DOI QR코드

DOI QR Code

Comparison of the translucency of shaded zirconia all-ceramic systems

  • Received : 2014.03.25
  • Accepted : 2014.06.09
  • Published : 2014.10.31

Abstract

PURPOSE. The purpose of this study was to evaluate and compare the translucency of shaded zirconia allceramic systems. MATERIALS AND METHODS. Translucency of 3 different zirconia all-ceramic systems colored by different techniques was compared with a lithium disilicate glass-ceramic (IPS e.max Press). Square-shaped specimens with 0.5 mm thickness were fabricated from In-Ceram YZ, ICE Zirkon and Katana systems in A1, A2 and A3.5 shades according to Vitapan Classical shade tab (n=11). Specimens were then veneered and glazed with corresponding veneer ceramic recommended by each zirconia system manufacturer and the total thickness was set to 1.5 mm. Translucency measurements were performed with VITA Easyshade Compact spectrophotometer after each stage and translucency parameter was calculated. Data were statistically analyzed with repeated measures ANOVA and Tukey multiple comparison test. RESULTS. The control group was significantly more translucent than the zirconia systems (P<.05). ICE Zirkon cores showed the least translucency; neither In-Ceram YZ nor Katana systems were superior to each other in terms of translucency. Translucency of all specimens was decreased after veneering, and the translucency rankings were changed. CONCLUSION. Coloring technique did not have a significant effect on translucency of zirconia cores. Although zirconia systems were less translucent than lithium disilicate glass ceramic, they had partial translucency and there were translucency differences among the zirconia systems. Chroma affected the translucency of precolored zirconia cores.

