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Year 2021, Volume: 31 Issue: 4, 662 - 668, 14.10.2021
https://doi.org/10.17567/ataunidfd.822036

Abstract

References

  • 1. El-Ghany OSA, Sherief AH. Zirconia based ceramics, some clinical and biological aspects. Future Dental Journal 2016;2:55-64.
  • 2. Stawarczyk B, Keul C, Eichberger M, Figge D, Edelhoff D, Lümkemann N. Three generations of zirconia: From veneered to monolithic. Part I. Quintessence Int 2017;48:369-80.
  • 3. Bergmann C, Stumpf A. Ceramic Materials for Orthodontic Use. Dental Ceramics Microstructure, Properties, and Degradation. Springer:2013. p.23,24.
  • 4. Karakoca S, Yılmaz H. Zirkonyum ve sabit protezlerde kullanımı. Atatürk Üniv Diş Hek Fak Derg 2006;36-44.
  • 5. Kim H-K, Kim S-H. Optical properties of pre-colored dental monolithic zirconia ceramics. J Dent 2016;55:75-81.
  • 6. Roumanas ED. The clinical reliability of zirconia-based fixed dental prostheses appears acceptable but further research is necessary. J Evid Based Dent Pract 2013;13:14-15.
  • 7. Nam J-Y, Park M-G. Effects of aqueous and acid-based coloring liquids on the hardness of zirconia restorations. J Prosthet Dent 2017;117:662-68.
  • 8. Miyazaki T, Nakamura T, Matsumura H, Ban S, Kobayashi T. Current status of zirconia restoration. J Prosthodont Res 2013;57:236-61.
  • 9. Al‐Amleh B, Lyons K, Swain M. Clinical trials in zirconia: a systematic review. J Oral Rehabil 2010;37:641-52.
  • 10. Güngör MB, Nemli SK. Fracture resistance of CAD-CAM monolithic ceramic and veneered zirconia molar crowns after aging in a mastication simulator. J Prosthet Dent 2018;119:473-80.
  • 11. Ferrari M, Giovannetti A, Carrabba M, Bonadeo G, Rengo C, Monticelli F, Vichi A. Fracture resistance of three porcelain-layered CAD/CAM zirconia frame designs. Dent Mater 2014;30:163-68.
  • 12. Schmitter M, Schweiger M, Mueller D, Rues S. Effect on in vitro fracture resistance of the technique used to attach lithium disilicate ceramic veneer to zirconia frameworks. Dent Mater 2014;30:122-30.
  • 13. Basso G, Moraes R, Borba M, Griggs J, Della Bona A. Flexural strength and reliability of monolithic and trilayer ceramic structures obtained by the CAD-on technique. Dent Mater 2015;31:1453-59.
  • 14. Özcan M, Jonasch M. Effect of cyclic fatigue tests on aging and their translational implications for survival of all‐ceramic tooth‐borne single crowns and fixed dental prostheses. J Prosthodont 2018;27:364-75.
  • 15. Sulaiman TA, Abdulmajeed AA, Donovan TE, Vallittu PK, Närhi TO, Lassila LV. The effect of staining and vacuum sintering on optical and mechanical properties of partially and fully stabilized monolithic zirconia. Dent Mater J 2015;34:605-10.
  • 16. Sen N, Sermet IB, Cinar S. Effect of coloring and sintering on the translucency and biaxial strength of monolithic zirconia. J Prosthet Dent 2018;119:308. e1-e7.
  • 17. Kim H-K, Kim S-H, Lee J-B, Han J-S, Yeo I-S, Ha S-R. Effect of the amount of thickness reduction on color and translucency of dental monolithic zirconia ceramics. J Adv Prosthodont 2016;8:37-42.
