Esthetic Prosthetic Restorations: Reliability and Effects on Antagonist Dentition

Elie E Daou, Elie E Daou

Abstract

Recent advances in ceramics have greatly improved the functional and esthetic properties of restorative materials. New materials offer an esthetic and functional oral rehabilitation, however their impact on opposing teeth is not welldocumented. Peer-reviewed articles published till December 2014 were identified through Pubmed (Medline and Elsevier). Scientifically, there are several methods of measuring the wear process of natural dentition which enhances the comparison of the complicated results. This paper presents an overview of the newly used prosthetic materials and their implication on antagonist teeth or prostheses, especially emphasizing the behavior of zirconia restorations.

Keywords: Abrasion; antagonist; esthetic restorations.

References

    1. Donovan T.E. Porcelain-fused-to-metal (PFM) alternatives. J. Esthet. Restor. Dent. 2009;21(1):4–6. doi: 10.1111/j.1708-8240.2008.00222.x.
    1. Näpänkangas R., Raustia A. Twenty-year follow-up of metal-ceramic single crowns: a retrospective study. Int. J. Prosthodont. 2008;21(4):307–311.
    1. Silva N.R., Bonfante E.A., Zavanelli R.A., Thompson V.P., Ferencz J.L., Coelho P.G. Reliability of metalloceramic and zirconia-based ceramic crowns. J. Dent. Res. 2010;89(10):1051–1056. doi: 10.1177/0022034510375826.
    1. McLean J.W. Evolution of dental ceramics in the twentieth century. J. Prosthet. Dent. 2001;85(1):61–66. doi: 10.1067/mpr.2001.112545.
    1. Owen A., Maquis P.M. Fleming Garry JP. Resin strengthening of dental ceramics- The impact of surface texture and silane. J. Dent. 2007;•••:35416–35424.
    1. Zarone F., Russo S., Sorrentino R. From porcelain-fused-to-metal to zirconia: clinical and experimental considerations. Dent. Mater. 2011;27(1):83–96. doi: 10.1016/j.dental.2010.10.024.
    1. Raigrodski A.J., Chiche G.J. The safety and efficacy of anterior ceramic fixed partial dentures: A review of the literature. J. Prosthet. Dent. 2001;86(5):520–525. doi: 10.1067/mpr.2001.120111.
    1. Chen Y.M., Smales R.J., Yip K.H., Sung W.J. Translucency and biaxial flexural strength of four ceramic core materials. Dent. Mater. 2008;24(11):1506–1511. doi: 10.1016/j.dental.2008.03.010.
    1. Holand W., Ritzberger V., Appel C., et al. Future perspectives of biomaterials for dental restoration. J. Eur. Ceram. Soc. 2009;29:1291–1297. doi: 10.1016/j.jeurceramsoc.2008.08.023.
    1. Xiao-ping L., Jie-mo T., Yun-long Z., Ling W. Strength and fracture toughness of MgO-modified glass infiltrated alumina for CAD/CAM. Dent. Mater. 2002;18(3):216–220. doi: 10.1016/S0109-5641(01)00026-4.
    1. Gemalmaz D., Ergin S. Clinical evaluation of all-ceramic crowns. J. Prosthet. Dent. 2002;87(2):189–196. doi: 10.1067/mpr.2002.120653.
    1. Goodacre C.J., Bernal G., Rungcharassaeng K., Kan J.Y. Clinical complications in fixed prosthodontics. J. Prosthet. Dent. 2003;90(1):31–41. doi: 10.1016/S0022-3913(03)00214-2.
    1. Albrecht T, Kirsten A, Kapperta HF, Fischerb H. Fracture load of different crown systems on zirconia implant abutments. Dent Mater. 2011;27(3):298–303. doi: 10.1016/j.dental.2010.11.005.
    1. Pauli C. Flexural strength of 3-unit PFM and all ceramic maxillar posterior bridges. ZWR. 1996;105 (11):526 ff..
    1. Al-Wahadni Ahed M., Husey D.L. Grey Nicholas, Hatamleh Muhanad M. Fracture resistance of Aluminium Oxide and lithium disilicate -based crowns using different luting cements: An in-vitro study. J. Contemp. Dent. Pract. 2009;10(2):1–10.
