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2005 | OriginalPaper | Hoofdstuk

7. Bonding in Prosthodontics with Cements

Auteurs : A. El Zohairy, A.J. Feilzer

Gepubliceerd in: Dental Hard Tissues and Bonding

Uitgeverij: Springer Berlin Heidelberg

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Abstract

When a tooth becomes decayed or fractured, an indirect restoration may be indicated to restore its functional and biological integrity. To reach that goal, special requirements have to be set for the properties of the cement used to retain the restoration.
Literatuur
1.
go back to reference Pontius O, Hutter JW. Survival rate and fracture strength of incisors restored with different post and core systems and endodontically treated incisors without coronoradicular reinforcement. J Endod 2002; 28:710–715CrossRefPubMed Pontius O, Hutter JW. Survival rate and fracture strength of incisors restored with different post and core systems and endodontically treated incisors without coronoradicular reinforcement. J Endod 2002; 28:710–715CrossRefPubMed
2.
go back to reference Webb EL, Straka WF, Phillips CL. Tooth crazing associated with threaded pins:a three-dimensional model. J Prosthet Dent 1989; 61:624–628CrossRefPubMed Webb EL, Straka WF, Phillips CL. Tooth crazing associated with threaded pins:a three-dimensional model. J Prosthet Dent 1989; 61:624–628CrossRefPubMed
3.
go back to reference Buonocore MG. A simple method of increasing the adhesion of acrylic filling materials to enamel surfaces. J Dent Res 1955; 34:849–853CrossRefPubMed Buonocore MG. A simple method of increasing the adhesion of acrylic filling materials to enamel surfaces. J Dent Res 1955; 34:849–853CrossRefPubMed
4.
go back to reference Van Meerbeek B, Vargas M, Inoue S, Yoshida Y, Peumans M, Lambrechts P, Vanherle G. Adhesives and cements to promote preservation dentistry. Oper Dent 2001:119–144 Van Meerbeek B, Vargas M, Inoue S, Yoshida Y, Peumans M, Lambrechts P, Vanherle G. Adhesives and cements to promote preservation dentistry. Oper Dent 2001:119–144
5.
go back to reference Watanabe I, Nakabayashi N, Pashley DH. Bonding to ground dentin by a phenyl-P self-etching primer. J Dent Res 1994; 73:1212–1220PubMed Watanabe I, Nakabayashi N, Pashley DH. Bonding to ground dentin by a phenyl-P self-etching primer. J Dent Res 1994; 73:1212–1220PubMed
6.
go back to reference Ogata M, Harada N, Yamaguchi S, Nakajima M, Pereira PN, Tagami J. Effects of different burs on dentin bond strengths of self-etching primer bonding systems. Oper Dent 2001; 26:375–382PubMed Ogata M, Harada N, Yamaguchi S, Nakajima M, Pereira PN, Tagami J. Effects of different burs on dentin bond strengths of self-etching primer bonding systems. Oper Dent 2001; 26:375–382PubMed
7.
go back to reference Ogata M, Harada N, Yamaguchi S, Nakajima M, Tagami J. Effect of self-etching primer vs phosphoric acid etchant on bonding to bur-prepared dentin. Oper Dent 2002; 27:447–454PubMed Ogata M, Harada N, Yamaguchi S, Nakajima M, Tagami J. Effect of self-etching primer vs phosphoric acid etchant on bonding to bur-prepared dentin. Oper Dent 2002; 27:447–454PubMed
8.
go back to reference Lacy AM, LaLuz J, Watanabe LG, Dellinges M. Effect of porcelain surface treatment on the bond to composite. J Prosthet Dent 1988; 60:288–291CrossRefPubMed Lacy AM, LaLuz J, Watanabe LG, Dellinges M. Effect of porcelain surface treatment on the bond to composite. J Prosthet Dent 1988; 60:288–291CrossRefPubMed
9.
go back to reference Della Bona A, Anusavice KJ, Shen C. Microtensile strength of composite bonded to hotpressed ceramics. J Adhes Dent 2000; 2:305–313PubMed Della Bona A, Anusavice KJ, Shen C. Microtensile strength of composite bonded to hotpressed ceramics. J Adhes Dent 2000; 2:305–313PubMed
10.
