Evaluation of the marginal adaptation and debonding strength of two types of CAD-CAM implant-supported cement-retained crowns

Spitznagel FA, Boldt J, Gierthmuehlen PC. CAD-CAM ceramic restorative materials for natural teeth. J Dent Res. 2018;97:1082–91.

Article  PubMed  Google Scholar 

Rauch A, Reich S, Schierz O. Chair-side generated posterior monolithic lithium disilicate crowns: clinical survival after 6 years. Clin Oral Investig. 2017;21:2083–9.

Article  PubMed  Google Scholar 

Toman M, Toksavul S. Clinical evaluation of 121 lithium disilicate all-ceramic crowns up to 9 years. Quintessence Int. 2015;46:189–97.

PubMed  Google Scholar 

Khalifa AE, Mostafa D, Khamis MM. Influence of screw access channel on all ceramic cement-retained implant supported posterior crowns. Int J of Science and Research. 2016;5:2252–8.

Google Scholar 

Pieger S, Salman A, Bidra AS. Clinical outcomes of lithium disilicate single crowns and partial fixed dental prostheses: a systematic review. J Prosthet Dent. 2014;112:22–30.

Article  PubMed  Google Scholar 

Duarte S Jr, Sartori N, Phark J-H. Ceramic-reinforced polymers: CAD/CAM hybrid restorative materials. Curr Oral Health Rep. 2016;3:198–202.

Article  Google Scholar 

Awada A, Nathanson D. Mechanical properties of resin-ceramic CAD/CAM restorative materials. J Prosthet Dent. 2015;114:587–93.

Article  PubMed  Google Scholar 

Bahadır HS, Bayraktar Y. Evaluation of the repair capacities and color stabilities of a resin nanoceramic and hybrid CAD/CAM blocks. J Adv Prosthodont. 2020;12:140–9.

Article  PubMed  PubMed Central  Google Scholar 

Coldea A, Swain MV, Thiel N. Mechanical properties of polymer-infiltrated-ceramic-network materials. Dent Mater. 2013;4:419–26.

Article  Google Scholar 

de Kok P, Kleverlaan CJ, de Jager N, Kuijs R, Feilzer AJ. Mechanical performance of implant-supported posterior crowns. J Prosthet Dent. 2015;114:59–66.

Article  PubMed  Google Scholar 

Rosentritt M, Hahnel S, Engelhardt F, Behr M, Preis V. In vitro performance and fracture resistance of CAD-CAM-fabricated implant supported molar crowns. Clin Oral Investig. 2017;21:1213–9.

Article  PubMed  Google Scholar 

Coldea A, Swain M, Thiel N. Mechanical properties of polymer-infiltrated-ceramic-network materials. J Dent Mater. 2013;29:419–26.

Article  Google Scholar 

El Ghoul WA, Özcan M, Ounsi H, Tohme H, Salameh Z. Effect of different CAD-CAM materials on the marginal and internal adaptation of endocrown restorations: an in vitro study. J Prosthet Dent. 2020;123:128–34.

Article  PubMed  Google Scholar 

Oguz EI, Kılıçarslan MA, Özgür ME, Orhan K, Shujaat S. Comparison of marginal adaptation of different resin-ceramic CAD-CAM crowns: an in vitro study. J Adv Oral Res. 2021;12:112–8.

Article  Google Scholar 

Naffah N, Ounsi H, Ozcan M, Bassal H, Salameh Z. Evaluation of the adaptation and fracture resistance of three CAD-CAM resin ceramics: an in vitro study. J Contemp Dent Pract. 2019;20:571–6.

Article  PubMed  Google Scholar 

Bankoğlu Güngör ME, Doğan A, Turhan Bal Bİ, Nemli S. Evaluation of marginal and internal adaptations of posterior all-ceramic crowns fabricated with chair-side CAD-CAM system: an in vitro study. Acta Odontol Turc. 2018;35:1–8.

Google Scholar 

Taha D, Spintzyk S, Sabet A, Wahsh M, Salah T. Assessment of marginal adaptation and fracture resistance of endocrown restorations utilizing different machinable blocks subjected to thermomechanical aging. J Esthet Restor Dent. 2018;30:319–28.

Article  PubMed  Google Scholar 

Vennerstrom M, Fakhary M, Von Steyern PV. The fit of crowns produced using digital impression systems. Swed Dent. 2014;38:101–10.

Google Scholar 

Al-Rimawi A, EzEldeen M, Schneider D, Politis C, Jacobs R. 3D printed temporary veneer restoring autotransplanted teeth in children: design and concept validation ex vivo. Int J Environ Res Public Health. 2019;16:496.

Article  PubMed  PubMed Central  Google Scholar 

Linkevicius T, Vindasiute E, Puisys A, Peciuliene V. The influence of margin location on the amount of undetected cement excess after delivery of cement-retained implant restorations. Clin Oral Implants Res. 2011;12:1379–84.

Article  Google Scholar 

Bergamo ET, Zahoui A, Ikejiri LLA, Marun M, da Silva KP, Coelho PG, et al. Retention of zirconia crowns to Ti-base abutments: effect of luting protocol, abutment treatment and autoclave sterilization. J Prosthodont Res. 2021;65:171–5.

Article  Google Scholar 

Keith SE, Miller BH, Woody RD, Higginbottom FL. Marginal discrepancy of screw-retained and cemented metal–ceramic crowns on implants abutments. Int J Oral Maxillofac Implants. 1999;14:369–78.

PubMed  Google Scholar 

Kersten S, Tiedemann C. Strength and marginal fit of full and partial porcelain crowns on Branemark implants. Clin Oral Implants Res. 2000;11:59–65.