    1. Klein C.A. Characteristic strength, Weibull modulus, and failure probability of fused silica glass. Optic Engine. 2009;48(11):113401. doi: 10.1117/1.3265716.
    1. Schmitter M., Mueller D., Rues S. Chipping behaviour of all-ceramic crowns with zirconia framework and CAD/CAM manufactured veneer. J. Dent. 2012;40(2):154–162. doi: 10.1016/j.jdent.2011.12.007.
    1. Tinschert J., Natt G., Mautsch W., Augthun M., Spiekermann H. Fracture resistance of lithium disilicate-, alumina-, and zirconia-based three-unit fixed partial dentures: a laboratory study. Int. J. Prosthodont. 2001;14(3):231–238.
    1. Morrmann W.H., Stawarczyk B., Ender A., Sener B., Attin T., Mehl A. Wear characteristics of current aesthetic dental restorative CAD/CAM materials: Two-body wear, gloss retention, roughness and Martens hardness J Mechan Behav. Biomed. Mater. 2013;20:113–125.
    1. Galindo M.L., Sendi P., Marinello C.P. Estimating long-term survival of densely sintered alumina crowns: a cohort study over 10 years. J. Prosthet. Dent. 2011;106(1):23–28. doi: 10.1016/S0022-3913(11)60089-9.
    1. Segal B.S. Retrospective assessment of 546 all-ceramic anterior and posterior crowns in a general practice. J. Prosthet. Dent. 2001;85(6):544–550. doi: 10.1067/mpr.2001.115180.
    1. McLaren EA, White S. Glass-infiltrated zirconia/alumina-based ceramic for crowns and fixed partial dentaures. Pract Periodontics Aesthet Dent. 1999;11(8)(985-94 quiz 996.)
    1. Yoshinari M., Dérand T. Fracture strength of all-ceramic crowns. Int. J. Prosthodont. 1994;7(4):329–338.
    1. Raigrodski A.J. Materials for all-ceramic restorations. J. Esthet. Restor. Dent. 2006;18(3):117–118. doi: 10.1111/j.1708-8240.2006.00003.x.
    1. Manicone P.F., Rossi Iommetti P., Raffaelli L. An overview of zirconia ceramics: basic properties and clinical applications. J. Dent. 2007;35(11):819–826. doi: 10.1016/j.jdent.2007.07.008.
    1. Yang B., Lange-Jansen H.C., Scharnberg M., Wolfart S., Ludwig K., Adelung R., Kern M. Influence of saliva contamination on zirconia ceramic bonding. Dent. Mater. 2008;24(4):508–513. doi: 10.1016/j.dental.2007.04.013.
    1. Yilmaz H., Aydin C., Gul B.E. Flexural strength and fracture toughness of dental core ceramics. J. Prosthet. Dent. 2007;98(2):120–128. doi: 10.1016/S0022-3913(07)60045-6.
    1. Kim M-J., Oh S-H., Kim J-H., Ju S.W., Seo D.G., Jun S.H., Ahn J.S., Ryu J.J. Wear evaluation of the human enamel opposing different Y-TZP dental ceramics and other porcelains. J. Dent. 2012;40(11):979–988. doi: 10.1016/j.jdent.2012.08.004.
    1. Studart A.R., Filser F., Kocher P., Lüthy H., Gauckler L.J. Mechanical and fracture behavior of veneer-framework composites for all-ceramic dental bridges. Dent. Mater. 2007;23(1):115–123. doi: 10.1016/j.dental.2005.12.009.
    1. Raigrodski A.J., Chiche G.J., Potiket N., Hochstedler J.L., Mohamed S.E., Billiot S., Mercante D.E. The efficacy of posterior three-unit zirconium-oxide-based ceramic fixed partial dental prostheses: a prospective clinical pilot study. J. Prosthet. Dent. 2006;96(4):237–244. doi: 10.1016/j.prosdent.2006.08.010.