go back to reference Feilzer AJ, De Gee AJ, Davidson CL. Increased wall-to-wall curing contraction in thin bonded resin layers (see comments). J Dent Res 1989; 68:48–50CrossRefPubMed Feilzer AJ, De Gee AJ, Davidson CL. Increased wall-to-wall curing contraction in thin bonded resin layers (see comments). J Dent Res 1989; 68:48–50CrossRefPubMed
11.
go back to reference Horn HR. Porcelain laminate veneers bonded to etched enamel. Dent Clin North Am 1983; 27:671–684PubMed Horn HR. Porcelain laminate veneers bonded to etched enamel. Dent Clin North Am 1983; 27:671–684PubMed
12.
go back to reference Calamia JR. Etched porcelain veneers: the current state of the art. Quintessence Int 1985; 16:5–12PubMed Calamia JR. Etched porcelain veneers: the current state of the art. Quintessence Int 1985; 16:5–12PubMed
13.
go back to reference Kato H, Matsumura H, Atsuta M. Effect of etching and sandblasting on bond strength to sintered porcelain of unfilled resin. J Oral Rehabil 2000; 27:103–110CrossRefPubMed Kato H, Matsumura H, Atsuta M. Effect of etching and sandblasting on bond strength to sintered porcelain of unfilled resin. J Oral Rehabil 2000; 27:103–110CrossRefPubMed
14.
go back to reference El Zohairy A, De Gee AJ, Feilzer A, Davidson CL. Long-term micro-tensile bond strength of resin cements bonded to CAD/CAM ceramic blocks. J Dent Res 2002; 81:380CrossRef El Zohairy A, De Gee AJ, Feilzer A, Davidson CL. Long-term micro-tensile bond strength of resin cements bonded to CAD/CAM ceramic blocks. J Dent Res 2002; 81:380CrossRef
15.
go back to reference al Edris A, al Jabr A, Cooley RL, Barghi N. SEM evaluation of etch patterns by three etchants on three porcelains. J Prosthet Dent 1990; 64:734–739CrossRefPubMed al Edris A, al Jabr A, Cooley RL, Barghi N. SEM evaluation of etch patterns by three etchants on three porcelains. J Prosthet Dent 1990; 64:734–739CrossRefPubMed
16.
go back to reference Peumans M, Van Meerbeek B, Yoshida Y, Lambrechts P, Vanherle G. Porcelain veneers bonded to tooth structure: an ultra-morphological FE-SEM examination of the adhesive interface. Dent Mater 1999; 15:105–119CrossRefPubMed Peumans M, Van Meerbeek B, Yoshida Y, Lambrechts P, Vanherle G. Porcelain veneers bonded to tooth structure: an ultra-morphological FE-SEM examination of the adhesive interface. Dent Mater 1999; 15:105–119CrossRefPubMed
17.
go back to reference El Zohairy AA, De Gee AJ, Mohsen MM, Feilzer AJ. Microtensile bond strength testing of luting cements to prefabricated CAD/CAM ceramic and composite blocks. Dent Mater 2005; 21:83–93CrossRefPubMed El Zohairy AA, De Gee AJ, Mohsen MM, Feilzer AJ. Microtensile bond strength testing of luting cements to prefabricated CAD/CAM ceramic and composite blocks. Dent Mater 2005; 21:83–93CrossRefPubMed
18.
go back to reference Chen JH, Matsumura H, Atsuta M. Effect of etchant, etching period, and silane priming on bond strength to porcelain of composite resin. Oper Dent 1998; 23:250–257PubMed Chen JH, Matsumura H, Atsuta M. Effect of etchant, etching period, and silane priming on bond strength to porcelain of composite resin. Oper Dent 1998; 23:250–257PubMed
19.
go back to reference Shimada Y, Yamaguchi S, Tagami J. Micro-shear bond strength of dual-cured resin cement to glass ceramics. Dent Mater 2002; 18:380–388CrossRefPubMed Shimada Y, Yamaguchi S, Tagami J. Micro-shear bond strength of dual-cured resin cement to glass ceramics. Dent Mater 2002; 18:380–388CrossRefPubMed
20.