Article  PubMed  Google Scholar 

Sutherland JK, Loney RW, Syed S. Marginal discrepancy of all-ceramic crowns cemented on implant abutments. J Prosthodont. 1995;4:173–7.

Article  PubMed  Google Scholar 

Sutherland JK, Loney RW, Jarotskic TJ. Marginal discrepancy of ceramic crowns with redesigned implant components. J Prosthet Dent. 1996;75:540–4.

Article  PubMed  Google Scholar 

Saber FS, Abolfazli N, Nuroloyuni S, Khodabakhsh S, Bahrami M, Nahidi R, et al. Effect of abutment height on retention of single cement-retained, wide-and narrow-platform implant-supported restorations. J Dent Res Dent Clin Dent Prospects. 2012;6:98–102.

Google Scholar 

Rismanchian M, Davoudi A, Shadmehr E. Effect of using nano and micro airborne abrasive particles on bond strength of implant abutment to prosthesis. Braz Dent J. 2015;26:50–5.

Article  PubMed  Google Scholar 

Linkevicius T, Vindasiute E, Puisys A, Linkeviciene L, Maslova N, Puriene A. The influence of the cementation margin position on the amount of undetected cement. A prospective clinical study. Clin Oral Implants Res. 2012;24

Davoudi A, Rismanchian M. Effects of modifying implant screw access channels on the amount of extruded excess cement and retention of cement-retained implant-supported dental prostheses: a systematic review. J Prosthet Dent. 2019;121:52–8.

Article  PubMed  Google Scholar 

Naert I, Van der Donck A, Beckers L. Precision of fit and clinical evaluation of all-ceramic full restorations followed between 0.5 and 5 years. J Oral Rehabil. 2005;32:51–7.

Article  PubMed  Google Scholar 

Carnaggio TV, Conrad R, Engelmeier RL, Gerngross P, Paravina R, Perezous L, et al. Retention of CAD-CAM all-ceramic crowns on prefabricated implant abutments: an in vitro comparative study of luting agents and abutment surface area. J Prosthodont. 2012;21:523–8.

Article  PubMed  Google Scholar 

Schriwer C, Skjold A, Gjerdet NR, Øilo M. Monolithic zirconia dental crowns. Internal fit, margin quality, fracture mode and load at fracture. Dent Mater. 2017;33:1012–20.

Article  PubMed  Google Scholar 

Skjold A, Schriwer C, Øilo M. Effect of margin design on fracture load of zirconia crowns. Eur J Oral Sci. 2019;127:89–96.

Article  PubMed  Google Scholar 

Kotz S, Balakrishnan N, Read CB, Vidakovic B. Encyclopedia of statistical sciences. 2nd ed. Hoboken, NJ: Wiley-Interscience; 2006. p. 981–9.

Google Scholar 

Borges GA, Faria JS, Agarwal P, Spohr AM, CorrerSobrinho L, Miranzi BA. In vitro marginal fit of three allceramic crown systems before and after bonding. Oper Dent. 2012;37:641–709.

Article  PubMed  Google Scholar 

Ganapathy D, Sathyamoorthy A, Ranganathan H, Murthykumar K. Effect of resin bonded luting agents influencing marginal discrepancy in all ceramic complete veneer crowns. J Clin Diagn Res. 2016;10:67–70.

Google Scholar 

Azarbal A, Azarbal M, Engelmeier RL, Kunkel TC. Marginal fit comparison of CAD-CAM crowns milled from two different materials. J Prosthodont. 2018;27:421–8.

Article  PubMed  Google Scholar 

Yildirim B. Effect of porcelain firing and bonding on the marginal fit of implant-supported metal-ceramic restorations fabricated by additive or subtractive manufacturing methods. J Prosthet Dent. 2020;124:476.

Article  Google Scholar 

Zaghloul HH, Younis JF. Marginal fit of implant-supported all-ceramic zirconia frameworks. J Oral Implantol. 2013;39:417–24.

Article  PubMed  Google Scholar 

Nejatidanesh F, Shakibamehr AH, Savabi O. Comparison of marginal and internal adaptation of CAD-CAM and Conventional cement retained implant-supported single crowns. Implant Dent. 2016;25:103–8.

Article  PubMed  Google Scholar 

Valente VS, Francischone CE, Soares V, de Moura CD. Marginal fit metal-ceramic and in-Ceram single crown cement retained in implant-supported abutments. J Contemp Dent Pract. 2016;17:969–72.

Article  PubMed  Google Scholar 

Gold SA, Ferracane JL, da Costa J. Effect of crystallization firing on marginal fit of lithium disilicate crowns. J Prosthodont. 2018;27:63–6.

Article  PubMed  Google Scholar 

Mounajjed R, Layton D, Azar B. The marginal fit of E.Max press and E.Max CAD lithium disilicate restorations: a critical review. J Dent Mater. 2016;35:835–44.

Article  Google Scholar 

Gonzalo E, Suárez MJ, Serrano B, Lozzano JF. A comparison of the marginal vertical discrepancies of zirconium and metal ceramic posterior fixed dental prostheses before and after bonding. J Prosthet Dent. 2009;102:378–84.

Article  PubMed  Google Scholar 

Rohr N, Brunner S, Märtin S, Fischer J. Influence of cement type and ceramic primer on retention of polymer-infiltrated ceramic crowns to a one-piece zirconia implant. J Prosthet Dent. 2018;119:138–45.

Article  PubMed  Google Scholar 

Khalifa AA, Metwally NA, Khamis MM. Evaluation of debonding force of screw-retained lithium disilicate implant-supported crowns cemented to abutments of different designs and surface treatments. J Prosthet Dent. 2023;3913:68–9.

Google Scholar 

留言 (0)

沒有登入
gif