  • 18. Alghazzawi TF. The effect of extended aging on the optical properties of different zirconia materials. J Prosthodont Res 2017;61:305-14.
  • 19. Kolakarnprasert N, Kaizer MR, Kim DK, Zhang Y. New multi-layered zirconias: Composition, microstructure and translucency. Dent Mater 2019;35:797-806.
  • 20. Kaya G. Production and characterization of self-colored dental zirconia blocks. Ceram Int 2013;39:511-17.
  • 21. Ban S, Suzuki T, Yoshihara K, Sasaki K, Kawai T, Kono H. Effect of coloring on mechanical properties of dental zirconia. J Med Biol Eng 2014;34:24-29.
  • 22. Yu N-K, Park M-G. Effect of different coloring liquids on the flexural strength of multilayered zirconia. J Adv Prosthodont 2019;11:209-14.
  • 23. Mahmood DJH, Braian M, Khan A-S, Shabaz A, Larsson C. Fracture load of colored and non-colored high translucent zirconia three-unit fixed dental prosthesis frameworks. Acta Biomater Odontol Scand 2018;4:38-43.
  • 24. Ahangari AH, Ardakani KT, Mahdavi F, Ardakani MT. The effect of two shading techniques on value of zirconia-based crowns. J Dent 2015;16:129.
  • 25. Auzani ML, Dapieve KS, Zucuni CP, Pereira GKR, Valandro LF. Influence of shading technique on mechanical fatigue performance and optical properties of a 4Y-TZP ceramic for monolithic restorations. J Mech Behav Biomed Mater 2020;102:103457.
  • 26. https://www.axsysdental.com/noc/axzir-dental-zirconia-shading-liquids.
  • 27. http://www.dentalzirconiablank.com/sale-7615360-gingival-zirconia-coloring-liquid-3-bottle-for-dyeing-staning-zirconia.html.
  • 28. Rafael CF, Cesar PF, Fredel M, de Souza Magini R, Liebermann A, Volpato CAM. Impact of laboratory treatment with coloring and fluorescent liquids on the optical properties of zirconia before and after accelerated aging. J Prosthet Dent 2018;120:276-81.
  • 29. Tabatabaian F. Color aspect of monolithic zirconia restorations: a review of the literature. J Prosthodont 2018;28:276-87.
  • 30. https://lmtmag.com/products/incoris-tm-tzi................
  • 31.https://www.kulzer.com/int2/int/dental_technician/products_a_to_z/dima_3/dima_mill_zirconia_ml.aspx.
  • 32. https://www.protecdental.com/product/bruxzir-restorations................
  • 33. Shah K, Holloway J, Denry I. 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.
  • 34. Hjerppe J, Närhi T, Fröberg K, Vallittu PK, Lassila LV. Effect of shading the zirconia framework on biaxial strength and surface microhardness. Acta Odontol Scand 2008;66:262-67.
  • 35. Sedda M, Vichi A, Carrabba M, Capperucci A, Louca C, Ferrari M. Influence of coloring procedure on flexural resistance of zirconia blocks. J Prosthet Dent 2015;114:98-102.
  • 36. Tuncel İ, Özat P, Eroğlu E. Effects of coloring procedures on zirconia/veneer ceramics bond strength. J Adv Prosthodont 2014;6:451-55.