Keywords

References

  1. Rosenstiel SF, Land MF, Fujimoto J. Contemporary fixed prosthodontics. St. Louis, Mo: Mosby Elsevier. 2006, p. 774.
  2. Raptis NV, Michalakis KX, Hirayama H. Optical behavior of current ceramic systems. Int J Periodontics Restorative Dent 2006;26:31-41.
  3. Raigrodski AJ. Contemporary materials and technologies for all-ceramic fixed partial dentures: a review of the literature. J Prosthet Dent 2004;92:557-62. https://doi.org/10.1016/j.prosdent.2004.09.015
  4. Conrad HJ, Seong WJ, Pesun IJ. Current ceramic materials and systems with clinical recommendations: a systematic review. J Prosthet Dent 2007;98:389-404. https://doi.org/10.1016/S0022-3913(07)60124-3
  5. Kelly JR, Nishimura I, Campbell SD. Ceramics in dentistry: historical roots and current perspectives. J Prosthet Dent 1996;75:18-32. https://doi.org/10.1016/S0022-3913(96)90413-8
  6. Denry I, Kelly JR. State of the art of zirconia for dental applications. Dent Mater 2008;24:299-307. https://doi.org/10.1016/j.dental.2007.05.007
  7. Aboushelib MN, de Jager N, Kleverlaan CJ, Feilzer AJ. Microtensile bond strength of different components of core veneered all-ceramic restorations. Dent Mater 2005;21:984-91. https://doi.org/10.1016/j.dental.2005.03.013
  8. Holloway JA, Miller RB. The effect of core translucency on the aesthetics of all-ceramic restorations. Pract Periodontics Aesthet Dent 1997;9:567-74; quiz 576.
  9. Jiang L, Liao Y, Wan Q, Li W. Effects of sintering temperature and particle size on the translucency of zirconium dioxide dental ceramic. J Mater Sci Mater Med 2011;22:2429-35. https://doi.org/10.1007/s10856-011-4438-9
  10. Heffernan MJ, Aquilino SA, Diaz-Arnold AM, Haselton DR, Stanford CM, Vargas MA. Relative translucency of six all-ceramic systems. Part I: core materials. J Prosthet Dent 2002; 88:4-9.
  11. Chen YM, Smales RJ, Yip KH, Sung WJ. Translucency and biaxial flexural strength of four ceramic core materials. Dent Mater 2008;24:1506-11. https://doi.org/10.1016/j.dental.2008.03.010
  12. Aboushelib MN, Kleverlaan CJ, Feilzer AJ. Effect of zirconia type on its bond strength with different veneer ceramics. J Prosthodont 2008;17:401-8. https://doi.org/10.1111/j.1532-849X.2008.00306.x
  13. Baldissara P, Llukacej A, Ciocca L, Valandro FL, Scotti R. Translucency of zirconia copings made with different CAD/ CAM systems. J Prosthet Dent 2010;104:6-12. https://doi.org/10.1016/S0022-3913(10)60086-8
  14. Manicone PF, Rossi Iommetti P, Raffaelli L. An overview of zirconia ceramics: basic properties and clinical applications. J Dent 2007;35:819-26. https://doi.org/10.1016/j.jdent.2007.07.008
  15. Shah K, Holloway JA, Denry IL. Effect of coloring with various metal oxides on the microstructure, color, and flexural strength of 3Y-TZP. J Biomed Mater Res B Appl Biomater 2008;87:329-37.
  16. Hjerppe J, Narhi T, Froberg K, Vallittu PK, Lassila LV. Effect of shading the zirconia framework on biaxial strength and surface microhardness. Acta Odontol Scand 2008;66: 262-7. https://doi.org/10.1080/00016350802247123
  17. Kulkarni NK, Sampath S, Venugopal V. Studies on stabilised zirconia as host phase for the fixation of actinides, rareearths and sodium. Ceram Int 2001;27:839-46. https://doi.org/10.1016/S0272-8842(01)00038-4
  18. Pittayachawan P, McDonald A, Petrie A, Knowles JC. The biaxial flexural strength and fatigue property of Lava Y-TZP dental ceramic. Dent Mater 2007;23;1018-29. https://doi.org/10.1016/j.dental.2006.09.003
  19. Spyropoulou PE, Giroux EC, Razzoog ME, Duff RE. Translucency of shaded zirconia core material. J Prosthet Dent 2011;105:304-7. https://doi.org/10.1016/S0022-3913(11)60056-5
  20. Pecho OE, Ghinea R, Ionescu AM, Cardona Jde L, Paravina RD, Perez Mdel M. Color and translucency of zirconia ceramics, human dentine and bovine dentine. J Dent 2012;40:e34-40. https://doi.org/10.1016/j.jdent.2012.08.018
  21. Tuncel I, Eroglu E, Sari T, Usumez A. The effect of coloring liquids on the translucency of zirconia framework. J Adv Prosthodont 2013;5:448-51. https://doi.org/10.4047/jap.2013.5.4.448
  22. Johnston WM, Ma T, Kienle BH. Translucency parameter of colorants for maxillofacial prostheses. Int J Prosthodont 1995;8:79-86.
  23. Lim HN, Yu B, Lee YK. Spectroradiometric and spectrophotometric translucency of ceramic materials. J Prosthet Dent 2010;104:239-46. https://doi.org/10.1016/S0022-3913(10)60131-X
  24. Ahn JS, Lee YK. Difference in the translucency of all-ceramics by the illuminant. Dent Mater 2008;24:1539-44. https://doi.org/10.1016/j.dental.2008.03.020
  25. Kurtulmus-Yilmaz S, Cengiz E, Ulusoy N, Ozak ST, Yuksel E. The effect of home-bleaching application on the color and translucency of five resin composites. J Dent 2013;41: e70-5. https://doi.org/10.1016/j.jdent.2012.12.007
  26. Spink LS, Rungruanganut P, Megremis S, Kelly JR. Comparison of an absolute and surrogate measure of relative translucency in dental ceramics. Dent Mater 2013;29:702-7. https://doi.org/10.1016/j.dental.2013.03.021
  27. Kim MJ, Ahn JS, Kim JH, Kim HY, Kim WC. Effects of the sintering conditions of dental zirconia ceramics on the grain size and translucency. J Adv Prosthodont 2013;5:161-6. https://doi.org/10.4047/jap.2013.5.2.161
  28. Bolt RA, Bosch JJ, Coops JC. Influence of window size in small-window colour measurement, particularly of teeth. Phys Med Biol 1994;39:1133-42. https://doi.org/10.1088/0031-9155/39/7/006
  29. Kumagai N, Hirayama H, Finkelman MD, Ishikawa-Nagai S. The effect of translucency of Y-TZP based all-ceramic crowns fabricated with difference substructure designs. J Dent 2013;41:e87-92. https://doi.org/10.1016/j.jdent.2012.10.005
  30. Heffernan MJ, Aquilino SA, Diaz-Arnold AM, Haselton DR, Stanford CM, Vargas MA. Relative translucency of six all-ceramic systems. Part II: core and veneer materials. J Prosthet Dent 2002;88:10-5.
  31. Ilie N, Hickel R. Correlation between ceramics translucency and polymerization efficiency through ceramics. Dent Mater 2008;24:908-14. https://doi.org/10.1016/j.dental.2007.11.006