    1. Sailer I., Fehér A., Filser F., Gauckler L.J., Lüthy H., Hämmerle C.H. Five-year clinical results of zirconia frameworks for posterior fixed partial dentures. Int. J. Prosthodont. 2007;20(4):383–388.
    1. Daou E.E. The zirconia ceramic: strengths and weaknesses. Open Dent. J. 2014;8:33–42. doi: 10.2174/1874210601408010033.
    1. Aboushelib M.N., Feilzer A.J., de Jager N., Kleverlaan C.J. Prestresses in bilayered all-ceramic restorations. J. Biomed. Mater. Res. B Appl. Biomater. 2008;87(1):139–145. doi: 10.1002/jbm.b.31083.
    1. Aboushelib M.N., Kleverlaan C.J., Feilzer A.J. Microtensile bond strength of different components of core veneered all-ceramic restorations. Part II: Zirconia veneering ceramics. Dent. Mater. 2006;22(9):857–863. doi: 10.1016/j.dental.2005.11.014.
    1. Fischer J., Stawarczyk B., Tomic M., Strub J.R., Hämmerle C.H. Effect of thermal misfit between different veneering ceramics and zirconia frameworks on in vitro fracture load of single crowns. Dent. Mater. J. 2007;26(6):766–772. doi: 10.4012/dmj.26.766.
    1. Fischer J., Grohmann P., Stawarczyk B. Effect of zirconia surface treatments on the shear strength of zirconia/veneering ceramic composites. Dent. Mater. J. 2008;27(3):448–454. doi: 10.4012/dmj.27.448.
    1. de Kler M., de Jager N., Meegdes M., van der Zel J.M. Influence of thermal expansion mismatch and fatigue loading on phase changes in porcelain veneered Y-TZP zirconia discs. J. Oral Rehabil. 2007;34(11):841–847. doi: 10.1111/j.1365-2842.2006.01675.x.
    1. Wang H., Aboushelib M.N., Feilzer A.J. Strength influencing variables on CAD/CAM zirconia frameworks. Dent. Mater. 2008;24(5):633–638. doi: 10.1016/j.dental.2007.06.030.
    1. Aboushelib M.N., Kleverlaan C.J., Feilzer A.J. Effect of zirconia type on its bond strength with different veneer ceramics. J. Prosthodont. 2008;17(5):401–408. doi: 10.1111/j.1532-849X.2008.00306.x.
    1. Rahaman M.N., Li Y., Bal B.S., Huang W. Functionally graded bioactive glass coating on magnesia partially stabilized zirconia (Mg-PSZ) for enhanced biocompatibility. J. Mater. Sci. Mater. Med. 2008;19(6):2325–2333. doi: 10.1007/s10856-007-3328-7.
    1. Stawarczyk B., Özcan M., Roos M., Trottmann A., Sailer I., Hämmerle C.H. Load-bearing capacity and failure types of anterior zirconia crowns veneered with overpressing and layering techniques. Dent. Mater. 2011;27(10):1045–1053. doi: 10.1016/j.dental.2011.07.006.
    1. Aboushelib M.N., de Jager N., Kleverlaan C.J., Feilzer A.J. Microtensile bond strength of different components of core veneered all-ceramic restorations. Dent. Mater. 2005;21(10):984–991. doi: 10.1016/j.dental.2005.03.013.
    1. Kern M. Clinical long-term survival of two-retainer and single-retainer all-ceramic resin-bonded fixed partial dentures. Quintessence Int. 2005;36(2):141–147.
    1. Albashaireh Z.S., Ghazal M., Kern M. Two-body wear of different ceramic materials opposed to zirconia ceramic. J. Prosthet. Dent. 2010;104(2):105–113. doi: 10.1016/S0022-3913(10)60102-3.
    1. Heintze S.D., Cavalleri A., Forjanic M., Zellweger G., Rousson V. Wear of ceramic and antagonist--a systematic evaluation of influencing factors in vitro. Dent. Mater. 2008;24(4):433–449. doi: 10.1016/j.dental.2007.06.016.
