References
- Nakabayashi N, Kojima K, Masuhara E. The promotion of adhesion by the infiltration of monomers into tooth substrates. J Biomed Mater Res 16:265-273, 1982 https://doi.org/10.1002/jbm.820160307
- Tantbirojn D, Cheng YS, Versluis A, Hodges JS, Douglas WH. Nominal shear or fracture mechanics in the assessment of composite-dentin adhesion? J Dent Res 79:41-48,2000 https://doi.org/10.1177/00220345000790010601
- Dunn WJ, Soderholm KM. Comparison of shear and flexural bond strength tests versus failure modes of dentin bonding systems. Am J Dent 14:297-303,2001
- Wakefield CW, Draughn RA, Sneed WD, Davis TN, Shear bond strengths of six bonding systems using the pushout method of in vitro testing, Oper Dent 23:6976, 1998
- Wilder AD Jr., Swift EJ Jr., May KN Jr., Waddell SL. Bond strengths of conventional and simplified bonding systems. Am J Dent 11:114-117,1998
- Inoue S, Vargas MA, Abe Y, Yoshida Y, Lambrechts P, Vanherle G, Sana H, Van Meerbeek B. Microtensile bond strength of eleven contemporary adhesives to dentin. J Adhesive Dent 3:237-245, 2001
- Frankenberger R. Perdigao J, Rosa BT, Lopes M. 'No-bottle' vs 'multi-bottle' dentin adhesives - a microtensile bond strength and morphological study. Dent Mater 17:373-380, 2001 https://doi.org/10.1016/S0109-5641(00)00084-1
- Tay FR. Gwinnett JA, Wei SH. The overwet phenomenon in two-component acetone-based primers containing aryl amine and carboxylic acid monomers. Dent Mater 13:118-127,1997 https://doi.org/10.1016/S0109-5641(97)80021-8
- Pashley DH, Ciucchi B, Sano H, Horner JA. Permeability of dentin to adhesive agents. Quintessence Int 24:618631. 1993
- Miyazaki, S, Iwasaki, K. Onose H, and Moore BK. Enamel and dentin bond strengths of single application bonding systems. Am J Dent 14:361-366, 2001
- Inoue S, Vargas MA, Abe Y, Yoshida Y, Lambrechts P, Vanherle G, Sano H, Van Meerbeek B. Microtensile bond strength of eleven contemporary adhesives to enamel. Am J Dent 16:329-334, 2003
- Miyazaki M, Hirohata N, Takagaki K. Onose H, Moore BK. Influence of self-etching primer drying time on enamel bond strength of resin composites. J Dent 27:203-207,1999 https://doi.org/10.1016/S0300-5712(98)00044-X
- Sanares AM, Itthagarun A, King NM, Tay FR, Pashley DH. Adverse surface interactions between one-bottle light-cured adhesives and chemical-cured composites. Dent Mater 17: 542-556, 2001 https://doi.org/10.1016/S0109-5641(01)00016-1
- Suh BI, Feng L, Pashley DH, Tay FR. Factors contributing to the incompatibility between simplified-step adhesives and chemically cured or dual-cured composites. Part III. Effect of acidic resin monomers. J Adhes Dent 5:267-282, 2003
- Sano H, Yoshikawa T, Pereira PN, Kanemur N, Morigami M, Tagami J, Pashley DH. Long-term durability of dentin bonds made with a self-etching primer, in vivo. J Dent Res 78:906-911, 1999 https://doi.org/10.1177/00220345990780041101
- Hashimoto M, Ohno H, Kaga M, Endo K, Sano H, Oguchi H. In vivo degradation of resin-dentin bonds in humans over 1 to 3 years. J Dent Res 79:1385-1391, 2000 https://doi.org/10.1177/00220345000790060601
- Hashimoto M, Ohno H, Sano H, Kaga M, Oguchi H. Degradation patterns of different adhesives and bonding procedures. J Biomed Mater Res 66B:324-330, 2003 https://doi.org/10.1002/jbm.b.10010
