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http://dx.doi.org/10.4047/jap.2014.6.6.444

Effect of anatomic, semi-anatomic and non-anatomic occlusal surface tooth preparations on the adaptation of zirconia copings  

Habib, Syed Rashid (Department of Prosthetic Dental Sciences, College of Dentistry, King Saud University)
Asiri, Waleed (College of Dentistry, King Saud University)
Hefne, Mohammed Jameel (College of Dentistry, King Saud University)
Publication Information
The Journal of Advanced Prosthodontics / v.6, no.6, 2014 , pp. 444-450 More about this Journal
Abstract
PURPOSE. To compare the accuracy of marginal and internal adaptation of zirconia (Zr) copings fabricated on anatomic (A), semi-anatomic (SA) and non-anatomic (NA) occlusal surface preparations. MATERIALS AND METHODS. 45 extracted bicuspid teeth were prepared for receiving zirconia crowns, with different occlusal preparation designs A=15, SA=15 & NA=15. The Zr copings were fabricated by using CAD4DENT, CAD/CAM. The copings were adjusted, cemented and were cross sectioned centrally from buccal cusp tip to lingual cusp tip into mesial and distal halves. The copings were examined under electron microscope at ${\times}200$ magnification and the measurements were recorded at 9 predetermined areas in micrometers. RESULTS. Overall mean gap values for the three groups was found to be $155.93{\pm}33.98{\mu}m$ with Anatomical Occlusal preparation design having the least gap value of $139.23{\pm}30.85{\mu}m$ showing the best adaptation among the groups. Post Hoc Tukey's test showed a statistically significant difference (P=.007) between the means of gap for A & NA preparation designs. Measurements recorded at 9 predetermined points showed variations for the three groups. CONCLUSION. Anatomical occlusal preparation designs resulted in better marginal and internal adaptation of Zr copings. There is a considerable variation between the measured marginal and internal gap values for the Zr copings fabricated by the (CAD4DENT-CAD/CAM). This variation may be associated with the lack of standardization of the preparation of teeth, computerized designing of the coping for each tooth, cement used, uniform pressure application during the cementation of the copings, sectioning of the copings and the microscopic measurements.
Keywords
Zirconia copings; Zirconia crowns; Marginal fit of zirconia crowns; Adaptation of zirconia crowns;
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1 Abduo J, Lyons K, Swain M. Fit of zirconia fixed partial denture: a systematic review. J Oral Rehabil 2010;37:866-76.   DOI   ScienceOn
2 Beuer F, Aggstaller H, Edelhoff D, Gernet W, Sorensen J. Marginal and internal fits of fixed dental prostheses zirconia retainers. Dent Mater 2009;25:94-102.   DOI   ScienceOn
3 Beuer F, Aggstaller H, Richter J, Edelhoff D, Gernet W. Influence of preparation angle on marginal and internal fit of CAD/CAM-fabricated zirconia crown copings. Quintessence Int 2009;40:243-50.
4 Beuer F, Naumann M, Gernet W, Sorensen JA. Precision of fit: zirconia three-unit fixed dental prostheses. Clin Oral Investig 2009;13:343-9.   DOI   ScienceOn
5 Grenade C, Mainjot A, Vanheusden A. Fit of single tooth zirconia copings: comparison between various manufacturing processes. J Prosthet Dent 2011;105:249-55.   DOI   ScienceOn
6 Wettstein F, Sailer I, Roos M, Hammerle CH. Clinical study of the internal gaps of zirconia and metal frameworks for fixed partial dentures. Eur J Oral Sci 2008;116:272-9.   DOI   ScienceOn
7 Kohorst P, Junghanns J, Dittmer MP, Borchers L, Stiesch M. Different CAD/CAM-processing routes for zirconia restorations: influence on fitting accuracy. Clin Oral Investig 2011;15:527-36.   DOI
8 Matta RE, Schmitt J, Wichmann M, Holst S. Circumferential fit assessment of CAD/CAM single crowns-a pilot investigation on a new virtual analytical protocol. Quintessence Int 2012;43:801-9.
