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      Marginal fit of anterior 3-unit fixed partial zirconia restorations using different CAD/CAM systems

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      https://www.riss.kr/link?id=A103920184

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      다국어 초록 (Multilingual Abstract)

      PURPOSE. Few studies have investigated the marginal accuracy of 3-unit zirconia fixed partial dentures (FPDs) fabricated by computer-aided design/computer-aided manufacturing (CAD/CAM) system. The purpose of this study was to compare the marginal fit of zirconia FPDs made using two CAD/CAM systems with that of metalceramic FPDs. MATERIALS AND METHODS. Artificial resin maxillary central and lateral incisors were prepared for 3-unit FPDs and fixed in yellow stone. This model was duplicated to epoxy resin die. On the resin die, 15 three-unit FPDs were fabricated per group (45 in total): Group A, zirconia 3-unit FPDs made with the Everest system; Group B, zirconia 3-unit FPDs made with the Lava system; and Group C, metal-ceramic 3-unit FPDs. They were cemented to resin dies with resin cement. After removal of pontic, each retainer was separated and observed under a microscope (Presize 440C). Marginal gaps of experimental groups were analyzed using oneway ANOVA and Duncan test. RESULTS. Mean marginal gaps of 3-unit FPDs were 60.46 μm for the Everest group, 78.71 μm for the Lava group, and 81.32 μm for the metal-ceramic group. The Everest group demonstrated significantly smaller marginal gap than the Lava and the metal-ceramic groups (P<.05). The marginal gap did not significantly differ between the Lava and the metal-ceramic groups (P>.05). CONCLUSION. The marginal gaps of anterior 3-unit zirconia FPD differed according to CAD/CAM systems, but still fell within clinically acceptable ranges compared with conventional metal-ceramic restoration.
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      PURPOSE. Few studies have investigated the marginal accuracy of 3-unit zirconia fixed partial dentures (FPDs) fabricated by computer-aided design/computer-aided manufacturing (CAD/CAM) system. The purpose of this study was to compare the marginal fit ...

      PURPOSE. Few studies have investigated the marginal accuracy of 3-unit zirconia fixed partial dentures (FPDs) fabricated by computer-aided design/computer-aided manufacturing (CAD/CAM) system. The purpose of this study was to compare the marginal fit of zirconia FPDs made using two CAD/CAM systems with that of metalceramic FPDs. MATERIALS AND METHODS. Artificial resin maxillary central and lateral incisors were prepared for 3-unit FPDs and fixed in yellow stone. This model was duplicated to epoxy resin die. On the resin die, 15 three-unit FPDs were fabricated per group (45 in total): Group A, zirconia 3-unit FPDs made with the Everest system; Group B, zirconia 3-unit FPDs made with the Lava system; and Group C, metal-ceramic 3-unit FPDs. They were cemented to resin dies with resin cement. After removal of pontic, each retainer was separated and observed under a microscope (Presize 440C). Marginal gaps of experimental groups were analyzed using oneway ANOVA and Duncan test. RESULTS. Mean marginal gaps of 3-unit FPDs were 60.46 μm for the Everest group, 78.71 μm for the Lava group, and 81.32 μm for the metal-ceramic group. The Everest group demonstrated significantly smaller marginal gap than the Lava and the metal-ceramic groups (P<.05). The marginal gap did not significantly differ between the Lava and the metal-ceramic groups (P>.05). CONCLUSION. The marginal gaps of anterior 3-unit zirconia FPD differed according to CAD/CAM systems, but still fell within clinically acceptable ranges compared with conventional metal-ceramic restoration.

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      참고문헌 (Reference)

      1 McLean JW, "The estimation of cement film thickness by an in vivo technique" 131 : 107-111, 1971

      2 Tuntiprawon M, "The effect of cement thickness on the fracture strength of all-ceramic crowns" 40 : 17-21, 1995

      3 Sailer I, "Prospective clinical study of zirconia posterior fixed partial dentures: 3-year follow-up" 37 : 685-693, 2006

      4 Beuer F, "Precision of fit: zirconia three-unit fixed dental prostheses" 13 : 343-349, 2009

      5 May KB, "Precision of fit: the Procera AllCeram crown" 80 : 394-404, 1998

      6 Coli P, "Precision of a CAD/CAM technique for the production of zirconium dioxide copings" 17 : 577-580, 2004

      7 Rosentritt M, "Marginal integrity of CAD/CAM fixed partial dentures" 1 : 25-30, 2007

      8 Leong D, "Marginal fit of machine-milled titanium and cast titanium single crowns" 7 : 440-447, 1994

      9 Tinschert J, "Marginal fit of alumina-and zirconia-based fixed partial dentures produced by a CAD/CAM system" 26 : 367-374, 2001