go back to reference Heymann HO, Bayne SC, Sturdevant JR, Wilder AD Jr, Roberson TM. The clinical performance of CAD-CAM-generated ceramic inlays: a 4-year study. J Am Dent Assoc 1996; 127:1171–1181CrossRefPubMed Heymann HO, Bayne SC, Sturdevant JR, Wilder AD Jr, Roberson TM. The clinical performance of CAD-CAM-generated ceramic inlays: a 4-year study. J Am Dent Assoc 1996; 127:1171–1181CrossRefPubMed
21.
go back to reference Roulet JF, Soderholm KJ, Longmate J. Effects of treatment and storage conditions on ceramic/ composite bond strength. J Dent Res 1995; 74:381–387CrossRefPubMed Roulet JF, Soderholm KJ, Longmate J. Effects of treatment and storage conditions on ceramic/ composite bond strength. J Dent Res 1995; 74:381–387CrossRefPubMed
22.
go back to reference Paffenbarger GC, Sweeney WT, Bowen RL. Bonding porcelain teeth to acrylic resin denture bases. J Am Dent Assoc 1967; 74:1018–1023CrossRefPubMed Paffenbarger GC, Sweeney WT, Bowen RL. Bonding porcelain teeth to acrylic resin denture bases. J Am Dent Assoc 1967; 74:1018–1023CrossRefPubMed
23.
go back to reference Aida M, Hayakawa T, Mizukawa K. Adhesion of composite to porcelain with various surface conditions. J Prosthet Dent 1995; 73:464–470CrossRefPubMed Aida M, Hayakawa T, Mizukawa K. Adhesion of composite to porcelain with various surface conditions. J Prosthet Dent 1995; 73:464–470CrossRefPubMed
24.
go back to reference Sato K, Matsumura H, Atsuta M. Effect of three-liquid bonding agents on bond strength to a machine-milled ceramic material. J Oral Rehabil 1999; 26:570–574CrossRefPubMed Sato K, Matsumura H, Atsuta M. Effect of three-liquid bonding agents on bond strength to a machine-milled ceramic material. J Oral Rehabil 1999; 26:570–574CrossRefPubMed
25.
go back to reference Matsumura H, Kato H, Atsuta M. Shear bond strength to feldspathic porcelain of two luting cements in combination with three surface treatments. J Prosthet Dent 1997; 78:511–517CrossRefPubMed Matsumura H, Kato H, Atsuta M. Shear bond strength to feldspathic porcelain of two luting cements in combination with three surface treatments. J Prosthet Dent 1997; 78:511–517CrossRefPubMed
26.
go back to reference Della Bona A, Northeast SE. Shear bond strength of resin bonded ceramic after different try-in procedures. J Dent 1994; 22:103–107CrossRefPubMed Della Bona A, Northeast SE. Shear bond strength of resin bonded ceramic after different try-in procedures. J Dent 1994; 22:103–107CrossRefPubMed
27.
go back to reference Barghi N. To silanate or not to silanate: making a clinical decision. Compend Contin Educ Dent 2000; 21:659–662, 664; quiz 666PubMed Barghi N. To silanate or not to silanate: making a clinical decision. Compend Contin Educ Dent 2000; 21:659–662, 664; quiz 666PubMed
28.
go back to reference Hooshmand T, van Noort R, Keshvad A. Bond durability of the resin-bonded and silane treated ceramic surface. Dent Mater 2002; 18:179–188CrossRefPubMed Hooshmand T, van Noort R, Keshvad A. Bond durability of the resin-bonded and silane treated ceramic surface. Dent Mater 2002; 18:179–188CrossRefPubMed
29.
go back to reference Kern M, Strub JR. Bonding to alumina ceramic in restorative dentistry: clinical results over up to 5 years. J Dent 1998; 26:245–249CrossRefPubMed Kern M, Strub JR. Bonding to alumina ceramic in restorative dentistry: clinical results over up to 5 years. J Dent 1998; 26:245–249CrossRefPubMed
30.
go back to reference James DF, Yarovesky U. An esthetic inlay technique for posterior teeth. Quintessence Int 1983; 14:725–731PubMed James DF, Yarovesky U. An esthetic inlay technique for posterior teeth. Quintessence Int 1983; 14:725–731PubMed
31.
