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      KCI등재 SCIE SCOPUS

      Porcelain repair - Influence of different systems and surface treatments on resin bond strength

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      https://www.riss.kr/link?id=A103921449

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      다국어 초록 (Multilingual Abstract)

      PURPOSE. The purpose of this study was to evaluate the bond strength of composite resin on the fracture surface of metal-ceramic depending on the repair systems and surface roughening methods. MATERIALS AND METHODS. A total of 30 disk specimens were f...

      PURPOSE. The purpose of this study was to evaluate the bond strength of composite resin on the fracture surface of metal-ceramic depending on the repair systems and surface roughening methods. MATERIALS AND METHODS. A total of 30 disk specimens were fabricated, 15 of each were made from feldspathic porcelain and nickel-chromium base metal alloy. Each substrate was divided into three groups according to the repair method: a) application of repair system I (Intraoral Repair Kit) with diamond bur roughening (Group DP and DM), b) application of repair system I with airborne-particle abrasion (Group SP and SM), and c) application of repair system II (CoJet Intraoral Repair System, Group CP and CM). All specimens were thermocycled, and the shear bond strength was measured. The data were analyzed using the Kruskal-Wallis analysis and the Mann-Whitney test with a significance level of 0.05. RESULTS. For the porcelain specimens, group SP showed the highest shear bond strength (25.85 ± 3.51 MPa) and group DP and CP were not significantly different. In metal specimens, group CM showed superior values of bond strength (13.81 ± 3.45 MPa) compared to groups DM or SM. CONCLUSION. Airborne-particle abrasion and application of repair system I can be recommended in the case of a fracture localized to the porcelain. If the fracture extends to metal surface, the repair system II is worthy of consideration.

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      참고문헌 (Reference)

      1 Robin C, "Weibull parameters of composite resin bond strengths to porcelain and noble alloy using the Rocatec system" 18 : 389-395, 2002

      2 Gale MS, "Thermal cycling procedures for laboratory testing of dental restorations" 27 : 89-99, 1999

      3 Panah FG, "The influence of ceramic surface treatments on the micro-shear bond strength of composite resin to IPS Empress 2" 17 : 409-414, 2008

      4 Stangel I, "Shear strength of the composite bond to etched porcelain" 66 : 1460-1465, 1987

      5 Haselton DR, "Shear bond strengths of 2 intraoral porcelain repair systems to porcelain or metal substrates" 86 : 526-531, 2001

      6 Haneda IG, "Shear bond strength of metal-ceramic repair systems" 57 : 644-651, 2009

      7 dos Santos JG, "Shear bond strength of metal-ceramic repair systems" 96 : 165-173, 2006

      8 Tulunoglu IF, "Resin shear bond strength to porcelain and a base metal alloy using two polymerization schemes" 83 : 181-186, 2000

      9 Barzilay I, "Mechanical and chemical retention of laboratory cured composite to metal surfaces" 59 : 131-137, 1988

      10 Libby G, "Longevity of fixed partial dentures" 78 : 127-131, 1997

      1 Robin C, "Weibull parameters of composite resin bond strengths to porcelain and noble alloy using the Rocatec system" 18 : 389-395, 2002

      2 Gale MS, "Thermal cycling procedures for laboratory testing of dental restorations" 27 : 89-99, 1999

      3 Panah FG, "The influence of ceramic surface treatments on the micro-shear bond strength of composite resin to IPS Empress 2" 17 : 409-414, 2008

      4 Stangel I, "Shear strength of the composite bond to etched porcelain" 66 : 1460-1465, 1987

      5 Haselton DR, "Shear bond strengths of 2 intraoral porcelain repair systems to porcelain or metal substrates" 86 : 526-531, 2001

      6 Haneda IG, "Shear bond strength of metal-ceramic repair systems" 57 : 644-651, 2009

      7 dos Santos JG, "Shear bond strength of metal-ceramic repair systems" 96 : 165-173, 2006

      8 Tulunoglu IF, "Resin shear bond strength to porcelain and a base metal alloy using two polymerization schemes" 83 : 181-186, 2000

      9 Barzilay I, "Mechanical and chemical retention of laboratory cured composite to metal surfaces" 59 : 131-137, 1988

      10 Libby G, "Longevity of fixed partial dentures" 78 : 127-131, 1997

      11 Coornaert J, "Long-term clinical study of porcelain-fused-to-gold restorations" 51 : 338-342, 1984

      12 Leibrock A, "In vitro study of the effect of thermo- and load-cycling on the bond strength of porcelain repair systems" 26 : 130-137, 1999

      13 Ozcan M, "Fracture reasons in ceramic-fused-to-metal restorations" 30 : 265-269, 2003

      14 Gordon SR, "Fixed prosthodontics in the elderly population. Life expectancy of fixed restorations, failures, and retreatment methods" 36 : 783-795, 1992

      15 Yanagida H, "Evaluation of two dual-functional primers and a tribochemical surface modification system applied to the bonding of an indirect composite resin to metals" 97 : 103-108, 2009

      16 Roulet JF, "Effects of treatment and storage conditions on ceramic/composite bond strength" 74 : 381-387, 1995

      17 Suliman AH, "Effects of surface treatment and bonding agents on bond strength of composite resin to porcelain" 70 : 118-120, 1993

      18 Shahverdi S, "Effects of different surface treatment methods on the bond strength of composite resin to porcelain" 25 : 699-705, 1998

      19 Ozcan M, "Effect of surface conditioning methods on the bond strength of luting cement to ceramics" 19 : 725-731, 2003

      20 Lacy AM, "Effect of porcelain surface treatment on the bond to composite" 60 : 288-291, 1988

      21 Borges GA, "Effect of etching and airborne particle abrasion on the microstructure of different dental ceramics" 89 : 479-488, 2003

      22 Chen JH, "Effect of etchant, etching period, and silane priming on bond strength to porcelain of composite resin" 23 : 250-257, 1998

      23 Yoshida K, "Effect of adhesive metal primers on bonding a prosthetic composite resin to metals" 69 : 357-362, 1993

      24 Kalra A, "Comparison of shear bond strength of two porcelain repair systems after different surface treatment" 6 : 196-200, 2015

      25 Ozcan M, "Clinical study on the reasons for and location of failures of metal-ceramic restorations and survival of repairs" 15 : 299-302, 2002

      26 Strub JR, "Causes of failure following oral rehabilitation: biological versus technical factors" 19 : 215-222, 1988

      27 Matinlinna JP, "Bonding of resin composites to etchable ceramic surfaces - an insight review of the chemical aspects on surface conditioning" 34 : 622-630, 2007

      28 Zalkind M, "Bond strength of photocured composite resin facings: clinical versus laboratory procedures" 25 : 694-698, 1998

      29 Wolf DM, "Bond strength of composite to porcelain treated with new porcelain repair agents" 8 : 158-161, 1992

      30 Ozcan M, "Bond strength durability of a resin composite on a reinforced ceramic using various repair systems" 25 : 1477-1483, 2009

      31 Diaz-Arnold AM, "An evaluation of the bond strengths of four organosilane materials in response to thermal stress" 62 : 257-260, 1989

      32 Walton JN, "A survey of crown and fixed partial denture failures: length of service and reasons for replacement" 56 : 416-421, 1986

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      학술지 이력

      학술지 이력
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.91 0.23 0.75
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.67 0.59 0.57 0.04
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