  • 37. Kong M, Kim K, Kown T, Hong M. The effects of the number of times dipped in coloring liquid and final sintering temperature on flexural strength of zirconia ceramics: Zirconia ceramics having improved transparency. Kor J Dent Mater 2017;44:171-78.
  • 38. Kuroda S, Shinya A, Yokoyama D, Gomi H, Shinya A. Effects of coloring agents applied during sintering on bending strength and hardness of zirconia ceramics. Dent Mater J 2013;32:793-800.
  • 39. Tuncel I, Turp I, Usumez A. Effect of color shading procedures and cyclic loading on the biaxial flexural strength of zirconia. Niger J Clin Pract 2018;21:7-12.
  • 40. Celik S, Ucar Y, Ekren O. Effect of coloring liquids on color of zirconia frameworks and bond strength of zirconia/veneering ceramic. J Prosthet Dent 2020;124:110-15.
  • 41. Berijani N, Mahshid M, Tabatabaian F, Sadr SJ. Dipping impact on the bond strength between zirconia ceramic and a resin cement. Regen Reconstr Restor 2017;2:44-49.
  • 42. Mahshid M, Berijani N, Sadr SJ, Tabatabaian F, Homayoon SS. Effect of coloring–by-dipping on microtensile bond strength of zirconia to resin cement. J Dent 2015;12:414-23.
  • 43. Pekkan G, Özcan M, Subaşı MG. Clinical factors affecting the translucency of monolithic Y-TZP ceramics. Odontology 2019, DOI: 10.1007/s10266-019-00446-2.
  • 44. Orhun E. The effect of coloring liquid dipping time on the fracture load and color of zirconia ceramics. J Adv Prosthodont 2017;9:67-73.
  • 45. Kim H-K, Kim S-H. Effect of the number of coloring liquid applications on the optical properties of monolithic zirconia. Dent Mater 2014;30:229-37.
  • 46. Giti R, Hojati SA. Effect of varying thickness and number of coloring liquid applications on the color of anatomic contour monolithic zirconia ceramics. J Dent 2018;19:311-19.
  • 47. Abdelbary O, Wahsh M, Sherif A, Salah T. Effect of accelerated aging on translucency of monolithic zirconia. Future Dental Journal 2016;2:65-69.
  • 48. Sen N, Isler S. Microstructural, physical, and optical characterization of high-translucency zirconia ceramics. J Prosthet Dent 2019;123:761-68.
  • 49. Kim H-K, Kim S-H, Lee J-B, Ha S-R. Effects of surface treatments on the translucency, opalescence, and surface texture of dental monolithic zirconia ceramics. J Prosthet Dent 2016;115:773-79.
  • 50. Zhang Y. Making yttria-stabilized tetragonal zirconia translucent. Dent Mater 2014;30:1195-1203.
  • 51. Tuncel İ, Turp I, Üşümez A. Evaluation of translucency of monolithic zirconia and framework zirconia materials. J Adv Prosthodont 2016;8:181-86.
  • 52. 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.
  • 53. Jiang L, Wang CY, Zheng SN, Xue J, Zhou JL, Li W. Effect of Fe₂O₃ on optical properties of zirconia dental ceramic. Chin J Dent Res 2015;18:35-40.
  • 54. Spyropoulou P-E, Giroux EC, Razzoog ME, Duff RE. Translucency of shaded zirconia core material. J Prosthet Dent 2011;105:304-7.
  • 55. Sabet H, Wahsh M, Sherif A, Salah T. Effect of different immersion times and sintering temperatures on translucency of monolithic nanocrystalline zirconia. Future Dental Journal 2018;4:84-89.