go back to reference Wendt SL Jr. The effect of heat used as secondary cure upon the physical properties of three composite resins. II. Wear, hardness, and color stability. Quintessence Int 1987; 18:351–356PubMed Wendt SL Jr. The effect of heat used as secondary cure upon the physical properties of three composite resins. II. Wear, hardness, and color stability. Quintessence Int 1987; 18:351–356PubMed
32.
go back to reference Wendt SL Jr. The effect of heat used as a secondary cure upon the physical properties of three composite resins. I. Diametral tensile strength, compressive strength, and marginal dimensional stability. Quintessence Int 1987; 18:265–271PubMed Wendt SL Jr. The effect of heat used as a secondary cure upon the physical properties of three composite resins. I. Diametral tensile strength, compressive strength, and marginal dimensional stability. Quintessence Int 1987; 18:265–271PubMed
33.
go back to reference DeSchepper EJ, Tate WH, Powers JM. Bond strength of resin cements to microfilled composites. Am J Dent 1993; 6:235–238PubMed DeSchepper EJ, Tate WH, Powers JM. Bond strength of resin cements to microfilled composites. Am J Dent 1993; 6:235–238PubMed
34.
go back to reference Swift EJ Jr, Brodeur C, Cvitko E, Pires JA. Treatment of composite surfaces for indirect bonding. Dent Mater 1992; 8:193–196CrossRefPubMed Swift EJ Jr, Brodeur C, Cvitko E, Pires JA. Treatment of composite surfaces for indirect bonding. Dent Mater 1992; 8:193–196CrossRefPubMed
35.
go back to reference Tate WH, DeSchepper EJ, Powers JM. Bond strength of resin cements to a hybrid composite. Am J Dent 1993; 6:195–198PubMed Tate WH, DeSchepper EJ, Powers JM. Bond strength of resin cements to a hybrid composite. Am J Dent 1993; 6:195–198PubMed
36.
go back to reference Frankenberger R, Strobel WO, Baresel J, Trapper T, Kramer N, Petschelt A. Effect of surface treatment on fatigue behaviour between Tetric Ceram inlays and Variolink luting composite. Clin Oral Investig 2001; 5:260–265CrossRefPubMed Frankenberger R, Strobel WO, Baresel J, Trapper T, Kramer N, Petschelt A. Effect of surface treatment on fatigue behaviour between Tetric Ceram inlays and Variolink luting composite. Clin Oral Investig 2001; 5:260–265CrossRefPubMed
37.
go back to reference Turner CW, Meiers JC. Repair of an aged, contaminated indirect composite resin with a direct, visible-light-cured composite resin. Oper Dent 1993; 18:187–194PubMed Turner CW, Meiers JC. Repair of an aged, contaminated indirect composite resin with a direct, visible-light-cured composite resin. Oper Dent 1993; 18:187–194PubMed
38.
go back to reference Latta MA, Barkmeier WW. Bond strength of a resin cement to a cured composite inlay material. J Prosthet Dent 1994; 72:189–193CrossRefPubMed Latta MA, Barkmeier WW. Bond strength of a resin cement to a cured composite inlay material. J Prosthet Dent 1994; 72:189–193CrossRefPubMed
39.
go back to reference Nakabayashi N, Kojima K, Masuhara E. The promotion of adhesion by the infiltration of monomers into tooth substrates. J Biomed Mater Res 1982; 16:265–273CrossRefPubMed Nakabayashi N, Kojima K, Masuhara E. The promotion of adhesion by the infiltration of monomers into tooth substrates. J Biomed Mater Res 1982; 16:265–273CrossRefPubMed
40.
go back to reference Shono Y, Terashita M, Shimada J, Kozono Y, Carvalho RM, Russell CM, Pashley DH. Durability of resin-dentin bonds. J Adhes Dent 1999; 1:211–218PubMed Shono Y, Terashita M, Shimada J, Kozono Y, Carvalho RM, Russell CM, Pashley DH. Durability of resin-dentin bonds. J Adhes Dent 1999; 1:211–218PubMed
41.
