
J. Mater. Sci.
,
16
J. Mater. Sci.
,
17
,
343-346.
91. Roy, D. M., and Linnehan, S. K. (1974) Hydroxyapatite formed from
coral skeletal carbonate by hydrothermal exchange,
Nature
,
247
, 220-
222.
92. Holmes, R. E. (1979) Bone regeneration within a coralline
hydroxyapatite implant,
, 626-633.
93. Elsinger, E. C., and Leal, L. (1996) Coralline hydroxyapatite bone graft
substitutes,
Plast. Reconstr. Surg.
,
63
, 396-399.
94. Shipman, P., Foster, G., and Schoeninger, M. (1984) Burnt bones and
teeth: an experimental study of color, morphology, crystal structure
and shrinkage,
J. Foot Ankle Surg.
,
35
, 307-325.
95. LeGeros, R. Z., and LeGeros, J. P. (2003) Calcium phosphate bioceramics:
past, present, future,
J. Archaeological Sci.
,
11
, 240-242, 3-10.
96. Oktar, F. N., Kesenci, K., and Pişkin, E. (1999) Characterization of
processed tooth hydroxyapatite for potential biomedical implant
applications,
Key Eng. Mater.
Artif. Cells Blood Substit. Immobil. Biotechnol.
,
27
, 367-
379.
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