ZİRKONYA RESTORASYONLARDA RENKLENDİRME

Year 2021, Volume: 31 Issue: 4, 662 - 668, 14.10.2021
https://doi.org/10.17567/ataunidfd.822036

Abstract

Günümüzde protetik tedavilerde tam seramik restorasyonların kullanımı oldukça yaygınlaşmıştır. Zirkonya yüksek mekanik dayanımı nedeniyle sıklıkla kullanılan bir tam seramik materyalidir. Opaklığı sebebiyle başlangıçta altyapı maddesi olarak kullanılmış ve cam seramikler ile veneerlenmiş ancak sıklıkla venner başarısızlıkları görülmüştür. Bu nedenle translusensi özelliği arttırılarak monolitik olarak kullanımı gündeme gelmiştir. Cam seramiklere göre yüksek opasiteye sahip olan zirkonyanın özellikle monolitik kullanımında ortaya çıkan estetik dezavantajlarını azaltmak ve doğal dişe yakın bir görünüm elde etmek için renklendirme işlemleri titizlikle yapılmalıdır. Bilgisayar destekli tasarım ve üretim teknikleriyle restorasyonların üretiminde kullanılan zirkonya bloklar, çoğunlukla yarı sinterize halde bulunmaktadır. Bu yöntemle renksiz ve kendinden renkli bloklardan restorasyonlar üretilebilirken; renksiz bloklardan üretilen restorasyonlar, sinterleme işlemi öncesinde solüsyonlar yardımıyla veya sinterleme işlemi sonrasında dış boyama ile renklendirilebilmektedir. Ancak uygulanan bu renklendirme işlemleri zirkonyanın özelliklerini etkileyebilmektedir. Literatürde zirkonyanın renklendirme yöntemleri ve renklendirmenin zirkonya üzerindeki etkileriyle ilgili birçok çalışma mevcuttur. Bu derleme makalesinde zirkonyanın renklendirme prosedürleri anlatılmış ve bu işlemlerin zirkonya üzerine olan etkilerinin değerlendirilmesi amaçlanmıştır.
Anahtar Kelimeler: Zirkonyum, renklendirme, dental porselen, yttria stabilize dörtgen zirkon

COLORING IN ZIRCONIA RESTORATIONS
ABSTRACT
Nowadays, the use of all ceramic restorations in prosthetic treatments has gained popularity. Due to its high mechanical strength, zirconia is frequently used in all ceramic dental restorations. Zirconia was initially used as a core material in dental restorations which was veneered with a glass ceramic because of its opacity. However, the high frequency of veneer failures led the use of monolithic zirconia with increased tranlucency. To reduce the esthetic disadvantages of zirconia associated with its high opacity and to obtain a natural appearance, various coloring procedures especially for monolithic zirconia should be applied meticulously. In general, semi-sintered zirconia blocks are used in the production of dental restorations with computer aided design and manufacturing techniques. These blocks can be in the form of white color or industrially precolored. Restorations milled from white color blocks are colored with solutions prior to sintering or are stained after sintering. However, these coloring procedures could have some effects on the material properties as shown in the literature on coloring methods and their effects on zirconia. The aim of this review article is to reveal the coloring procedures of zirconia and to evaluate the effects of coloring processes on the material properties.
Keywords: Zirconium, coloring, dental porcelain, yttria stabilized tetragonal zirconia