go back to reference Armstrong SR, Keller JC, Boyer DB. The influence of water storage and C-factor on the dentin—resin composite microtensile bond strength and debond pathway utilizing a filled and unfilled adhesive resin. Dent Mater 2001; 17:268–276CrossRefPubMed Armstrong SR, Keller JC, Boyer DB. The influence of water storage and C-factor on the dentin—resin composite microtensile bond strength and debond pathway utilizing a filled and unfilled adhesive resin. Dent Mater 2001; 17:268–276CrossRefPubMed
42.
go back to reference Okuda M, Pereira PN, Nakajima M, Tagami J. Relationship between nanoleakage and longterm durability of dentin bonds. Oper Dent 2001; 26:482–490PubMed Okuda M, Pereira PN, Nakajima M, Tagami J. Relationship between nanoleakage and longterm durability of dentin bonds. Oper Dent 2001; 26:482–490PubMed
43.
go back to reference Okuda M, Pereira PN, Nakajima M, Tagami J, Pashley DH. Long-term durability of resin dentin interface: nanoleakage vs microtensile bond strength. Oper Dent 2002; 27:289–296PubMed Okuda M, Pereira PN, Nakajima M, Tagami J, Pashley DH. Long-term durability of resin dentin interface: nanoleakage vs microtensile bond strength. Oper Dent 2002; 27:289–296PubMed
44.
go back to reference Takahashi A, Inoue S, Kawamoto C, Ominato R, Tanaka T, Sato Y, Pereira PN, Sano H. In vivo long-term durability of the bond to dentin using two adhesive systems. J Adhes Dent 2002; 4:151–159PubMed Takahashi A, Inoue S, Kawamoto C, Ominato R, Tanaka T, Sato Y, Pereira PN, Sano H. In vivo long-term durability of the bond to dentin using two adhesive systems. J Adhes Dent 2002; 4:151–159PubMed
45.
go back to reference Forsten L. Fluoride release and uptake by glass-ionomers and related materials and its clinical effect. Biomaterials 1998; 19:503–508CrossRefPubMed Forsten L. Fluoride release and uptake by glass-ionomers and related materials and its clinical effect. Biomaterials 1998; 19:503–508CrossRefPubMed
46.
go back to reference Forsten L. Resin-modified glass ionomer cements: fluoride release and uptake. Acta Odontol Scand 1995; 53:222–225CrossRefPubMed Forsten L. Resin-modified glass ionomer cements: fluoride release and uptake. Acta Odontol Scand 1995; 53:222–225CrossRefPubMed
47.
go back to reference Forsten L. Fluoride release and uptake by glass ionomers. Scand J Dent Res 1991; 99:241–245PubMed Forsten L. Fluoride release and uptake by glass ionomers. Scand J Dent Res 1991; 99:241–245PubMed
48.
go back to reference Attar N, Onen A. Fluoride release and uptake characteristics of aesthetic restorative materials. J Oral Rehabil 2002; 29:791–798CrossRefPubMed Attar N, Onen A. Fluoride release and uptake characteristics of aesthetic restorative materials. J Oral Rehabil 2002; 29:791–798CrossRefPubMed
49.
go back to reference Swift EJ Jr. Fluoride release from two composite resins. Quintessence Int 1989; 20:895–897PubMed Swift EJ Jr. Fluoride release from two composite resins. Quintessence Int 1989; 20:895–897PubMed
50.
go back to reference Burke FJ, Watts DC. Fracture resistance of teeth restored with dentin-bonded crowns. Quintessence Int 1994; 25:335–340PubMed Burke FJ, Watts DC. Fracture resistance of teeth restored with dentin-bonded crowns. Quintessence Int 1994; 25:335–340PubMed
51.
go back to reference Dietschi D, Maeder M, Meyer JM, Holz J. In vitro resistance to fracture of porcelain inlays bonded to tooth. Quintessence Int 1990; 21:823–831PubMed Dietschi D, Maeder M, Meyer JM, Holz J. In vitro resistance to fracture of porcelain inlays bonded to tooth. Quintessence Int 1990; 21:823–831PubMed
52.
go back to reference Mitchell CA, Douglas WH, Cheng YS. Fracture toughness of conventional, resin-modified glass-ionomer and composite luting cements. Dent Mater 1999; 15:7–13CrossRefPubMed Mitchell CA, Douglas WH, Cheng YS. Fracture toughness of conventional, resin-modified glass-ionomer and composite luting cements. Dent Mater 1999; 15:7–13CrossRefPubMed
53.