    1. The Academy of Prosthodontics. Glossary of prosthodontic terms. J Prosthet Dent. (7th) 1999;81(1):39–110.
    1. Oh W.S., Anusavice K.J. Effect of connector design on the fracture resistance of all-ceramic fixed partial dentures. J. Prosthet. Dent. 2002;87(5):536–542. doi: 10.1067/mpr.2002.123850.
    1. Kaidonis J.A., Towsend G., Tansley G.D. Wear of human enamel: a quantitative in vitro assessment. J Dent Res. 1998;77(12):1983–1990.
    1. Callister W.D., Jr . Materials science and engineering: an introduction. New York: John Wiley & Sons; 1997. pp. 179–195.
    1. Larsen MJ. Chemical events during tooth dissolution. J Den Res. 1990;69:575–80. discussion 634-6.
    1. Yip K.H., Smales R.J., Kaidonis J.A. Differential wear of teeth and restorative materials: clinical implications. Int. J. Prosthodont. 2004;17(3):350–356.
    1. Kelly J.R., Campbell S.D., Bowen H.K. Fracture-surface analysis of dental ceramics. J. Prosthet. Dent. 1989;62(5):536–541. doi: 10.1016/0022-3913(89)90075-9.
    1. Morena R., Beaudreau G.M., Lockwood P.E., Evans A.L., Fairhurst C.W. Fatigue of dental ceramics in a simulated oral environment. J. Dent. Res. 1986;65(7):993–997. doi: 10.1177/00220345860650071901.
    1. Oh W-S., Delong R., Anusavice K.J. Factors affecting enamel and ceramic wear: a literature review. J. Prosthet. Dent. 2002;87(4):451–459. doi: 10.1067/mpr.2002.123851.
    1. Piddock V. Effect of alumina concentration on the thermal diffusivity of dental porcelain. J. Dent. 1989;17(6):290–294. doi: 10.1016/0300-5712(89)90042-0.
    1. Magne P., Oh W.S., Pintado M.R., DeLong R. Wear of enamel and veneering ceramics after laboratory and chairside finishing procedures. J. Prosthet. Dent. 1999;82(6):669–679. doi: 10.1016/S0022-3913(99)70008-9.
    1. DeLong R., Douglas W.H., Sakaguchi R.L., Pintado M.R. The wear of dental porcelain in an artificial mouth. Dent. Mater. 1986;2(5):214–219. doi: 10.1016/S0109-5641(86)80016-1.
    1. Jacobi R., Shillingburg H.T., Jr, Duncanson M.G., Jr A comparison of the abrasiveness of six ceramic surfaces and gold. J. Prosthet. Dent. 1991;66(3):303–309. doi: 10.1016/0022-3913(91)90254-T.
    1. Seghi R.R., Rosenstiel S.F., Bauer P. Abrasion of human enamel by different dental ceramics in vitro. J. Dent. Res. 1991;70(3):221–225. doi: 10.1177/00220345910700031301.
    1. Mecholsky J.J., Jr Fracture mechanics principles. Dent. Mater. 1995;11(2):111–112. doi: 10.1016/0109-5641(95)80044-1.
    1. Ekfeldt A., Fransson B., Söderlund B., Oilo G. Wear resistance of some prosthodontic materials in vivo. Acta Odontol. Scand. 1993;51(2):99–107. doi: 10.3109/00016359309041154.
    1. Callister W.D., Jr . Materials science and engineering: an introduction. New York: John Wiley & Sons; 1997. pp. 179–195.
    1. Zhang D., Lu C., Zhang X., Mao S., Arola D. Contact fracture of full-ceramic crowns subjected to occlusal loads. J. Biomech. 2008;41(14):2995–3001. doi: 10.1016/j.jbiomech.2008.07.019.
    1. Mitov G., Heintze S.D., Walz S., Woll K., Muecklich F., Pospiech P. Wear behavior of dental Y-TZP ceramic against natural enamel after different finishing procedures. Dent. Mater. 2012;28(8):909–918. doi: 10.1016/j.dental.2012.04.010.
