Comparison of four monolithic zirconia materials with conventional ones: Contrast ratio, grain size, four-point flexural strength and two-body wear.
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M. Roos | A. Ender | B. Sener | B. Stawarczyk | T. Wimmer | Kathrin Frevert
[1] Malgorzata Roos,et al. Two regression methods for estimation of a two-parameter Weibull distribution for reliability of dental materials. , 2015, Dental materials : official publication of the Academy of Dental Materials.
[2] B. Stawarczyk,et al. Quantification of the amount of blue light passing through monolithic zirconia with respect to thickness and polymerization conditions. , 2015, The Journal of prosthetic dentistry.
[3] M. Roos,et al. Zirconia ceramics, their contrast ratio and grain size depending on sintering parameters. , 2014, Dental materials journal.
[4] B. Stawarczyk,et al. Quantification of the amount of light passing through zirconia: the effect of material shade, thickness, and curing conditions. , 2014, Journal of dentistry.
[5] J. L. Bermejo,et al. Enamel wear caused by monolithic zirconia crowns after 6 months of clinical use. , 2014, Journal of oral rehabilitation.
[6] Hidekazu Takahashi,et al. Translucency of dental ceramics with different thicknesses. , 2013, The Journal of prosthetic dentistry.
[7] M. Roos,et al. Two-body wear rate of CAD/CAM resin blocks and their enamel antagonists. , 2013, The Journal of prosthetic dentistry.
[8] M. Rosentritt,et al. Wear performance of monolithic dental ceramics with different surface treatments. , 2013, Quintessence international.
[9] M. Roos,et al. Two-body wear of monolithic, veneered and glazed zirconia and their corresponding enamel antagonists. , 2013, Acta odontologica Scandinavica.
[10] S. Rinke,et al. Prospective evaluation of zirconia posterior fixed partial dentures: 7-year clinical results. , 2013, The International journal of prosthodontics.
[11] Martin Rosentritt,et al. Wear performance of dental ceramics after grinding and polishing treatments. , 2012, Journal of the mechanical behavior of biomedical materials.
[12] Albert Mehl,et al. The influence of grain size on low-temperature degradation of dental zirconia. , 2012, Journal of biomedical materials research. Part B, Applied biomaterials.
[13] A. Mehl,et al. The effect of zirconia sintering temperature on flexural strength, grain size, and contrast ratio , 2012, Clinical Oral Investigations.
[14] Y. Sakka,et al. Effect of alumina dopant on transparency of tetragonal zirconia , 2012 .
[15] Wei Li,et al. Effects of sintering temperature and particle size on the translucency of zirconium dioxide dental ceramic , 2011, Journal of materials science. Materials in medicine.
[16] Y. Sakka,et al. Effect of sintering temperature on optical properties and microstructure of translucent zirconia prepared by high-pressure spark plasma sintering , 2011, Science and technology of advanced materials.
[17] M. Behr,et al. Wear performance of substructure ceramics and veneering porcelains. , 2011, Dental materials : official publication of the Academy of Dental Materials.
[18] A. Krell,et al. Transparent Tetragonal Yttria‐Stabilized Zirconia Ceramics: Influence of Scattering Caused by Birefringence , 2011 .
[19] A. H. Zulkifly,et al. Implants for surgery - Ceramic materials based on yttria-stabilized tetragonal zirconia (Y-TZP) (ISO 13356:2008, IDT) , 2011 .
[20] J. Radford,et al. Survival of zirconia- and metal-supported fixed dental prostheses: a systematic review , 2011, BDJ.
[21] M. Kern,et al. Two-body wear of different ceramic materials opposed to zirconia ceramic. , 2010, The Journal of prosthetic dentistry.
[22] Leonardo Ciocca,et al. Translucency of zirconia copings made with different CAD/CAM systems. , 2010, The Journal of prosthetic dentistry.
[23] M. Etman. Confocal examination of subsurface cracking in ceramic materials. , 2009, Journal of prosthodontics : official journal of the American College of Prosthodontists.
[24] Koji Matsui,et al. Mechanism of Alumina-Enhanced Sintering of Fine Zirconia Powder : Influence of Alumina Concentration on the Initial Stage Sintering , 2008 .
[25] A. Kapoor. Microwave Sintering of Solid Oxide Fuel Cell Materials , 2008 .
[26] K. Anusavice,et al. Clinical performance and wear characteristics of veneered lithia-disilicate-based ceramic crowns. , 2008, Dental materials : official publication of the Academy of Dental Materials.
[27] V. Rousson,et al. Wear of ceramic and antagonist--a systematic evaluation of influencing factors in vitro. , 2008, Dental materials : official publication of the Academy of Dental Materials.
[28] M. Lanza,et al. Light transmission through porcelain , 2008, Dental materials : official publication of the Academy of Dental Materials.
[29] V. Rousson,et al. A comparison of three different methods for the quantification of the in vitro wear of dental materials. , 2006, Dental materials : official publication of the Academy of Dental Materials.
[30] L. Gauckler,et al. Prospective clinical study of zirconia posterior fixed partial dentures: 3-year follow-up. , 2006, Quintessence international.
[31] P Carlson,et al. All-ceramic fixed partial dentures designed according to the DC-Zirkon technique. A 2-year clinical study. , 2005, Journal of oral rehabilitation.
[32] C. Piconi,et al. Zirconia as a ceramic biomaterial. , 1999, Biomaterials.
[33] M. Janney,et al. Microwave Sintering of Solid Oxide Fuel Cell Materials: I, Zirconia‐8 mol% Yttria , 1992 .