go back to reference Abdalla AI, Davidson CL. Marginal integrity after fatigue loading of ceramic inlay restorations luted with three different cements. Am J Dent 2000; 13:77–80PubMed Abdalla AI, Davidson CL. Marginal integrity after fatigue loading of ceramic inlay restorations luted with three different cements. Am J Dent 2000; 13:77–80PubMed
54.
go back to reference Aberg CH, van Dijken JW, Olofsson AL. Three-year comparison of fired ceramic inlays cemented with composite resin or glass ionomer cement. Acta Odontol Scand 1994; 52:140–149CrossRefPubMed Aberg CH, van Dijken JW, Olofsson AL. Three-year comparison of fired ceramic inlays cemented with composite resin or glass ionomer cement. Acta Odontol Scand 1994; 52:140–149CrossRefPubMed
55.
go back to reference van Dijken JW, Horstedt P. Marginal breakdown of fired ceramic inlays cemented with glass polyalkenoate (ionomer) cement or resin composite. J Dent 1994; 22:265–272CrossRefPubMed van Dijken JW, Horstedt P. Marginal breakdown of fired ceramic inlays cemented with glass polyalkenoate (ionomer) cement or resin composite. J Dent 1994; 22:265–272CrossRefPubMed
56.
go back to reference van Dijken JW, Hoglund-Aberg C, Olofsson AL. Fired ceramic inlays: a 6-year follow up. J Dent 1998; 26:219–225CrossRefPubMed van Dijken JW, Hoglund-Aberg C, Olofsson AL. Fired ceramic inlays: a 6-year follow up. J Dent 1998; 26:219–225CrossRefPubMed
57.
go back to reference Sindel J, Frankenberger R, Kramer N, Petschelt A. Crack formation of all-ceramic crowns dependent on different core build-up and luting materials. J Dent 1999; 27:175–181CrossRefPubMed Sindel J, Frankenberger R, Kramer N, Petschelt A. Crack formation of all-ceramic crowns dependent on different core build-up and luting materials. J Dent 1999; 27:175–181CrossRefPubMed
58.
go back to reference Venhoven BA, de Gee AJ, Davidson CL. Polymerization contraction and conversion of lightcuring BisGMA-based methacrylate resins. Biomaterials 1993; 14:871–875CrossRefPubMed Venhoven BA, de Gee AJ, Davidson CL. Polymerization contraction and conversion of lightcuring BisGMA-based methacrylate resins. Biomaterials 1993; 14:871–875CrossRefPubMed
59.
go back to reference Davidson CL, de Gee AJ. Relaxation of polymerization contraction stresses by flow in dental composites. J Dent Res 1984; 63:146–148CrossRefPubMed Davidson CL, de Gee AJ. Relaxation of polymerization contraction stresses by flow in dental composites. J Dent Res 1984; 63:146–148CrossRefPubMed
60.
go back to reference Hofmann N, Papsthart G, Hugo B, Klaiber B. Comparison of photo-activation versus chemical or dual-curing of resin-based luting cements regarding flexural strength, modulus and surface hardness. J Oral Rehabil 2001; 28:1022–1028CrossRefPubMed Hofmann N, Papsthart G, Hugo B, Klaiber B. Comparison of photo-activation versus chemical or dual-curing of resin-based luting cements regarding flexural strength, modulus and surface hardness. J Oral Rehabil 2001; 28:1022–1028CrossRefPubMed
61.
go back to reference Linden JJ, Swift EJ Jr, Boyer DB, Davis BK. Photo-activation of resin cements through porcelain veneers. J Dent Res 1991; 70:154–157CrossRefPubMed Linden JJ, Swift EJ Jr, Boyer DB, Davis BK. Photo-activation of resin cements through porcelain veneers. J Dent Res 1991; 70:154–157CrossRefPubMed
62.
go back to reference Foxton RM, Pereira PN, Nakajima M, Tagami J, Miura H. Durability of the dual-cure resin cement/ceramic bond with different curing strategies. J Adhes Dent 2002; 4:49–59PubMed Foxton RM, Pereira PN, Nakajima M, Tagami J, Miura H. Durability of the dual-cure resin cement/ceramic bond with different curing strategies. J Adhes Dent 2002; 4:49–59PubMed
63.
