Department of Materials Research of the Institute of Materials Science and Engineering, Technical University of Lodz, Poland Department of Dental Technique, Medical University of Lodz, Poland
3
Department of Conservative Dentistry, Medical University of Łódź, Poland
Al-Salehi S. K., Wood D. J., Hatton P. V.: The effect of 24h non-stop hydrogen peroxide concentration on bovine enamel and dentine mineral content and microhardness. J. Dent., 2007, 35, 11, 845-850.
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Borges A. B., Yui K. C., D’Avila T. C., Takahashi C. L., Torres C. R., Borges A. L.: Influence of remineralizing gels on bleached enamel microhardness in different time intervals. Oper. Dent., 2010, 35, 2, 180-186.
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Arcari G. M., Baratieri L. N., Maia H. P., De Freitas S. F.: Influence of the duration of treatment using a 10% carbamide peroxide bleaching gel on dentin surface microhardness: An in situ study. Quint. Int., 2005, 36, 1, 15-24.
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Braly A., Darnell L. A., Mann A. B., Teaford M. F., Weihs T. P.: The effect of prism orientation on the indentation testing of human molar enamel. Arch. Oral Biol., 2007, 52, 9, 856- 860.
Buchalla W., Imfeld T., Attin T., Swain M. V., Schmidlin P. R.: Relationship between nanohardness and mineral content of artificial carious enamel leasions. Caries Res., 2008, 42, 3, 157-163.
Cuy J. L., Mann A. B., Livi K. J., Teaford M. F., Weihs T. P.: Nanoindentation mapping of the mechanical properties of human molar tooth enamel. Arch. Oral Biol., 2002, 47, 4, 281-291.
Inoue T., Saito M., Yamamoto M., Debari K., Kou K., Nishimura F., Miyazaki T.: Comparison of nanohardness between coronal and radicular intertubular dentine. Dent. Mater. J., 2009, 28, 3, 295-300.
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Stopa J., Matthews-Brzozowska T., Kurhańska-Flisykowska A., Surdacka A., Chmielnik M., Wąsik A.: Badania stomatologiczne z zastosowaniem zębów ludzkich i bydlęcych w modelu wewnątrzustnym. Materiały naukowe konferencji poświęconej 20ej rocznicy Katedry Stomatologii Wieku Dziecięcego, Lwów, 1996, 103-104.
Torres C. P., Chinelatti M. A., Gomes-Silva J. M., Rizóli F. A., Oliveira M. A., Palma-Dibb R. G., Borsatto M. C.: Surface and subsurface erosion of primary enamel by acid beverages over time. Braz. Dent. J., 2010, 21, 4, 337-345.
Turssi C. P., Messias D. F., Corona S. M., Serra M. C.: Viability of using enamel and dentin from bovine origin as a substitute for human counterparts in an intraoral erosion model. Braz. Dent. J., 2010, 21, 4, 332-336.
Czubińska-Grodecka D., Klimek L., Piątowska D.: Wpływ wybielania 35% nadtlenkiem wodoru na mikrotwardość szkliwa zębów ludzkich. Badania in vitro. e-Dentico, 2010, 2, 26, 70-82.
Ballal N. V., Mala K., Bhat K. S.: Evaluation of the effect of maleic acid and ethylenediaminetetraacetic acid on the microhardness and surface roughness of human root canal dentin. J. Endod., 2010, 36, 8, 1385-1388.
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