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Methodology of fatigue tests for glued dental samples

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In human teeth, depending on the age at which it is located, there are two types of teeth: milk and solid. During the consumption of various food groups of teeth meet their unique tasks. During Eating teeth are exposed to cyclic loading resulting in microcracks in the structure of the tooth. Using special preparations of dental enamel can be broken by bind to the tooth. The article presents the strength tests for determination of different bonding characteristics of the tooth. Also presents a literature review was divided into groups: the test material and methods of researchers. Of all disguised literature describes and compares the two close to each endurance test methods for tissue tooth blade in tempered. Methods of Testing was conducted under conditions of low and high cyklowych. Summarizes the methods shown and described as would appear the author's own research.
Słowa kluczowe
Rocznik
Strony
355--361
Opis fizyczny
Bibliogr. 31 poz., rys., tab.
Twórcy
autor
  • University of Technology and Live Sciences in Bydgoszcz ul. Kaliskiego 7, 85-796 Bydgoszcz, Poland tel.: +48 52 3408497, fax: +48 52 3408245, wirwicki@utp.edu.pl
Bibliografia
  • [1] Attia A., Abdelaziz K.M., Freitag S., Kern M.: Fracture load of composite resin and feldspathic all-ceramic CAD/CAM crowns, J Prosthet Dent, 2006, Vol. 95, No. 2, ss. 117 – 123
  • [2] Bajaj D„ Nazari A., Eidelman N., Arola D.D.: A comparison of fatigue crack growth in human enamel and hydroxyapatite, Biomaterials, 2008, Vol. 29, ss. 4847 – 4854
  • [3] Barkmeier WW, Erickson RL, Latta MA. : Fatigue limits of enamel bonds with moist and dry techniques, Dental materials journal Vol 25(12) ss. 1527 – 1531
  • [4] Belli S, Ozçopur B, Yeşilyurt C, Bulut G, Ding X, Dorsman G. : The effect of loading on microTBS of four all-in-one adhesives on bonding to dentin, J Biomed Mater Res B Appl Biomater, Vol 91(2) ss. 948 – 956
  • [5] Bijelic J, Garoushi S, Vallittu PK, Lassila LV. : Fracture load of tooth restored with fiber post and experimental short fiber composite, The open dentistry journal, Vol 5 ss. 58 – 65
  • [6] Bolhuis P., de Gee A., Feilzer A.: Influence of fatigue loading on four post-and-core systems in maxillary premolars, Quintessence Int., 2004, Vol. 35, No. 8, ss. 657 – 667
  • [7] Braem M.: Microshear Fatigue Testing of Tooth/Adhesive Interfaces, J Adhes Dent., 2007, Vol. 9, Supplement 2, ss. 249 – 253
  • [8] De Munck J., Van Landuyt K., Peumans M., Poitevin A., Lambrechts P., Braem M. and Van Meerbeek B.:A Critical Review of the Durability of Adhesion to Tooth Tissue: Methods and Results, Journal of Dental Research 2005, Vol. 84 ss. 118 - 133
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  • [11] Garcia Eugenio J., Gomes Osnara M.M., Gomes Joao C.: In vitro analysis of bond strength of self – etching adhesives applied on superficial and deep dentin, Acta Odontol, Vol. 22 ss. 57-62
  • [12] Garoushi S.K., Lassila L.V.J., Vallittu P.K.: Fatigue Strength of Fragmented Incisal Edges Restored with a Fiber Reinforced Restorative Material, The Journal of Contemporary Dental Practice, 2007, Vol. 8, No. 2, ss. 1-10
  • [13] Gateau P., Sabek M„ Dailey B.: Fatigue testing and microscopic evaluation of post and core restorations under artificial crowns, J Prosthet Dent., 1999, Vol. 82, No. 3, ss. 341-347
  • [14] Goto Y., Nicholls J.I., Phillips K.M., Junge T.: Fatigue resistance of endodontically treated teeth restored with three dowel-and-core systems, J Prosthet Dent., 2005, Vol. 93, No. 1, ss. 45-50
