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首页> 外文期刊>Journal of esthetic and restorative dentistry: official publication of the American Academy of Esthetic Dentistry ... [et al.] >Effect of screw access hole design on the fracture resistance of implant-supported zirconia-based restorations
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Effect of screw access hole design on the fracture resistance of implant-supported zirconia-based restorations

机译:螺杆进入孔设计对植入物支持的氧化锆基修复件的裂缝抗性的影响

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Objective To evaluate the effect of screw access hole design on the fracture resistance of cement-retained implant-supported zirconia-based restorations with screw access holes. Materials and Methods Thirty cement-retained implant-supported zirconia-based molar crown specimens were fabricated. The specimens were divided into 3 groups of 10: without access holes (C), with screw access holes (S), and with screw access holes accompanied with a surrounding zirconia wall (W). The veneering ceramic thickness was 0.8 mm in all groups. Implants were vertically mounted in a metal block. Abutments were screwed on the implants and the specimens were cemented to the abutments. A universal testing machine applied compressive forces to the specimens until fracture. Fracture resistance values of the specimens were measured. One-way analysis of variance (ANOVA) and Tukey HSD tests were used to analyze data (P .05). Results The mean fracture resistance values were 5794.85 N for C, 2691.48 N for S, and 3878.06 N for W. The screw access hole design significantly affected the fracture resistance (P .0001). Significant differences were found between C and S (P .001), C and W (P .001), and S and W (P = .026). Conclusions The screw access hole decreased the fracture resistance. A surrounding zirconia wall for the screw access hole increased the fracture resistance. Clinical Significance Screw access hole design may affect the fracture resistance of cement-retained implant-supported zirconia-based restorations with screw access holes. This study introduced a screw access hole design to improve the fracture resistance of these restorations.
机译:目的评价螺杆进入孔设计对水泥保留植入物支撑的基于螺旋通入孔的基于植入物的裂缝性的影响。制造了材料和方法30个水泥保留的植入物支持的氧化锆基摩尔冠样品。将样品分成3组10:没有进入孔(C),用螺钉进入孔,并且伴有围绕氧化锆壁(W)的螺钉通道孔。嵌合陶瓷厚度在所有组中为0.8mm。植入物垂直安装在金属块中。基台拧在植入物上,并将样品粘在邻接中。通用试验机将压缩力施加到标本直至骨折。测量样品的断裂抗性值。方差(ANOVA)和Tukey HSD测试的单向分析分析数据(P <.05)。结果C,2691.48 n的平均裂缝抗性值为5794.85 n,W的3878.06 n。螺杆进入孔设计显着影响了裂缝阻力(P <.0001)。在C和S(P&LT;),C和W(P& .001)之间发现显着差异(p <.001),以及S和W(p = .026)。结论螺杆进入孔降低了裂缝抗性。一个用于螺杆进入孔的围绕氧化锆壁增加了裂缝抗性。临床意义螺杆进入孔设计可能影响水泥保留的植入物支持的基于氧化锆的修复件的骨折性抗螺杆进入孔。本研究介绍了一种螺杆进入孔设计,以提高这些修复体的断裂抗性。

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