      10 Bindl A, "Marginal and internal fit of all-ceramic CAD/CAM crown-copings on chamfer preparations" 32 : 441-447, 2005

      1 McLean JW, "The estimation of cement film thickness by an in vivo technique" 131 : 107-111, 1971

      2 Tuntiprawon M, "The effect of cement thickness on the fracture strength of all-ceramic crowns" 40 : 17-21, 1995

      3 Sailer I, "Prospective clinical study of zirconia posterior fixed partial dentures: 3-year follow-up" 37 : 685-693, 2006

      4 Beuer F, "Precision of fit: zirconia three-unit fixed dental prostheses" 13 : 343-349, 2009

      5 May KB, "Precision of fit: the Procera AllCeram crown" 80 : 394-404, 1998

      6 Coli P, "Precision of a CAD/CAM technique for the production of zirconium dioxide copings" 17 : 577-580, 2004

      7 Rosentritt M, "Marginal integrity of CAD/CAM fixed partial dentures" 1 : 25-30, 2007

      8 Leong D, "Marginal fit of machine-milled titanium and cast titanium single crowns" 7 : 440-447, 1994

      9 Tinschert J, "Marginal fit of alumina-and zirconia-based fixed partial dentures produced by a CAD/CAM system" 26 : 367-374, 2001

      10 Bindl A, "Marginal and internal fit of all-ceramic CAD/CAM crown-copings on chamfer preparations" 32 : 441-447, 2005

      11 Stappert CF, "Marginal adaptation of three-unit fixed partial dentures constructed from pressed ceramic systems" 196 : 766-770, 2004

      12 Att W, "Marginal adaptation of three different zirconium dioxide three-unit fixed dental prostheses" 101 : 239-247, 2009

      13 Witkowski S, "Marginal accuracy of titanium copings fabricated by casting and CAD/CAM techniques" 96 : 47-52, 2006

      14 Kohorst P, "Marginal accuracy of four-unit zirconia fixed dental prostheses fabricated using different computer-aided design/computer-aided manufacturing systems" 117 : 319-325, 2009

      15 Kohorst P, "Influence of the veneering process on the marginal fit of zirconia fixed dental prostheses" 37 : 283-291, 2010

      16 Beuer F, "Influence of preparation angle on marginal and internal fit of CAD/CAM-fabricated zirconia crown copings" 40 : 243-250, 2009

      17 Yeo IS, "In vitro marginal fit of three all-ceramic crown systems" 90 : 459-464, 2003

      18 Sorensen SE, "Gingival and alveolar bone reaction to marginal fit of subgingival crown margins" 94 : 109-114, 1986

      19 Okutan M, "Fracture load and marginal fit of shrinkage-free ZrSiO4 all-ceramic crowns after chewing simulation" 33 : 827-832, 2006

      20 Sailer I, "Five-year clinical results of zirconia frameworks for posterior fixed partial dentures" 20 : 383-388, 2007

      21 Abduo J, "Fit of zirconia fixed partial denture: a systematic review" 37 : 866-876, 2010

      22 Belser UC, "Fit of three porcelain-fused-to-metal marginal designs in vivo: a scanning electron microscope study" 53 : 24-29, 1985

      23 Bindl A, "Fit of all-ceramic posterior fixed partial denture frameworks in vitro" 27 : 567-575, 2007

      24 Belles DM, "Effect of metal design and technique on the marginal characteristics of the collarless metal ceramic restoration" 65 : 611-619, 1991

      25 Beuer F, "Digital dentistry: an overview of recent developments for CAD/CAM generated restorations" 204 : 505-511, 2008

      26 Abbate MF, "Comparison of the marginal fit of various ceramic crown systems" 61 : 527-531, 1989

      27 Gonzalo E, "Comparative analysis of two measurement methods for marginal fit in metal-ceramic and zirconia posterior FPDs" 22 : 374-377, 2009

      28 Sailer I, "Clinical study of the internal gaps of zirconia and metal frameworks for fixed partial dentures" 116 : 272-279, 2008

      29 Reich S, "Clinical fit of all-ceramic three-unit fixed partial dentures, generated with three different CAD/CAM systems" 113 : 174-179, 2005

      30 Vigolo P, "An in vitro evaluation of fit of zirconiumoxide-based ceramic four-unit fixed partial dentures, generated with three different CAD/CAM systems, before and after porcelain firing cycles and after glaze cycles" 17 : 621-626, 2008

      31 윤종욱, "A study on the marginal fit of collarless metal ceramic fixed partial dentures" 대한치과보철학회 43 (43): 707-716, 2005

      32 Sorensen JA, "A rationale for comparison of plaque-retaining properties of crown systems" 62 : 264-269, 1989

      33 Gonzalo E, "A comparison of the marginal vertical discrepancies of zirconium and metal ceramic posterior fixed dental prostheses before and after cementation" 102 : 378-384, 2009

      34 Sulaiman F, "A comparison of the marginal fit of In-Ceram, IPS Empress, and Procera crowns" 10 : 478-484, 1997

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2010-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2009-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2009-01-01 평가 학술지 분리 (기타) KCI등재후보
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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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