    1. Taskonak B., Borges G.A., Mecholsky J.J., Jr, Anusavice K.J., Moore B.K., Yan J. The effects of viscoelastic parameters on residual stress development in a zirconia/glass bilayer dental ceramic. Dent. Mater. 2008;24(9):1149–1155. doi: 10.1016/j.dental.2008.01.004.
    1. Ghazal M., Kern M. The influence of antagonistic surface roughness on the wear of human enamel and nanofilled composite resin artificial teeth. J. Prosthet. Dent. 2009;101(5):342–349. doi: 10.1016/S0022-3913(09)60068-8.
    1. Johansson A., Omar R., Carlsson G.E. Bruxism and prosthetic treatment: a critical review. J. Prosthodont. Res. 2011;55(3):127–136. doi: 10.1016/j.jpor.2011.02.004.
    1. Ramp M.H., Suzuki S., Cox C.F., Lacefield W.R., Koth D.L. Evaluation of wear: enamel opposing three ceramic materials and a gold alloy. J. Prosthet. Dent. 1997;77(5):523–530. doi: 10.1016/S0022-3913(97)70146-X.
    1. Ekfeldt A., Oilo G. Wear of prosthodontic materials--an in vivo study. J. Oral Rehabil. 1990;17(2):117–129. doi: 10.1111/j.1365-2842.1990.tb01400.x.
    1. Graf K., Johnson G.H., Mehl A., Rammelsberg P. The influence of dental alloys on three-body wear of human enamel and dentin in an inlay-like situation. Oper. Dent. 2002;27(2):167–174.
    1. Hickel R., Manhart J. Longevity of restorations in posterior teeth and reasons for failure. J. Adhes. Dent. 2001;3(1):45–64.
    1. O’Sullivan E.T., Setchell D. Two-body method for testing tooth wear by restorative materials. J. Dent. Res. 1998;77:692. [abstract 484].
    1. Metzler K.T., Woody R.D., Miller A.W., III, Miller B.H. In vitro investigation of the wear of human enamel by dental porcelain. J. Prosthet. Dent. 1999;81(3):356–364. doi: 10.1016/S0022-3913(99)70280-5.
    1. Esquivel-Upshaw J.F., Rose W.F., Jr, Barrett A.A., Oliveira E.R., Yang M.C., Clark A.E., Anusavice K.J. Three years in vivo wear: core-ceramic, veneers, and enamel antagonists. Dent. Mater. 2012;28(6):615–621. doi: 10.1016/j.dental.2012.02.001.
    1. Derand P., Vereby P. Wear of low-fusing dental porcelains. J. Prosthet. Dent. 1999;81(4):460–463. doi: 10.1016/S0022-3913(99)80014-6.
    1. Ratledge D.K., Smith B.G., Wilson R.F. The effect of restorative materials on the wear of human enamel. J. Prosthet. Dent. 1994;72(2):194–203. doi: 10.1016/0022-3913(94)90080-9.
    1. al-Hiyasat A.S., Saunders W.P., Smith G.M. Three-body wear associated with three ceramics and enamel. J. Prosthet. Dent. 1999;82(4):476–481. doi: 10.1016/S0022-3913(99)70037-5.
    1. Heintze S.D., Cavalleri A., Forjanic M., Zellweger G., Rousson V. Wear of ceramic and antagonist--a systematic evaluation of influencing factors in vitro. Dent. Mater. 2008;24(4):433–449. doi: 10.1016/j.dental.2007.06.016.
    1. Hatta M., Shinya A., Yokoyama D., Gomi H., Vallittu P.K., Shinya A. The effect of surface treatment on bond strength of layering porcelain and hybrid composite bonded to zirconium dioxide ceramics. J. Prosthodont. Res. 2011;55(3):146–153. doi: 10.1016/j.jpor.2010.10.005.
    1. Vaidyanathan J., Vaidyanathan T.K. Flexural creep deformation and recovery in dental composites. J. Dent. 2001;29(8):545–551. doi: 10.1016/S0300-5712(01)00049-5.