Cited by

  1. Shade Correspondence, Color, and Translucency Differences between Human Dentine and a CAD/CAM Hybrid Ceramic System vol.28, pp.14964155, 2016, https://doi.org/10.1111/jerd.12195
  2. Evaluation of translucency of monolithic zirconia and framework zirconia materials vol.8, pp.3, 2016, https://doi.org/10.4047/jap.2016.8.3.181
  3. Color in Zirconia-Based Restorations and Related Factors: A Literature Review vol.27, pp.2, 2018, https://doi.org/10.1111/jopr.12740
  4. Comparative color and surface parameters of current esthetic restorative CAD/CAM materials vol.10, pp.1, 2018, https://doi.org/10.4047/jap.2018.10.1.32
  5. A Comparative Study of Relative Translucency of Six All-Ceramic Restorations vol.281, pp.1662-9779, 2018, https://doi.org/10.4028/www.scientific.net/SSP.281.729
  6. Optical properties of contemporary monolithic CAD-CAM restorative materials at different thicknesses pp.14964155, 2018, https://doi.org/10.1111/jerd.12382
  7. Color Aspect of Monolithic Zirconia Restorations: A Review of the Literature pp.1059941X, 2018, https://doi.org/10.1111/jopr.12906
  8. Color Variation in Color-shade Polycrystalline Zirconia Ceramics by the Atmosphere Controlled Firing vol.55, pp.2, 2018, https://doi.org/10.4191/kcers.2018.55.2.02
  9. Effect of UV aging on translucency of currently used esthetic CAD-CAM materials pp.14964155, 2019, https://doi.org/10.1111/jerd.12460
  10. Translucent zirconia in the ceramic scenario for monolithic restorations: A flexural strength and translucency comparison test vol.60, pp.None, 2014, https://doi.org/10.1016/j.jdent.2017.03.002
  11. The effect of five kinds of surface treatment agents on the bond strength to various ceramics with thermocycle aging vol.36, pp.6, 2014, https://doi.org/10.4012/dmj.2016-383
  12. The color masking ability of a zirconia ceramic on the substrates with different values vol.11, pp.1, 2014, https://doi.org/10.15171/joddd.2017.002
  13. Relative Translucency of a Multilayered Ultratranslucent Zirconia Material vol.18, pp.12, 2014, https://doi.org/10.5005/jp-journals-10024-2183
  14. Effect of glazing and aging on optical properties of high-translucency zirconia vol.44, pp.4, 2014, https://doi.org/10.14815/kjdm.2017.44.4.319
  15. Effect of thickness of monolithic zirconia ceramic on final color vol.120, pp.2, 2014, https://doi.org/10.1016/j.prosdent.2017.10.007
  16. Comparison of translucency for different thicknesses of recent types of esthetic zirconia ceramics versus conventional ceramics … (in vitro study) vol.4, pp.2, 2018, https://doi.org/10.1016/j.fdj.2018.05.003
  17. Optical properties and flexural strength of translucent zirconia layered with high-translucent zirconia vol.38, pp.3, 2014, https://doi.org/10.4012/dmj.2018-157
  18. Translucent zirconia ceramics for fabrication monolithic restorations: review. Part 2 vol.99, pp.6, 2014, https://doi.org/10.17116/stomat202099061101
  19. High bonding strength between zirconia and composite resin based on combined surface treatment for dental restorations vol.18, pp.None, 2020, https://doi.org/10.1177/2280800020928655
  20. Debonding/crack initiation and flexural strengths of bilayered zirconia core and veneering ceramic composites vol.39, pp.2, 2014, https://doi.org/10.4012/dmj.2018-321
  21. Influence of thickness and background on the color changes of CAD/CAM dental ceramic restorative materials vol.7, pp.5, 2020, https://doi.org/10.1088/2053-1591/ab9348
  22. Effect of core design on fracture resistance of zirconia-lithium disilicate anterior bilayered crowns vol.12, pp.4, 2020, https://doi.org/10.4047/jap.2020.12.4.181
  23. Clinical factors affecting the translucency of monolithic Y-TZP ceramics vol.108, pp.4, 2014, https://doi.org/10.1007/s10266-019-00446-2
  24. Effect of shade and sintering temperature on the translucency parameter of a novel multi‐layered monolithic zirconia in different thicknesses vol.32, pp.6, 2014, https://doi.org/10.1111/jerd.12598
  25. Effects of Aging on the Color and Translucency of Monolithic Translucent Y-TZP Ceramics: A Systematic Review and Meta-Analysis of In Vitro Studies vol.2021, pp.None, 2014, https://doi.org/10.1155/2021/8875023
  26. Influence of Additive Firing on the Surface Characteristics, Streptococcus mutans Viability and Optical Properties of Zirconia vol.14, pp.5, 2014, https://doi.org/10.3390/ma14051286
  27. The influence of yttria-stabilised zirconia and cerium oxide on the microstructural morphology and properties of a mica glass-ceramic for restorative dental materials vol.9, pp.3, 2014, https://doi.org/10.1080/21870764.2021.1926641