go back to reference Phrukkanon S, Burrow MF, Tyas MJ. Effect of cross-sectional surface area on bond strengths between resin and dentin. Dent Mater 1998; 14:120–128CrossRefPubMed Phrukkanon S, Burrow MF, Tyas MJ. Effect of cross-sectional surface area on bond strengths between resin and dentin. Dent Mater 1998; 14:120–128CrossRefPubMed
64.
go back to reference Cardoso PE, Braga RR, Carrilho MR. Evaluation of micro-tensile, shear and tensile tests determining the bond strength of three adhesive systems. Dent Mater 1998; 14:394–398CrossRefPubMed Cardoso PE, Braga RR, Carrilho MR. Evaluation of micro-tensile, shear and tensile tests determining the bond strength of three adhesive systems. Dent Mater 1998; 14:394–398CrossRefPubMed
65.
go back to reference Van Noort R, Noroozi S, Howard IC, Cardew G. A critique of bond strength measurements. J Dent 1989; 17:61–67CrossRefPubMed Van Noort R, Noroozi S, Howard IC, Cardew G. A critique of bond strength measurements. J Dent 1989; 17:61–67CrossRefPubMed
66.
go back to reference Øilo G, Austrheim EK. In vitro quality testing of dentin adhesives. Acta Odontol Scand 1993; 51:263–269CrossRefPubMed Øilo G, Austrheim EK. In vitro quality testing of dentin adhesives. Acta Odontol Scand 1993; 51:263–269CrossRefPubMed
67.
go back to reference Holtan JR, Nystrom GP, Olin PS, Phelps RA 2nd, Phillips JJ, Douglas WH. Bond strength of six dentinal adhesives. J Dent 1994; 22:92–96CrossRefPubMed Holtan JR, Nystrom GP, Olin PS, Phelps RA 2nd, Phillips JJ, Douglas WH. Bond strength of six dentinal adhesives. J Dent 1994; 22:92–96CrossRefPubMed
68.
go back to reference Versluis A, Tantbirojn D, Douglas WH. Why do shear bond tests pull out dentin? J Dent Res 1997; 76:1298–1307CrossRefPubMed Versluis A, Tantbirojn D, Douglas WH. Why do shear bond tests pull out dentin? J Dent Res 1997; 76:1298–1307CrossRefPubMed
69.
go back to reference Sano H, Shono T, Sonoda H, Takatsu T, Ciucchi B, Carvalho R, Pashley DH. Relationship between surface area for adhesion and tensile bond strength: evaluation of a micro-tensile bond test. Dent Mater 1994; 10:236–240CrossRefPubMed Sano H, Shono T, Sonoda H, Takatsu T, Ciucchi B, Carvalho R, Pashley DH. Relationship between surface area for adhesion and tensile bond strength: evaluation of a micro-tensile bond test. Dent Mater 1994; 10:236–240CrossRefPubMed
70.
go back to reference Pashley DH, Carvalho RM, Sano H, Nakajima M, Yoshiyama M, Shono Y, Fernandes CA, Tay F. The microtensile bond test: a review. J Adhes Dent 1999; 1:299–309PubMed Pashley DH, Carvalho RM, Sano H, Nakajima M, Yoshiyama M, Shono Y, Fernandes CA, Tay F. The microtensile bond test: a review. J Adhes Dent 1999; 1:299–309PubMed
71.
go back to reference DeHoff PH, Anusavice KJ, Wang Z. Three-dimensional finite element analysis of the shear bond test. Dent Mater 1995; 11:126–131CrossRefPubMed DeHoff PH, Anusavice KJ, Wang Z. Three-dimensional finite element analysis of the shear bond test. Dent Mater 1995; 11:126–131CrossRefPubMed
Metagegevens
Titel
Bonding in Prosthodontics with Cements
Auteurs
A. El Zohairy
A.J. Feilzer
Copyright
2005
Uitgeverij
Springer Berlin Heidelberg
DOI
https://doi.org/10.1007/3-540-28559-8_7