Cite

1 . Peneva , M., M. Rashkova, R. Kabaktshieva et E. Tsolova. Etiology and pathogenesis of dental caries. - Prophylactics of oral diseases, 2007, 16-34. Search in Google Scholar

2 . Bala , Sh. et al. Diagnostic Modalities Of Early Caries Detection. - Indian Journal of Dental Sciences, 3, 2011, № 3. Search in Google Scholar

3 . Mitova , N. et al. Controlled excavation of cavitated dentine caries by visual-tactile method and fluorescence with Proface w&h. - Problems of dental medicine, 40, 2014, № 1, 13-21. Search in Google Scholar

4 . Piva , Ev. et al. Dyes for caries detection: influence on composite and compomer microleakage. - Clin. Oral. Invest., 2002, 6, 244-248. 10.1007/s00784-002-0182-3Search in Google Scholar

5 . Ansari , G. et al. Caries detector dyes - an invitro assessment of some new compounds. - J. Oral Rehabil., 26, 1999, 453-458. 10.1046/j.1365-2842.1999.00399.xSearch in Google Scholar

6 . Vasileva , R. et K. Peycheva. Modern methods for diagnostic dental caries. - Dental medicine, 94, 2012, № 3, 222-226. Search in Google Scholar

7 . Todorova , V. et I. Filipov. Methods for diagnostics of incipient caries part I. - Dental medicine, 94, 2012, № 3, 213-221. Search in Google Scholar

8 . Todorova , V. et I. Filipov. Methods for diagnostics of incipient caries part II. - Dental medicine, 95, 2013, № 1, 68-80. Search in Google Scholar

9 . Jones, R., et al. Near-infrared transillumination at 1310-nm for the imaging of early dental decay. - Opt. Express., 11, 2003, № 18, 2259-2265. 10.1364/OE.11.002259Search in Google Scholar

10 . Featherstone , J. D. Caries detection and prevention with laser energy. - Dent. Clin. North Am., 44, 2000, № 4, 955-969, ix. 10.1016/S0011-8532(22)01331-3Search in Google Scholar

11 . Schneiderman , A. et al. Assessment of Dental Caries with Digital Imaging Fiber-Optic Translllumination (DIFOTITM): In vitro Study. - Caries Res., 31, 1997, 103-110. 10.1159/0002623849118181Search in Google Scholar

12 . Zandona,A. et D. Zero. Diagnostic tools for early caries detection. - J. Am. Dental Association, 137, 2006, 1675-1684. 10.14219/jada.archive.2006.011317138712Search in Google Scholar

13 . Usenik , P. et al. Near-infrared hyperspectral imaging of water evaporation dynamics for early detection of incipient caries. - J. Dent., 42, 2014, № 10, 1242-1247. 10.1016/j.jdent.2014.08.00725150104Search in Google Scholar

14 . Holtzman , J. S. et al. Assessment of early occlusal caries pre- and post-sealant application--an imaging approach. - Lasers in Surgery and Medicine, 46, 2014, № 6, 499-507]. 10.1002/lsm.22249454762424729412Search in Google Scholar

15 . Betrisey, E. et al. Caries diagnosis using light fluorescence devices: VistaProof and DIAGNOdent. - Odontology, 102, 2014, № 2, 330-335. 10.1007/s10266-013-0105-623467922Search in Google Scholar

16 . Unlu , N. et al. An In Vitro Comparison of Different DiagnosticMethods in Detection of Residual Dentinal Caries. - Int. J. Dent., 2010, 864-935 10.1155/2010/864935289685620613961Search in Google Scholar

17 . Fusayama , T. Clinical guide for removing caries using a caries-detecting solution. - Quintessence International, 19, 1988, № 6, 397-401. Search in Google Scholar

18 . Banerjee , A., T. Watson et A. Kidd. Dentine caries: take it or leave it? - Dental Update, 27, 2000, № 6, 272-276. 1 9 . Tasser y, H. et al. Use of new minimum intervention dentistry technologies in caries management. - Australian Dental Journal, 58, 2013, (Suppl. 1), 40-59. 10.12968/denu.2000.27.6.27211218463Search in Google Scholar

eISSN:
0324-1750
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Medicine, Basic Medical Science, Immunology, Clinical Medicine, other