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Articles; Medical Biotechnology

Examination of stress distribution and fracture resistance in five-unit tooth- and implant-supported partial fixed zirconia prosthesis

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Pages 1176-1183 | Received 12 Feb 2015, Accepted 13 Jul 2015, Published online: 17 Aug 2015

References

  • Branemark PI, Adell R, Breine U, et al. Intra-osseous anchorage of dental prostheses. I. Experimental studies. Scand J Plast Reconstr Surg Hand Surg. 1969;3(2):81–100.
  • Buser D, Mericske-Stern R, Bernard JP, et al. Long-term evaluation of non-submerged ITI implants. Part 1: 8-year life table analysis of a prospective multi-center study with 2359 implants. Clin Oral Implants Res. 1997;8:161–172.
  • Christensen GJ. Ceramics vs. porcelain fused to metal crowns: give your patients a choice. J Am Dent Assoc. 1994;125:311–312, 314.
  • Hansen PA, West LA. Allergic reaction following insertion of a Pd-Cu-Au fixed partial denture: a clinical report. J Prosthodont. 1997;6:144–148.
  • Vult Von Steyern P, Carlson P, Nilner K. All-ceramic fixed partial dentures designed according to the DC-Zirkon technique. A 2-year clinical study. J Oral Rehabil. 2005;32:180–187.
  • Piwowarczyk A, Ottl P, Lauer HC, et al. A clinical report and overview of scientific studies and clinical procedures conducted on the 3M ESPE Lava All-Ceramic System. J Prosthodont. 2005;14:39–45.
  • Studart AR, Filser F, Kocher P, et al. Cyclic fatigue in water of veneer-framework composites for all-ceramic dental bridges. Dent Mater. 2007;23:177–185.
  • Rismanchian M, Shafiei S, Nourbakhshian F, et al. Flexural strengths of implant-supported zirconia based bridges in posterior regions. J Adv Prosthodont. 2014;6:346–350.
  • Kelly JR, Denry I. Stabilized zirconia as a structural ceramic: an overview. Dent Mater. 2008;24(3):289–298.
  • Kobayashi K, Kuwajima H, Masaki T. Phase change and mechanical properties of ZrO2-Y2O3 solid electrolyte after aging. Solid State Ionics. 1981;3(4):489–495.
  • Sato TMS. Transformation of yttria-doped tetragonal ZrO2 polycrystals by annealing in water. J Am Ceram Soc. 1985;68(6):356–359.
  • Sato T, Shimada M. Crystalline phase-change in yttria-partially stabilized zirconia by low-temperature annealing. J Am Ceram Soc. 1984;67(10):C212–C213.
  • Cales B, Stefani Y, Lilley E. Long-term in vivo and in vitro aging of a zirconia ceramic used in orthopaedy. J Biomed Mater Res. 1994;28:619–624.5
  • Luo J, Ball Richard J, Stevens R. Gadolinia doped ceria/yttria stabilised zirconia electrolytes for solid oxide fuel cell applications. J Mater Sci. 2004;39(1):235–240.
  • Heuer AH. Transformation toughening in ZrO2-containing ceramics. J Am Ceram Soc. 1987;70(10):689–698.
  • Reidy DJ, Holmes JD, Morris MA. Preparation of a highly thermally stable titania anatase phase by addition of mixed zirconia and silica dopants. Ceram Int. 2006;32(3):235–239.
  • Kingery WD, Bowen HK, Uhlmann DR. Introduction to ceramics. 2nd ed. New York (NY): Wiley; 1976.
  • Petrie CS, Williams JL. Comparative evaluation of implant designs: influence of diameter, length, and taper on strains in the alveolar crest. A three-dimensional finite-element analysis. Clin Oral Implants Res. 2005;16:486–494.
  • Guven S, Eratilla V, Beydemir K, et al. The evaluation of stress distributions in 3 and 5 unit dental and implant supported fixed zirconia restorations: finite element analysis. Cumhuriyet Dent J. 2015;18(2):128–140.
  • Guven S, Akdogan M, Oz C, et al. Three-dimensional finite-element analysis of two ceramic inlay restorations with different cavity designs. Biotechnol Biotechnol Equip. 2015;29(3):579–585.
  • Guven S, Atalay Y, Asutay F, et al. Comparison of the effects of different loading locations on stresses transferred to straight and angled implant-supported zirconia frameworks: a finite element method study. Biotechnol Biotechnol Equip. 2015;29(4):766–772.
  • Guven S, Demirci F, Yavuz I, et al. Three-dimensional finite-element analysis of a single implant-supported zirconia framework and its effect on stress distribution in D4 (maxilla) and D2 (mandible) bone quality. Biotechnol Biotechnol Equip. Forthcoming 2015. DOI:10.1080/13102818.2015.1046404
  • Molin MK, Onesti MP, Petersson TB, et al. Three-dimensional finite element analyses of all-ceramic posterior fixed partial dentures with different designs. Int J Prosthodont. 2007;20:89–91.