- Asmussen E. Peutzfeldt A. Short- and Long-term bonding efficacy of a self-etching, one-step adhesive. J Adhes Dent 5:41-45,2003
- Tay FR, Pashley DH, Suh BI, Carvalho RM, Itthagarun A. Single-step adhesives are permeable membranes. J Dent 30:371-382, 2002 https://doi.org/10.1016/S0300-5712(02)00064-7
- Meiers JC, Young D. Two-year composite/dentin bond stability. Am J Dent 14:141-144,2001
- Chersoni S, Suppa P, Grandini S, Goracci C, Monticelli F, Yiu C, Huang C, Prati C, Breschi L, Ferrari M, Pashley DH, Tay FR. In vivo and in vitro permeability of one-step self-etch adhesives. J Dent Res 83:459-464,2004 https://doi.org/10.1177/154405910408300605
- Ferracane JL, Greener EH. Fourier transform infrared analysis of degree of polymerization in unfilled resins - methods comparison. J Dent Res 63:1093-1095,1984 https://doi.org/10.1177/00220345840630081901
- Imazato S, McCabe JF, Tarumi H. Ehara A. Ebisu S. Degree of conversion of composites measured by DTA and FTIR. Dent Mater 17: 178-183, 2001 https://doi.org/10.1016/S0109-5641(00)00066-X
- Yoshida K. greener EH. Effects of two amine reducing agents on the degree of conversion and physical properties of an unfilled light-cured resin. Dent Mater 9:246-251. 1993 https://doi.org/10.1016/0109-5641(93)90069-3
- Yoshiyama M, Carvalho R, Sano H, Horner J, Brewer PD, Pashley DH. Interfacial morphology and strength of bonds made to superficial versus deep dentin. Am J Dent 8:297-302, 1995
- Pioch T, Stotz S, Buff E, Duschner H. Staehle HJ Influence of different etching times on hybrid layer formation and tensile bond strength. Am J Dent 11: 202-206, 1998
- Perdigao J, May KN Jr, Wilder AD Jr, Lopes M. The effect of depth of dentin demineralization on bond strengths and morphology of the hybrid layer. Oper Dent 25:186-194,2000
- Cho BH. Dickens SH. Effects of the acetone content of single solution dentin bonding agents on the adhesive layer thickness and the microtensile bond strength. Dent Mater 20: 107-115, 2004 https://doi.org/10.1016/S0109-5641(03)00071-X
- Perdigao J, Lopes M, Geraldeli S, Lopes GC, Garcia-Godoy F. Effect of a sodium hypochlorite gel on dentin bonding. Dent Mater 16:311-323, 2000 https://doi.org/10.1016/S0109-5641(00)00021-X
- Sano H, Takatsu T, Ciucchi B, Horner JA, Matthews WG, Pashley DH. Nanoleakage: leakage within the hybrid layer. Oper Dent 20: 18-25, 1995
- Burrow MF, Takakura H. Nakajima M, Inai N, Tagarni J, Takatsu T. The influence of age and depth of dentin on bonding. Dent Mater 10:241-246, 1994 https://doi.org/10.1016/0109-5641(94)90068-X
- Van Meerbeek B, Willems G, Celis JP, Roos JR, Braem M, Lambrechts P, Vanherle G. Assessment by nanoindentation of the hardness and elasticity of the resindentin bonding area. J Dent Res 72:1434-1442, 1993 https://doi.org/10.1177/00220345930720101401
- Lin C, Douglas WH. Failure mechanisms at the hyman dentin-resin interface: a fracture mechanics approach. J Biomech 27:1037-1047, 1994 https://doi.org/10.1016/0021-9290(94)90220-8
- Sano H. Takatsu T, Ciucchi B, Russell CM, Pashley DH. Tensile properties of resin-infiltrated demineralized human dentin. J Dent Res 74:1093-1102, 1995 https://doi.org/10.1177/00220345950740041001
-
Armstrong SR. Keller JC, Boyer DB. Mode of failure in the dentin-adhesive resin-resin composite bonded joint as determined by strength-based (