    1. Komine F., Strub J., Matsumura H. Bonding between layering materials and zirconia frameworks. Jpn. Dent. Sci. Rev. 2012;48:153–161. doi: 10.1016/j.jdsr.2012.06.001.
    1. Kohyama K., Hatakeyama E., Sasaki T., Azuma T., Karita K. Effect of sample thickness on bite force studied with a multiple-point sheet sensor. J. Oral Rehabil. 2004;31(4):327–334. doi: 10.1046/j.1365-2842.2003.01248.x.
    1. Johansson A., Omar R., Carlsson G.E. Bruxism and prosthetic treatment: a critical review. J. Prosthodont. Res. 2011;55(3):127–136. doi: 10.1016/j.jpor.2011.02.004.
    1. Heintze S.D., Forjanic M., Rousson V. Surface roughness and gloss of dental materials as a function of force and polishing time in vitro. Dent. Mater. 2006;22(2):146–165. doi: 10.1016/j.dental.2005.04.013.
    1. Stawarczyk B., Özcan M., Schmutz F., Trottmann A., Roos M., Hämmerle C.H. Two-body wear of monolithic, veneered and glazed zirconia and their corresponding enamel antagonists. Acta Odontol. Scand. 2013;71(1):102–112. doi: 10.3109/00016357.2011.654248.
    1. Kumar P., Oka M., Ikeuchi K., Shimizu K., Yamamuro T., Okumura H., Kotoura Y. Low wear rate of UHMWPE against zirconia ceramic (Y-PSZ) in comparison to alumina ceramic and SUS 316L alloy. J. Biomed. Mater. Res. 1991;25(7):813–828. doi: 10.1002/jbm.820250703.
    1. Preis V., Behr M., Kolbeck C., Hahnel S., Handel G., Rosentritt M. Wear performance of substructure ceramics and veneering porcelains. Dent. Mater. 2011;27(8):796–804. doi: 10.1016/j.dental.2011.04.001.
    1. Tambra T.R., Razzog M., Lang B.R., Wang R-F., Lang B.E. 32ndAADR. 2003. Wear of enamel opposing YPSZ zirconia core material with two surface finish. Abstr. No. 0915.
    1. Culver S., Cakir D., Burgess J., Ramp L. 37th AADR. 2008. Wear of the enamel antagonist and five restorative materials. Abstr. No. 0367.
    1. Albashaireh Z.S., Ghazal M., Kern M. Two-body wear of different ceramic materials opposed to zirconia ceramic. J. Prosthet. Dent. 2010;104(2):105–113. doi: 10.1016/S0022-3913(10)60102-3.
    1. Sorensen J.A., Sultan E., Sorensen P.N. 89th IADR. 2011. Three-body wear of enamel against full crown ceramics. Abstr. No. 1652.
    1. Basunbul G., Nathanson D. 89th IADR. 2011. Human enamel wear against four dental ceramics in vitro. Abstr. No. 1650.
    1. Stawarczyk B., Özcan M., Schmutz F., Trottmann A., Roos M., Hämmerle C.H. Two-body wear of monolithic, veneered and glazed zirconia and their corresponding enamel antagonists. Acta Odontol. Scand. 2013;71(1):102–112. doi: 10.3109/00016357.2011.654248.
    1. Yang D.H., Park J., Yang H.S., et al. 90th IADR. 2012. Antagonist enamel wear to 3 CAD/CAM full contour zirconia ceramics. Abstr. No. 1381.
    1. Shar S., Mickelson C., Beck P., Lamp L.C., Cakir D., Burgess J. 39th AADR. 2010. Wear of enamel on polished and glazed zirconia. Abstr. No. 227.
    1. Jung Y-S., Lee J-W., Choi Y-J., Ahn J-S., Shin S-W., Huh J-B. A study on the in-vitro wear of the natural tooth structure by opposing zirconia or dental porcelain. J. Adv. Prosthodont. 2010;2(3):111–115. doi: 10.4047/jap.2010.2.3.111.