References

  • 1. El-Ghany OSA, Sherief AH. Zirconia based ceramics, some clinical and biological aspects. Future Dental Journal 2016;2:55-64.
  • 2. Stawarczyk B, Keul C, Eichberger M, Figge D, Edelhoff D, Lümkemann N. Three generations of zirconia: From veneered to monolithic. Part I. Quintessence Int 2017;48:369-80.
  • 3. Bergmann C, Stumpf A. Ceramic Materials for Orthodontic Use. Dental Ceramics Microstructure, Properties, and Degradation. Springer:2013. p.23,24.
  • 4. Karakoca S, Yılmaz H. Zirkonyum ve sabit protezlerde kullanımı. Atatürk Üniv Diş Hek Fak Derg 2006;36-44.
  • 5. Kim H-K, Kim S-H. Optical properties of pre-colored dental monolithic zirconia ceramics. J Dent 2016;55:75-81.
  • 6. Roumanas ED. The clinical reliability of zirconia-based fixed dental prostheses appears acceptable but further research is necessary. J Evid Based Dent Pract 2013;13:14-15.
  • 7. Nam J-Y, Park M-G. Effects of aqueous and acid-based coloring liquids on the hardness of zirconia restorations. J Prosthet Dent 2017;117:662-68.
  • 8. Miyazaki T, Nakamura T, Matsumura H, Ban S, Kobayashi T. Current status of zirconia restoration. J Prosthodont Res 2013;57:236-61.
  • 9. Al‐Amleh B, Lyons K, Swain M. Clinical trials in zirconia: a systematic review. J Oral Rehabil 2010;37:641-52.
  • 10. Güngör MB, Nemli SK. Fracture resistance of CAD-CAM monolithic ceramic and veneered zirconia molar crowns after aging in a mastication simulator. J Prosthet Dent 2018;119:473-80.
  • 11. Ferrari M, Giovannetti A, Carrabba M, Bonadeo G, Rengo C, Monticelli F, Vichi A. Fracture resistance of three porcelain-layered CAD/CAM zirconia frame designs. Dent Mater 2014;30:163-68.
  • 12. Schmitter M, Schweiger M, Mueller D, Rues S. Effect on in vitro fracture resistance of the technique used to attach lithium disilicate ceramic veneer to zirconia frameworks. Dent Mater 2014;30:122-30.
  • 13. Basso G, Moraes R, Borba M, Griggs J, Della Bona A. Flexural strength and reliability of monolithic and trilayer ceramic structures obtained by the CAD-on technique. Dent Mater 2015;31:1453-59.
  • 14. Özcan M, Jonasch M. Effect of cyclic fatigue tests on aging and their translational implications for survival of all‐ceramic tooth‐borne single crowns and fixed dental prostheses. J Prosthodont 2018;27:364-75.
  • 15. Sulaiman TA, Abdulmajeed AA, Donovan TE, Vallittu PK, Närhi TO, Lassila LV. The effect of staining and vacuum sintering on optical and mechanical properties of partially and fully stabilized monolithic zirconia. Dent Mater J 2015;34:605-10.
  • 16. Sen N, Sermet IB, Cinar S. Effect of coloring and sintering on the translucency and biaxial strength of monolithic zirconia. J Prosthet Dent 2018;119:308. e1-e7.
  • 17. Kim H-K, Kim S-H, Lee J-B, Han J-S, Yeo I-S, Ha S-R. Effect of the amount of thickness reduction on color and translucency of dental monolithic zirconia ceramics. J Adv Prosthodont 2016;8:37-42.
  • 18. Alghazzawi TF. The effect of extended aging on the optical properties of different zirconia materials. J Prosthodont Res 2017;61:305-14.
  • 19. Kolakarnprasert N, Kaizer MR, Kim DK, Zhang Y. New multi-layered zirconias: Composition, microstructure and translucency. Dent Mater 2019;35:797-806.
  • 20. Kaya G. Production and characterization of self-colored dental zirconia blocks. Ceram Int 2013;39:511-17.
  • 21. Ban S, Suzuki T, Yoshihara K, Sasaki K, Kawai T, Kono H. Effect of coloring on mechanical properties of dental zirconia. J Med Biol Eng 2014;34:24-29.
  • 22. Yu N-K, Park M-G. Effect of different coloring liquids on the flexural strength of multilayered zirconia. J Adv Prosthodont 2019;11:209-14.
  • 23. Mahmood DJH, Braian M, Khan A-S, Shabaz A, Larsson C. Fracture load of colored and non-colored high translucent zirconia three-unit fixed dental prosthesis frameworks. Acta Biomater Odontol Scand 2018;4:38-43.
  • 24. Ahangari AH, Ardakani KT, Mahdavi F, Ardakani MT. The effect of two shading techniques on value of zirconia-based crowns. J Dent 2015;16:129.
  • 25. Auzani ML, Dapieve KS, Zucuni CP, Pereira GKR, Valandro LF. Influence of shading technique on mechanical fatigue performance and optical properties of a 4Y-TZP ceramic for monolithic restorations. J Mech Behav Biomed Mater 2020;102:103457.
  • 26. https://www.axsysdental.com/noc/axzir-dental-zirconia-shading-liquids.
  • 27. http://www.dentalzirconiablank.com/sale-7615360-gingival-zirconia-coloring-liquid-3-bottle-for-dyeing-staning-zirconia.html.
