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首页> 外文期刊>The Open Dentistry Journal >Impact of Dynamic Loading on the Implant-abutment Interface Using a Gas-enhanced Permeation Test In Vitro
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Impact of Dynamic Loading on the Implant-abutment Interface Using a Gas-enhanced Permeation Test In Vitro

机译:动态载荷对体外气体增强渗透测试对种植体-基台界面的影响

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Purpose : To assess implant leakage under static conditions as well as during and after dynamic loading. Materials and methods : Implants (Astra Tech (A), Biomet 3i (B) and Nobel Biocare (C)) were evaluated for leakage (n=8/group). Testing to assess the gas pressure change over time (hPa/min) and infiltrated fluid volume, was performed in a Gas Enhanced Permeation Test (GEPT) to qualify embedding. Implant apexes were then drilled, abutments were mounted and resin build-ups were fabricated. GEPT was reassessed. Samples were afterward mounted in a computer-controlled masticator while tested to bacterial leakage, they were daily observed for turbidity. Samples were then reassessed using GEPT. Dunnett's and Fisher's exact tests were utilized to compare implant and to analyze bacterial leakage. Results : Significant differences in GEPT values were shown after loading (p=0.034). Leakage resistance was best for B when compared to C (p=0.023). Samples with higher GEPT values demonstrated earlier bacterial leakage, occurring after 1 or 2 days (A=4, B=0, C=6) and showing favorability for implant system B (p=0.009). Conclusion : Implants leaking under static conditions had increased potential for bacterial leakage under dynamic conditions. As strongly correlating to sophisticated analytical methods, GEPT is a promising technique for assessing the overall implant system leakage resistance.
机译:目的:评估在静态条件下以及动态加载期间和之后的植入物泄漏。材料和方法:对植入物(Astra Tech(A),Biomet 3i(B)和​​Nobel Biocare(C))进行渗漏评估(n = 8 /组)。在气体增强渗透测试(GEPT)中进行了评估气体压力随时间变化(hPa / min)和渗透流体量的测试,以确认嵌入效果。然后钻出种植体的顶点,安装基台并制造树脂堆积物。 GEPT已重新评估。然后将样品安装在计算机控制的咀嚼器中,同时进行细菌渗漏测试,每天观察其浊度。然后使用GEPT重新评估样品。利用Dunnett和Fisher的精确测试来比较植入物并分析细菌渗漏。结果:加载后显示GEPT值有显着差异(p = 0.034)。与C相比,B的抗渗漏性最佳(p = 0.023)。具有较高GEPT值的样品表现出更早的细菌渗漏,发生在1或2天后(A = 4,B = 0,C = 6),并且对植入物系统B有利(p = 0.009)。结论:在静态条件下渗漏的植入物具有增加在动态条件下渗漏细菌的可能性。 GEPT与复杂的分析方法密切相关,是一种用于评估整体种植体系统抗渗漏性的有前途的技术。

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