    1. Kuretzky T., Urban M., Dittmann R., Peez R., Mecher E. 89th IADR. 2011. Wear behaviour of zirconia compared to state-of-the-art ceramics. Abstr. No. 3055.
    1. Kontos L., Schille C., Schweizer E., Geis-Gerstorfer J. Influence of surface treatment on the wear of solid zirconia. Acta Odontol. Scand. 2013;71(3-4):482–487. doi: 10.3109/00016357.2012.696690.
    1. Janyavula S., Lawson N., Cakir D., Beck P., Ramp L.C., Burgess J.O. The wear of polished and glazed zirconia against enamel. J. Prosthet. Dent. 2013;109(1):22–29. doi: 10.1016/S0022-3913(13)60005-0.
    1. Denry I, Kelly JR. Emerging ceramic-based materials for dentistry. J Dent Res. 2014;93(12):1235–1242. doi: 10.1177/0022034514553627.
    1. Passos S., Nychka J.A., Major P., Linke B., Flores-Mir C. In vitro fracture toughness of commercial Y-TZP ceramics: A systematic review. J. Prosthodont. 2014;12179 doi: 10.1111/jopr. [Epub ahead of print].
    1. Passos S.P., Torrealba Y., Major P., Linke B., Flores-Mir C., Nychka J.A. In vitro wear behavior of zirconia opposing enamel: a systematic review. J. Prosthodont. 2014;23(8):593–601. doi: 10.1111/jopr.12167. [Epub ahead of print].
    1. ISO. Dentistry-Ceramic Materials. ISO 6872. Int Organiz Standardiz. 2008.
    1. Tinschert J., Natt G., Mautsch W., Augthun M., Spiekermann H. Fracture resistance of lithium disilicate-, alumina-, and zirconia-based three-unit fixed partial dentures: a laboratory study. Int. J. Prosthodont. 2001;14(3):231–238.
    1. Mehl A. ISO. Neue CAD/CAM-Systeme versprechen eine. Revolution DZW. Spezial 5/00.
    1. Kleinfelder J.W., Ludwigt K. Maximal bite force in patients with reduced periodontal tissue support with and without splinting. J. Periodontol. 2002;73(10):1184–1187. doi: 10.1902/jop.2002.73.10.1184.
    1. Fontijn-Tekamp F.A., Slagter A.P., Van Der Bilt A., Van ’T Hof M.A., Witter D.J., Kalk W., Jansen J.A. Biting and chewing in overdentures, full dentures, and natural dentitions. J. Dent. Res. 2000;79(7):1519–1524. doi: 10.1177/00220345000790071501.
    1. Kelly J.R. Ceramics in restorative and prosthetic dentistry. Annu. Rev. Mater. Sci. 1997;27:443–468. doi: 10.1146/annurev.matsci.27.1.443.
    1. Kinsel R.P., Lin D. Retrospective analysis of porcelain failures of metal ceramic crowns and fixed partial dentures supported by 729 implants in 152 patients: patient-specific and implant-specific predictors of ceramic failure. J. Prosthet. Dent. 2009;101(6):388–394. doi: 10.1016/S0022-3913(09)60083-4.
    1. Dahl B., Ølio G. Wear of teeth and restorative materials. In: O" wall B, Ka"yser AF, Carlsson GE, editors. Prosthodontics. Principles and management strategies. London: Mosby-Wolfe; 1996. pp. 187–200.
    1. Johansson A., Johansson A-K., Omar R., Carlsson G.E. Rehabilitation of the worn dentition. J. Oral Rehabil. 2008;35(7):548–566. doi: 10.1111/j.1365-2842.2008.01897.x.
    1. Rekow E.D., Harsono M., Janal M., Thompson V.P., Zhang G. Factorial analysis of variables influencing stress in all-ceramic crowns. Dent. Mater. 2006;22(2):125–132. doi: 10.1016/j.dental.2005.04.010.
    1. Tinschert J., Natt G., Mohrbotter N., Spiekermann H., Schulze K.A. Lifetime of alumina- and zirconia ceramics used for crown and bridge restorations. J. Biomed. Mater. Res. B Appl. Biomater. 2007;80(2):317–321. doi: 10.1002/jbm.b.30599.
