RESEARCH HYDROXYAPATITE CRYSTALS AND ORGANIC COMPONENTS OF HARD TOOTH TISSUES AFFECTED BY DENTAL CARIES USING FTIR-MICROSPECTROSCOPY AND XRD‑MICRODIFFRACTION
Аннотация
Investigations of the intact dental enamel as well as carious-affected human dental enamel were performed in the work with the use of IR-spectromicroscopy and X-ray diffraction applying synchrotron radiation. Caries of enamel was shown to be characterized by an increase of the number of deformation and valence vibrations for N-C-O, N-H and C=O bounds, decrease of crystallinity index and by the absence of the preferable orientation of hydroxyapatite (HAP) crystals within the affected enamel. It indicates the presence of the destructive processes in the organic matrix of hard tooth tissues.
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Литература
2. Maertena A., Zaslansky P., Mochales C. et. al. // Dental materials. 2013. V. 29. P. 241—251.
3. Bykov V. L. Histology and embryology of oral cavity organs of a human. Tutorial. St. Petersburg, 1998. P. 248.
4. Jenkins G. N. The physiology and biochemistry of mouth. 4-th Ed. Oxford, 1978. P. 599.
5. Goldberg M. // Int J Dev Biol. 1995. V. 39. P. 93—110.
6. Tiznado-Orozco Gaby E, Garcıa-Garcıa R and Reyes-Gasga J. // J. Phys. D: Appl. Phys. 2009. V. 42. P. 235408
7. Yamakoshi Y. // Arch Oral Biol. 2001. V. 46. P.1005—1014.
8. Yagi N., Ohta N., Matsuo T. et. al. // Journal ofPhysics: Conference Series. 2010. V. 247. P. 012024.
9. Slosarczyka Anna, Paszkiewicza Zofia, Paluszkiewicz Czesława. //Journal of Molecular Structure. 2005. V. 744—747. P. 657—661
10. He Li-Hong & Carter Elizabeth A. & Swain Michael V. // Anal Bioanal Chem. 2007. V. 389. P.1185—1192
11. Low It-Meng //J. Am. Ceram. Soc. 2004. V. 87 I. 11. P. 2125—2131.
12. Fried D., Wheeler C. R., Le C. Q. IR Spectromicroscopy of Laser Irradiated Dental Hard Tissues. www.als.lbl.gov/als/compendium / AbstractManager. 2003
13. Karlinsey Robert L., Mackey Allen C., Walker Emily R. et.al. // Journal of Dentistry and Oral Hygiene. 2009. V. 1 (4). P. 52—58.
14. Krutchkoff David J., Rowe Nathaniel H. // J. Dent. Res. 2009. V. 50. I. 6. P. 1589—1593.
15. Rey C., Combes C., Drouet C. et. al. // Materials Science and Engineering. C. 2007. V. 27. I. 2. P. 198—205.
16. Goloshchapov D. L., Kashkarov V. M., Rumyantseva N. A., Seredin P. V., et al. // Ceramics International. 2013. V. 39. I. 4. P. 4539—4549.
17. Goloshchapov D. L., Kashkarov V. M., Rumyantseva N. A., i dr. // Kondensirovannye sredy i mezhfaznye granitsy. (CONDENSED MATTER AND INTERPHASES). 2011. T. 13. № 4. S. 427—441.
18. Kashkarov V. M., Goloshchapov D. L., Rumyantseva A. N., Seredin P. V., et al. // Journal of Surface Investigation. X-ray, Synchrotron and Neutron Techniques. 2011. V. 5. I. 6. P. 1162—1167
19. Person Alain, Bocherens Hervé, Saliège Jean-François, et al. // Journal of Archaeological Science. 1995. V. 22. I. 2. P. 211—221
20. Xue Jing, Zhang Linling, Zou Ling, et al. // J. Synchrotron Rad. 2008. V. 15. P. 235—238
21. Seredin P. V., Lukin A. N., Ippolitov Yu. A. // Nauchnye vedomosti BelGU. Seriya Meditsina. Farmatsiya. 2011. № 16 (111). V. 15/1 C. 104—109.
22. Ippolitov Yu.A., Lukin A. N., Seredin P. V. // Vestnik novykh meditsinskikh tekhnology. 2012. T. 19. № 2. S. 343—346.