$\mu$ TBS) and fracturebased (CNSB) mechanical testing. Dent Mater 17:201-210, 2001 https://doi.org/10.1016/S0109-5641(00)00070-1 - Kim JS, Choi YH, Cho BH, Son HH, Lee lB, Urn CM, Kim CK. The effect of light-cure time of adhesive resin on the thickness of the oxygen inhibited layer and the micro-tensile bond strength to dentine. J Biomed Mater Res Part B: Appl Biomater 78B (1): 115-123, 2006 https://doi.org/10.1002/jbm.b.30463
- Dickens SH. Cho BH. Interpretation of bond failure through conversion and residual solvent measurements and Weibull analyses of flexural and microtensile bond strengths of bonding agents. Dent Mater 21(4): 354-364, 2005 https://doi.org/10.1016/j.dental.2004.05.007
- Carvalho RM, Chersoni S, Frankenberger R, Pashley DH, Prati C, Tay FR. A challenge to the conventional wisdom that simultaneous etching and resin infiltration always occurs in self-etch adhesives. Biomaterials 26: 1035-1042, 2005 https://doi.org/10.1016/j.biomaterials.2004.04.003
- Tay FR, Pashley DH. Have dentin adhesives become too hydrophilic? Review. J Can Dent Assoc 69: 726-731, 2003
- Hashimoto M. Ohno H. Sano H, Tay FR. Kaga M, Kudou Y, Oguchi H, Araki Y. Kubota M. Micromorphological changes in resin-dentin bonds after 1 year of water storage. J Biomed Mater Res 63: 306-311. 2002 https://doi.org/10.1002/jbm.10208
- Gale MS, Darvell BW. Thermal cycling procedures for laboratory testing of dental restorations. J Dent 27:89-99. 1999 https://doi.org/10.1016/S0300-5712(98)00037-2
- Tay FR, Carvalho R, Sano H, Pashley DH. Effect of smear layers on the bonding of a self-etching primer to dentin. J Adhes Dent 2:99-116.2000
- 정문경, 조병훈, 손호현, 엄정문, 한영철, 정세준. Effect of additional coating of bonding resin on the microtensile bond strength of self-etching adhesives to dentin. 대한치과보존학회지 31: 103-112, 2006 https://doi.org/10.5395/JKACD.2006.31.2.103
- Uno S, Finger WJ. Function of the hybrid zone as a stress-absorbing layer in resin-dentin bonding. Quintessence Int 26:733-738, 1995
- Choi KK, Condon JR, Ferracane JL. The effects of adhesive thickness on polymerization contraction stress of composite. J Dent Res 79:812-817, 2000 https://doi.org/10.1177/00220345000790030501
- Lambrechts P, Vanherle G, Microtensile bond strengths of one- and two-step self-etch adhesives to bur-cut enamel and dentin. Am J Dent 16:414-420. 2003
Cited by
- The effect of various bonding systems on the microtensile bond strength of immediate and delayed dentin sealing vol.33, pp.6, 2008, https://doi.org/10.5395/JKACD.2008.33.6.526
- The effect of priming etched dentin with solvent on the microtensile bond strength of hydrophobic dentin adhesive vol.34, pp.1, 2009, https://doi.org/10.5395/JKACD.2009.34.1.042
- Effect of curing methods of resin cements on bond strength and adhesive interface of post vol.34, pp.2, 2009, https://doi.org/10.5395/JKACD.2009.34.2.103
- Difference in bond strength according to filling techniques and cavity walls in box-type occlusal composite resin restoration vol.34, pp.4, 2009, https://doi.org/10.5395/JKACD.2009.34.4.350
- Effect of Plasma Deposition Using Low-Power/Non-thermal Atmospheric Pressure Plasma on Promoting Adhesion of Composite Resin to Enamel vol.34, pp.4, 2014, https://doi.org/10.1007/s11090-014-9553-1