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首页> 外文期刊>The International journal of oral & maxillofacial implants >In vitro study of the influence of the type of connection on the fracture load of zirconia abutments with internal and external implant-abutment connections.
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In vitro study of the influence of the type of connection on the fracture load of zirconia abutments with internal and external implant-abutment connections.

机译:体外连接类型对带有内部和外部种植体-基台连接的氧化锆基台断裂载荷的影响的体外研究。

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PURPOSE: To determine whether zirconia abutments with an internal connection exhibit similar fracture load as zirconia abutments with an external connection. MATERIALS AND METHODS: The following zirconia abutments were divided into four groups of 20 each: StraumannCARES abutments on Straumann implants (group A), Procera abutments on Branemark implants (group B), Procera abutments on NobelReplace implants (group C), and Zirabut SynOcta prototype abutments on Straumann implants (group D). The abutments were fixed on their respective implants either internally via a secondary abutment (A) or a metallic coupling (C) (two-piece) or directly externally (B) and internally (D) (one-piece). In each group, 10 abutments were left unrestored (A1 to D1). Ten received glass-ceramic crowns (A2 to D2). Static loading was performed according to the ISO norm 14801 until failure. The bending moment was calculated for comparison of the groups and subjected to statistical analysis (Student t test). RESULTS: The mean bending moments of the unrestored abutments were 371.5 +/- 142.3 Ncm (A1), 276.5 +/- 47.6 Ncm (B1), 434.9 +/- 124.8 Ncm (C1), and 182.5 +/- 136.5 Ncm (D1). Two-piece internally connected abutments exhibited higher bending moments than one-piece internally (C1 versus D1 P = .003, A1 versus D1 P = .03) or externally (C1 versus B1 P = .004) connected abutments. The groups with restorations did not show different bending moments than those without restorations. The mean bending moments of the restored abutments were 283.3 +/- 44.8 Ncm (A2), 291.5 +/- 31.7 Ncm (B2), 351.5 +/- 58 Ncm (C2), and 184.3 +/- 77.7 Ncm (D2). Group C2 exhibited the highest bending moment (P < .05). Internally connected one-piece abutments (D2) were weaker than all other groups (D2 versus A2 P = .002; D2 versus B2 P = .001; D2 versus C2 P = .0003). CONCLUSIONS: The type of connection significantly influenced the strength of zirconia abutments. Superior strength was achieved by means of internal connection via a secondary metallic component.
机译:目的:确定内部连接的氧化锆基台是否表现出与外部连接的氧化锆基台类似的断裂载荷。材料和方法:以下氧化锆基台分为四组,每组20个:Straumann植入物上的StraumannCARES基台(A组),Branemark植入物上的Procera基台(B组),NobelReplace植入物上的Procera基台(C组)和Zirabut SynOcta Straumann植入物上的原型基台(D组)。基台通过辅助基台(A)在内部或金属连接器(C)(两件式)内部固定,或者在外部(B)和内部(D)(单件)直接固定在各自的种植体上。在每组中,保留10个基台(A1至D1)。十个收到的玻璃陶瓷冠(A2至D2)。根据ISO规范14801进行静态加载直到失败。计算弯矩以比较各组,并进行统计分析(Student t检验)。结果:未恢复基台的平均弯矩为371.5 +/- 142.3 Ncm(A1),276.5 +/- 47.6 Ncm(B1),434.9 +/- 124.8 Ncm(C1)和182.5 +/- 136.5 Ncm(D1 )。两件式内部连接的基台的弯曲力矩要比单件内部(C1对D1 P = .003,A1对D1 P = .03)或外部(C1对B1 P = .004)的整体更高。进行修复的组与未进行修复的组相比,没有显示出不同的弯矩。修复后的基台的平均弯矩为283.3 +/- 44.8 Ncm(A2),291.5 +/- 31.7 Ncm(B2),351.5 +/- 58 Ncm(C2)和184.3 +/- 77.7 Ncm(D2)。 C2组表现出最高的弯矩(P <.05)。内部连接的一体式基台(D2)弱于所有其他组(D2与A2 P = .002; D2与B2 P = .001; D2与C2 P = .0003)。结论:连接类型显着影响了氧化锆基台的强度。通过经由辅助金属部件的内部连接获得了卓越的强度。

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