9 Jacobs MS, Windeler AS. An investigation of dental luting cement solubility as a function of the marginal gap. J Prosthet Dent 1991;65:436-42.   DOI   ScienceOn
10 McLean JW, von Fraunhofer JA. The estimation of cement film thickness by an in vivo technique. Br Dent J 1971;131:107-11.   DOI   ScienceOn
11 Fransson B, Oilo G, Gjeitanger R. The fit of metal-ceramic crowns, a clinical study. Dent Mater 1985;1:197-9.   DOI   ScienceOn
12 Kokubo Y, Ohkubo C, Tsumita M, Miyashita A, Vult von Steyern P, Fukushima S. Clinical marginal and internal gaps of Procera AllCeram crowns. J Oral Rehabil 2005;32:526-30.   DOI   ScienceOn
13 Quintas AF, Oliveira F, Bottino MA. Vertical marginal discrepancy of ceramic copings with different ceramic materials, finish lines, and luting agents: an in vitro evaluation. J Prosthet Dent 2004;92:250-7.   DOI   ScienceOn
14 Gonzalo E, Suarez MJ, Serrano B, Lozano JF. A comparison of the marginal vertical discrepancies of zirconium and metal ceramic posterior fixed dental prostheses before and after cementation. J Prosthet Dent 2009;102:378-84.   DOI   ScienceOn
15 Molin MK, Karlsson SL, Kristiansen MS. Influence of film thickness on joint bend strength of a ceramic/resin composite joint. Dent Mater 1996;12:245-9.   DOI   ScienceOn
16 Tsukada G, Tanaka T, Kajihara T, Torii M, Inoue K. Film thickness and fluidity of various luting cements determined using a trial indentation meter. Dent Mater 2006;22:183-8.   DOI
17 Moldovan O, Luthardt RG, Corcodel N, Rudolph H. Three-dimensional fit of CAD/CAM-made zirconia copings. Dent Mater 2011;27:1273-8.   DOI   ScienceOn
18 Beuer F, Aggstaller H, Richter J, Edelhoff D, Gernet W. Influence of preparation angle on marginal and internal fit of CAD/CAM-fabricated zirconia crown copings. Quintessence Int 2009;40:243-50.
19 Azar MS, Lehmann KM, Dietrich H, Weibrich G, Schmidtmann I, Scheller H. Effect of preparation depth differences on the marginal fit of zirconia crown copings: an in vitro study. Int J Prosthodont 2011;24:264-6.
20 Renne W, McGill ST, Forshee KV, DeFee MR, Mennito AS. Predicting marginal fit of CAD/CAM crowns based on the presence or absence of common preparation errors. J Prosthet Dent 2012;108:310-5.   DOI
21 Oyar P, Ulusoy M, Eskitascioglu G. Finite element analysis of stress distribution in ceramic crowns fabricated with different tooth preparation designs. J Prosthet Dent 2014;112:871-7.   DOI
22 Motta AB, Pereira LC, Duda FP, Anusavice KJ. Influence of substructure design and occlusal reduction on the stress distribution in metal ceramic complete crowns: 3D finite element analysis. J Prosthodont 2014;23:381-9.   DOI
23 Quintas AF, Oliveira F, Bottino MA. Vertical marginal discrepancy of ceramic copings with different ceramic materials, finish lines, and luting agents: an in vitro evaluation. J Prosthet Dent 2004;92:250-7.   DOI   ScienceOn
24 Shillingburg HT, Sather DA Jr, Wilson EL Jr, Mitchell DL, Blanco LJ, Kessler JC. Fundamentals of fixed prosthodontics. 4th ed., Chicago, Quintessence Pub Co.; 2012. p. 131-48.
25 Rosenstiel SF, Land MF, Fujimoto J. Tooth preparations for all ceramic restorations. In: Contemporary Fixed Prosthodontics. St. Louis; Mosby Elsevier; 2006. p. 323-30.
26 Black S, Amoore JN. Measurement of forces applied during the clinical cementation of dental crowns. Physiol Meas 1993;14:387-92.   DOI
27 Att W, Komine F, Gerds T, Strub JR. Marginal adaptation of three different zirconium dioxide three-unit fixed dental prostheses. J Prosthet Dent 2009;101:239-47.   DOI   ScienceOn
28 Wakabayashi K, Sohmura T, Nakamura T, Kojima T, Kinuta S, Takahashi J, Yatani H. New evaluation method by microfocus radiograph CT for 3D assessment of internal adaptation of all-ceramic crowns. Dent Mater J 2005;24:362-7.   DOI
29 Colpani JT, Borba M, Della Bona A. Evaluation of marginal and internal fit of ceramic crown copings. Dent Mater 2013;29:174-80.   DOI   ScienceOn
30 Boening KW, Walter MH, Reppel PD. Non-cast titanium restorations in fixed prosthodontics. J Oral Rehabil 1992;19:281-7.   DOI
31 Kohorst P, Brinkmann H, Li J, Borchers L, Stiesch M. Marginal accuracy of four-unit zirconia fixed dental prostheses fabricated using different computer-aided design/computer- aided manufacturing systems. Eur J Oral Sci 2009;117:319-25.   DOI   ScienceOn
32 Iwai T, Komine F, Kobayashi K, Saito A, Matsumura H. Influence of convergence angle and cement space on adaptation of zirconium dioxide ceramic copings. Acta Odontol Scand 2008;66:214-8.   DOI   ScienceOn
33 Colpani JT, Borba M, Della Bona A. Evaluation of marginal and internal fit of ceramic crown copings. Dent Mater 2013;29:174-80.   DOI   ScienceOn