首页> 外文期刊>Clinical oral implants research >Bending moments of zirconia and titanium abutments with internal and external implant-abutment connections after aging and chewing simulation.
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Bending moments of zirconia and titanium abutments with internal and external implant-abutment connections after aging and chewing simulation.

机译:老化和咀嚼模拟后,氧化锆和钛支座的抗稀硅和钛支座的弯曲力矩。

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OBJECTIVES: To test the fracture load of zirconia abutments with different types of implant-abutment connections after chewing simulation and to compare their bending moments to internally connected identical titanium abutments. MATERIALS AND METHODS: Forty-eight identical customized zirconia abutments with different implant-abutment connections were fabricated for four different test groups: one-piece internal implant-abutment connection (BL; Straumann Bonelevel), two-piece internal implant-abutment connection (RS; Nobel Biocare Replace Select), external implant-abutment connection (B; Branemark MK III), two-piece internal implant-abutment connection (SP; Straumann Standard Plus). Twelve titanium abutments with one-piece internal implant-abutment connection (T; Straumann Bonelevel) served as control group. After aging by means of thermocycling (5-50 degrees C, 120 s) and chewing simulation (1,200,000 cycles, 49 N load, 1.67 Hz), static load was applied at a 30 degrees angle to the palatal surface until failure. Bending moments were calculated for comparison of the groups. Data were analyzed descriptively and by performing the Kruskal-Wallis test with Bonferroni correction. RESULTS: The mean bending moments of the abutments were 714.1 +/- 184.9 N cm (T), 331.7 +/- 57.8 N cm (BL), 429.7 +/- 62.8 N cm (RS), 285.8 +/- 64.4 N cm (B) and 379.9 +/- 59.1 N cm (SP). The bending moments of control group T were significantly higher than those of all other groups. The values of group RS were significantly higher than those of group B but within the value range of groups SP and BL. CONCLUSION: The bending moments of the different tested types of zirconia abutments vary with different implant-abutment connections after chewing simulation. The use of a secondary metallic component might have a beneficial influence on the stability of zirconia abutments.
机译:目的:在咀嚼模拟后用不同类型的植入连接连接测试氧化锆基台的断裂载荷,并将其弯矩与内部连接相同的钛基台进行比较。材料和方法:四种不同的植入基台的四十八相同定制的氧化锆基台为四个不同的测试组制造:一体式内部植入 - 基台连接(BL; Straumann Bonelevel),两件式内部注入连接连接(Rs ;诺贝尔Biocare替代选择),外部植入基台(B; Branemark MK III),两件式内部注入连接(SP; Straumann标准加)。具有一体式内部注入连接(T; Straumann Bonelevel)的十二个钛支座送为对照组。通过热循环(5-50℃,120秒)和咀嚼模拟(1,200,000个循环,49n负载,1.67Hz)而老化后,静态载荷以30度到30度到腭表面直至发生故障。计算弯矩以进行组的比较。描述地描述了数据,并通过使用Bonferroni校正进行Kruskal-Wallis测试。结果:基台的平均弯矩是714.1 +/- 184.9 n cm(t),331.7 +/- 57.8 n厘米(bl),429.7 +/- 62.8 n厘米(RS),285.8 +/- 64.4 n cm (b)和379.9 +/- 59.1 n cm(sp)。对照组T的弯曲力矩明显高于所有其他组的终点。组RS的值显着高于B组,但在SP和B1组的值范围内。结论:在咀嚼模拟后,不同测试类型的氧化锆基台的抗弯矩随着不同的植入式连接而变化。二级金属组分的使用可能对氧化锆基台的稳定性有益的影响。

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