  • [15] Herion T„ Ferracane J.L., Covell D.A.Jr.: Three Cements Used for Orthodontic Banding of Porcelain Molars, Angle Orthod., 2007, Vol. 77, No.l, ss. 94-99
  • [16] Heydecke G„ Butz F., Hussein A., Strub J.R.: Fracture strength after dynamic loading endodontically treated teeth restored with different post- and-core systems, J Prosthet Dent, 2002, Vol. 87, No. 4, ss. 438-445
  • [17] Hsu Y.B., Nicholls J.I., Phillips K.M., Libman W.J.: Effect of Core Bonding on Fatigue Failure of Compromised Teeth, The International Journal of Prosthodontics, 2002, Vol. 15, No. 2, ss. 175-178
  • [18] Huang H.H., Lin M.C., Lin C.C., Hsu C.C., Chen F.L., Lee S.Y., Hung C.C.: Effects of welding pulse energy and fluoride ion on the cracking susceptibility and fatigue behavior of Nd: YAG laser-welded cast titanium joints, Dent Mater J., 2006, Vol. 25, No. 3, ss. 632-640
  • [19] Inoue T, Nishimura F, Debari K, Kou K, Miyazaki T. : Fatigue and tensile properties of radicular dentin substrate, Journal of Biomechanics 2011, Vol 44(4) ss. 586 – 592
  • [20] Li BH, Zhao X, Bao Y, Ai HJ. : Resistance to cyclic fatigue of pulpless teeth with flared root canals restored with three kinds of post-and-cores, Shanghai Kou Qiang Yi Xue Vol. 18 ss. 69 - 72
  • [21] Loher H„ Behr M„ Hintereder M„ Rosentritt M„ Handel G.: The impact of cement mixing and storage errors on the risk of failure of glass-ceramic crowns, Clin Oral Invest, 2009, Vol. 13, No. 2, ss. 217-222
  • [22] Minami H„ Suzuki Sh„ Minesaki Y„ Kurashige H„ Tanaka T.: In Vitro Evaluation of the Effect of Thermal and Mechanical Fatigues on the Bonding of an Autopolymerizing Soft Denture Liner to Denture Base Materials Using Different Primers, Journal of Prosthodontics, 2008, Vol. 17, ss. 392-400
  • [23] Piątowska D., Jarosław Cynkier, Małgorzata Paul-Stalmaszczyk: Stomatologia Zachowawcza, współczesne metody opracowania i wypełniania ubytków próchnicowych. Bestom DENTOnet.pl, Łódź 2009
  • [24] Poitevin A., Jan De Munck, Marcio Vivan Cardoso, Atsushi Mine, Marleen Peumans, Paul Lambrechts, Bart Van Meerbeek :Dynamic versus static bond-strength testing of adhesive interfaces, Dental Matherials 2010 Vol. 26, ss. 1068–1076
  • [25] Shono Y., Ogawa T., Terashita M., Carvalho R.M., Pashley E.L. and Pashley D.H.: regional measurement of resin – dentin bonding as an array, Journal of Dental Research, Vol. 78, ss. 699 – 705
  • [26] Singh V, Misra A, Marangos O, Park J, Ye Q, Kieweg SL, Spencer P. : Viscoelastic and fatigue properties of model methacrylate-based dentin adhesives, Journal of Biomedical materials research 2010, Vol 95(2), ss. 283 – 290
  • [27]Staninec M., Kim P., Marshall G. W., Ritchie R.O., Marshall S. J.: Fatigue of dentin– composite interfaces with four-point bend, Dental Materials 2008, Vol. 24, ss. 799 - 803
  • [28] Stellini E, Stomaci D, Zuccon A, Bressan E, Ferro R, Petrone N, Favero L, Mazzoleni S. : Tooth fragment reattachment through the use of a nanofilled composite resin, European journal of paediatric dentisty, Vol 11(2), ss. 77 – 81
  • [29]Topoliśnki T.: Problemy wytrzymałości i trwałości zmęczeniowej w materiałach i konstrukcjach inżynierii biomedycznej, WNITiE, Bydgoszcz 2009
  • [30] Yamamoto M., Takahashi H.: Tensile Fatigue Strength of Light Cure Composite Resins for Posterior Teeth, Dental Materials Journal, 1995, Vol. 14, No. 2, ss.175-184
  • [31] Zahran M., El-Mowafy O., Tam L„ Watson P.A., Finer Y.: Fracture Strength and Fatigue Resistance of All-Ceramic Molar Crowns Manufactured with CAD/ CAM Technology, Journal of Prosthodontics, 2008, Vol. 17, ss. 370-377
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPG8-0056-0063
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