Morphology and size-distribution of sound and acid-treated enamel crystallites

Author:

Jongebloed W. L.,Molenaar I.,Arends J.

Publisher

Springer Science and Business Media LLC

Subject

Endocrinology,Orthopedics and Sports Medicine,Endocrinology, Diabetes and Metabolism,Endocrinology,General Medicine

Reference24 articles.

1. Arends, J., Royce, B. S. H., Welch, D. O., Smoluchowski, R.: Lattice defects and the electrical and transport properties of apatite. In: Young Int. Symp. on the Structural Properties of Hydroxyapatite, Gaithersburg 1969. New York: Benjamin 1971

2. Arends, J., Berg, P. J. van den, Jongebloed, W. L.: Dissolution of hydroxy apatite single crystals: Colloque intern. sur la Physico-chimie et la crystallographie des apatites d'intérêt biologique. p. 73. C.N.R.S. Sept. 1973

3. Boyde, A.: The structure of developing mammalian dental enamel, In: Tooth enamel I (Stack, M. V., Fearnhead, R. W., eds.), p. 163–167. Bristol: Wright 1965

4. Crewe, A. V.: Considerations of specimen damage for the transmission electron microscope, conventional versus scanning. J. Molec. Biol.80, 315–325 (1973)

5. Frank, R. M., Sognnaes, R. F., Kern, R.: Calcification of dental tissues with special reference to enamel ultrastructure. In: Calcification in biological systems (Sognnaes, R. F., ed.), p. 163–202. Washington D.C.: A.A.A.S. 1960

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