  • Vult von Steyern P, Jonsson O, Nilner K. Five-year evaluation of posterior all-ceramic three-unit (In-Ceram) FPDs. Int J Prosthodont. 2001;14(4):379–384.
  • Larsson C, Holm L, Lövgren N, et al. Fracture strength of four-unit Y-TZP FPD cores designed with varying connector diameter. An in-vitro study. J Oral Rehabil. 2007;34(9):702–709.
  • Sorrentino R, De Simone G, Tetè S, et al. Five-year prospective clinical study of posterior three-unit zirconia-based fixed dental prostheses. Clin Oral Investig. 2012;16(3):977–985.
  • Odman P, Andersson B. Procera AllCeram crowns followed for 5 to 10.5 years: a prospective clinical study. Int J Prosthodont. 2001;14:504–509.
  • Sorrentino R, Galasso L, Tetè S, et al. Clinical evaluation of 209 all-ceramic single crowns cemented on natural and implant-supported abutments with different luting agents: a 6-year retrospective study. Clin Implant Dent Relat Res. 2012;14(2):184–197.
  • Ash MM, Nelson N. Wheeler's dental anatomy, physiology, and occlusion. 8th ed. Philadelphia (PA): Saunders; 2002.
  • Heravi F, Salari S, Tanbakuchi B, et al. Effects of crown-root angle on stress distribution in the maxillary central incisors' PDL during application of intrusive and retraction forces: a three-dimensional finite element analysis. Prog Orthod. 2013;14:26.
  • Akca K, Iplikcioglu H. Finite element stress analysis of the influence of staggered versus straight placement of dental implants. Int J Oral Maxillofacial Implants. 2001;16:722–730.
  • Holmes DC, Loftus JT. Influence of bone quality on stress distribution for endosseous implants. J Oral Implantol. 1997;23:104–111.
  • Atmaram GH, Mohammed H. Estimation of physiologic stresses with a natural tooth considering fibrous PDL structure. J Dent Res. 1981;60:873–877.
  • O'Brien WJ. Dental materials and their selection. 3rd ed. Hanover Park (IL): Quintessence Pub. Co. Inc.; 2002.
  • Geng JP, Tan KB, Liu GR. Application of finite element analysis in implant dentistry: a review of the literature. J Prosthet Dent. 2001;85:585–598.
  • Ismail YH, Pahountis LN, Fleming JF. Comparison of two-dimensional and three-dimensional finite element analysis of a blade implant. Int J Oral Implantol. 1987;4:25–31.
  • Bates JF, Stafford GD, Harrison A. Masticatory function – a review of the literature. 1. The form of the masticatory cycle. J Oral Rehabil. 1975;2:281–301.
  • Richter EJ. In vivo vertical forces on implants. Int J Oral Maxillofacial Implants. 1995;10:99–108.
  • Gibbs CH, Mahan PE, Mauderli A, et al. Limits of human bite strength. J Prosthet Dent. 1986;56:226–229.
  • Tsumita M, Kokubo Y, Ohkubo C, et al. Clinical evaluation of posterior all-ceramic FPDs (Cercon): a prospective clinical pilot study. J Prosthodont Res. 2010;54:102–105.
  • Sailer I, Gottnerb J, Kanelb S, et al. Randomized controlled clinical trial of zirconia-ceramic and metal-ceramic posterior fixed dental prostheses: a 3-year follow-up. Int J Prosthodont. 2009;22:553–560.
  • Sadan A, Blatz MB, Lang B. Clinical considerations for densely sintered alumina and zirconia restorations: part 1. Int J Periodontics Restorative Dent. 2005;25:213–219.
  • Sadan A, Blatz MB, Lang B. Clinical considerations for densely sintered alumina and zirconia restorations: part 2. Int J Periodontics Restorative Dent. 2005;25:343–349.
  • Eschbach S, Wolfart S, Bohlsen F, et al. Clinical evaluation of all-ceramic posterior three-unit FDPs made of In-Ceram zirconia. Int J Prosthodont. 2009;22:490–492.
  • Beuer F, Edelhoff D, Gernet W, et al. Three-year clinical prospective evaluation of zirconia-based posterior fixed dental prostheses (FDPs). Clin Oral Investig. 2009;13:445–451.
  • Schmitter M, Mussotter K, Rammelsberg P, et al. Clinical performance of extended zirconia frameworks for fixed dental prostheses: two-year results. J Oral Rehabil. 2009;36(8):610–615.
  • Schmitter M, Mussotter K, Rammelsberg P, et al. Clinical performance of long-span zirconia frameworks for fixed dental prostheses: 5-year results. J Oral Rehabil. 2012;39(7):552–557.
  • Motta AB, Pereira LC, da Cunha AR, et al. The influence of the loading mode on the stress distribution on the connector region of metal-ceramic and all-ceramic fixed partial denture. Artif Organs. 2008;32(4):283–291.
  • Konstantinidis IK, Jacoby S, Rädel M, et al. Prospective evaluation of zirconia based tooth- and implant-supported fixed dental prostheses: 3-year results. J Dent. 2015;43(1):87–93.
  • Yan Y, Nunez PL, Hart RT. Finite-element model of the human head: scalp potentials due to dipole sources. Med Biol Eng Comput. 1991;29(5):475–481.