  • 28. Rafael CF, Cesar PF, Fredel M, de Souza Magini R, Liebermann A, Volpato CAM. Impact of laboratory treatment with coloring and fluorescent liquids on the optical properties of zirconia before and after accelerated aging. J Prosthet Dent 2018;120:276-81.
  • 29. Tabatabaian F. Color aspect of monolithic zirconia restorations: a review of the literature. J Prosthodont 2018;28:276-87.
  • 30. https://lmtmag.com/products/incoris-tm-tzi................
  • 31.https://www.kulzer.com/int2/int/dental_technician/products_a_to_z/dima_3/dima_mill_zirconia_ml.aspx.
  • 32. https://www.protecdental.com/product/bruxzir-restorations................
  • 33. Shah K, Holloway J, Denry I. 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.
  • 34. Hjerppe J, Närhi T, Fröberg K, Vallittu PK, Lassila LV. Effect of shading the zirconia framework on biaxial strength and surface microhardness. Acta Odontol Scand 2008;66:262-67.
  • 35. Sedda M, Vichi A, Carrabba M, Capperucci A, Louca C, Ferrari M. Influence of coloring procedure on flexural resistance of zirconia blocks. J Prosthet Dent 2015;114:98-102.
  • 36. Tuncel İ, Özat P, Eroğlu E. Effects of coloring procedures on zirconia/veneer ceramics bond strength. J Adv Prosthodont 2014;6:451-55.
  • 37. Kong M, Kim K, Kown T, Hong M. The effects of the number of times dipped in coloring liquid and final sintering temperature on flexural strength of zirconia ceramics: Zirconia ceramics having improved transparency. Kor J Dent Mater 2017;44:171-78.
  • 38. Kuroda S, Shinya A, Yokoyama D, Gomi H, Shinya A. Effects of coloring agents applied during sintering on bending strength and hardness of zirconia ceramics. Dent Mater J 2013;32:793-800.
  • 39. Tuncel I, Turp I, Usumez A. Effect of color shading procedures and cyclic loading on the biaxial flexural strength of zirconia. Niger J Clin Pract 2018;21:7-12.
  • 40. Celik S, Ucar Y, Ekren O. Effect of coloring liquids on color of zirconia frameworks and bond strength of zirconia/veneering ceramic. J Prosthet Dent 2020;124:110-15.
  • 41. Berijani N, Mahshid M, Tabatabaian F, Sadr SJ. Dipping impact on the bond strength between zirconia ceramic and a resin cement. Regen Reconstr Restor 2017;2:44-49.
  • 42. Mahshid M, Berijani N, Sadr SJ, Tabatabaian F, Homayoon SS. Effect of coloring–by-dipping on microtensile bond strength of zirconia to resin cement. J Dent 2015;12:414-23.
  • 43. Pekkan G, Özcan M, Subaşı MG. Clinical factors affecting the translucency of monolithic Y-TZP ceramics. Odontology 2019, DOI: 10.1007/s10266-019-00446-2.
  • 44. Orhun E. The effect of coloring liquid dipping time on the fracture load and color of zirconia ceramics. J Adv Prosthodont 2017;9:67-73.
  • 45. Kim H-K, Kim S-H. Effect of the number of coloring liquid applications on the optical properties of monolithic zirconia. Dent Mater 2014;30:229-37.
  • 46. Giti R, Hojati SA. Effect of varying thickness and number of coloring liquid applications on the color of anatomic contour monolithic zirconia ceramics. J Dent 2018;19:311-19.
  • 47. Abdelbary O, Wahsh M, Sherif A, Salah T. Effect of accelerated aging on translucency of monolithic zirconia. Future Dental Journal 2016;2:65-69.
  • 48. Sen N, Isler S. Microstructural, physical, and optical characterization of high-translucency zirconia ceramics. J Prosthet Dent 2019;123:761-68.
  • 49. Kim H-K, Kim S-H, Lee J-B, Ha S-R. Effects of surface treatments on the translucency, opalescence, and surface texture of dental monolithic zirconia ceramics. J Prosthet Dent 2016;115:773-79.
  • 50. Zhang Y. Making yttria-stabilized tetragonal zirconia translucent. Dent Mater 2014;30:1195-1203.
  • 51. Tuncel İ, Turp I, Üşümez A. Evaluation of translucency of monolithic zirconia and framework zirconia materials. J Adv Prosthodont 2016;8:181-86.
  • 52. 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.
  • 53. Jiang L, Wang CY, Zheng SN, Xue J, Zhou JL, Li W. Effect of Fe₂O₃ on optical properties of zirconia dental ceramic. Chin J Dent Res 2015;18:35-40.
  • 54. Spyropoulou P-E, Giroux EC, Razzoog ME, Duff RE. Translucency of shaded zirconia core material. J Prosthet Dent 2011;105:304-7.
  • 55. Sabet H, Wahsh M, Sherif A, Salah T. Effect of different immersion times and sintering temperatures on translucency of monolithic nanocrystalline zirconia. Future Dental Journal 2018;4:84-89.
There are 55 citations in total.