    1. Schley J-S., Heussen N., Reich S., Fischer J., Haselhuhn K., Wolfart S. Survival probability of zirconia-based fixed dental prostheses up to 5 yr: a systematic review of the literature. Eur. J. Oral Sci. 2010;118(5):443–450. doi: 10.1111/j.1600-0722.2010.00767.x.
    1. Raigrodski A.J. Contemporary materials and technologies for all-ceramic fixed partial dentures: a review of the literature. J. Prosthet. Dent. 2004;92(6):557–562. doi: 10.1016/j.prosdent.2004.09.015.
    1. Eccles J.D. Tooth surface loss from abrasion, attrition and erosion. Dent. Update. 1982;9(7):373–374, 376-378, 380-381.
    1. Mehta S.B., Banerji S., Millar B.J., Suarez-Feito J.M. Current concepts on the management of tooth wear: part 1. Assessment, treatment planning and strategies for the prevention and the passive management of tooth wear. Br. Dent. J. 2012;212(1):17–27. doi: 10.1038/sj.bdj.2011.1099.
    1. Bartlett D.W. Retrospective long term monitoring of tooth wear using study models. Br. Dent. J. 2003;194(4):211–213. doi: 10.1038/sj.bdj.4809914.
    1. Heintze S.D., Faouzi M., Rousson V., Ozcan M. Correlation of wear in vivo and six laboratory wear methods. Dent. Mater. 2012;28(9):961–973. doi: 10.1016/j.dental.2012.04.006.
    1. Mörmann W.H., Stawarczyk B., Ender A., Sener B., Attin T., Mehl A. Wear characteristics of current aesthetic dental restorative CAD/CAM materials: two-body wear, gloss retention, roughness and Martens hardness. J. Mech. Behav. Biomed. Mater. 2013;20:113–125. doi: 10.1016/j.jmbbm.2013.01.003.
    1. Conrad H.J., Seong W.J., Pesun I.J. Current ceramic materials and systems with clinical recommendations: a systematic review. J. Prosthet. Dent. 2007;98(5):389–404. doi: 10.1016/S0022-3913(07)60124-3.
    1. Bayne S.C. Dental restorations for oral rehabilitation - testing of laboratory properties versus clinical performance for clinical decision making. J. Oral Rehabil. 2007;34(12):921–932. doi: 10.1111/j.1365-2842.2007.01812.x.
    1. Denry I., Kelly J.R. State of the art of zirconia for dental applications. Dent. Mater. 2008;24(3):299–307. doi: 10.1016/j.dental.2007.05.007.
    1. Carlsson G.E. Critical review of some dogmas in prosthodontics. J. Prosthodont. Res. 2009;53(1):3–10. doi: 10.1016/j.jpor.2008.08.003.
    1. DeLong R., Douglas W.H. Development of an artificial oral environment for the testing of dental restoratives: bi-axial force and movement control. J. Dent. Res. 1983;62(1):32–36. doi: 10.1177/00220345830620010801.
    1. Seligman D.A., Pullinger A.G., Solberg W.K. The prevalence of dental attrition and its association with factors of age, gender, occlusion, and TMJ symptomatology. J. Dent. Res. 1988;67(10):1323–1333. doi: 10.1177/00220345880670101601.
    1. Creugers N.H., Käyser A.F., van ’t Hof M.A., van't Hof M.A. A meta-analysis of durability data on conventional fixed bridges. Community Dent. Oral Epidemiol. 1994;22(6):448–452. doi: 10.1111/j.1600-0528.1994.tb00795.x.
    1. Ban S. Polishing of zirconia full contour restoratives and antagonist wear. QDT. 2012;32:1240–1254.
    1. Sailer I., Gottnerb J., Kanelb S., Hämmerle C.H. Randomized controlled clinical trial of zirconia-ceramic and metal-ceramic posterior fixed dental prostheses: a 3-year follow-up. Int. J. Prosthodont. 2009;22(6):553–560.

Source: PubMed

3
Abonnere