Details

Primary Language Turkish
Subjects Dentistry
Journal Section Derleme
Authors

Ceyda Başak İnal 0000-0001-6573-7976

Merve Bankoğlu Güngör This is me 0000-0002-4002-6390

Seçil Karakoca Nemli This is me 0000-0001-8836-0673

Publication Date October 14, 2021
Published in Issue Year 2021 Volume: 31 Issue: 4

Cite

APA İnal, C. B., Bankoğlu Güngör, M., & Karakoca Nemli, S. (2021). ZİRKONYA RESTORASYONLARDA RENKLENDİRME. Atatürk Üniversitesi Diş Hekimliği Fakültesi Dergisi, 31(4), 662-668. https://doi.org/10.17567/ataunidfd.822036
AMA İnal CB, Bankoğlu Güngör M, Karakoca Nemli S. ZİRKONYA RESTORASYONLARDA RENKLENDİRME. Ata Diş Hek Fak Derg. October 2021;31(4):662-668. doi:10.17567/ataunidfd.822036
Chicago İnal, Ceyda Başak, Merve Bankoğlu Güngör, and Seçil Karakoca Nemli. “ZİRKONYA RESTORASYONLARDA RENKLENDİRME”. Atatürk Üniversitesi Diş Hekimliği Fakültesi Dergisi 31, no. 4 (October 2021): 662-68. https://doi.org/10.17567/ataunidfd.822036.
EndNote İnal CB, Bankoğlu Güngör M, Karakoca Nemli S (October 1, 2021) ZİRKONYA RESTORASYONLARDA RENKLENDİRME. Atatürk Üniversitesi Diş Hekimliği Fakültesi Dergisi 31 4 662–668.
IEEE C. B. İnal, M. Bankoğlu Güngör, and S. Karakoca Nemli, “ZİRKONYA RESTORASYONLARDA RENKLENDİRME”, Ata Diş Hek Fak Derg, vol. 31, no. 4, pp. 662–668, 2021, doi: 10.17567/ataunidfd.822036.
ISNAD İnal, Ceyda Başak et al. “ZİRKONYA RESTORASYONLARDA RENKLENDİRME”. Atatürk Üniversitesi Diş Hekimliği Fakültesi Dergisi 31/4 (October 2021), 662-668. https://doi.org/10.17567/ataunidfd.822036.
JAMA İnal CB, Bankoğlu Güngör M, Karakoca Nemli S. ZİRKONYA RESTORASYONLARDA RENKLENDİRME. Ata Diş Hek Fak Derg. 2021;31:662–668.
MLA İnal, Ceyda Başak et al. “ZİRKONYA RESTORASYONLARDA RENKLENDİRME”. Atatürk Üniversitesi Diş Hekimliği Fakültesi Dergisi, vol. 31, no. 4, 2021, pp. 662-8, doi:10.17567/ataunidfd.822036.
Vancouver İnal CB, Bankoğlu Güngör M, Karakoca Nemli S. ZİRKONYA RESTORASYONLARDA RENKLENDİRME. Ata Diş Hek Fak Derg. 2021;31(4):662-8.

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