首页> 外文期刊>The Journal of Prosthetic Dentistry >Dynamic fatigue properties of the dental implant-abutment interface: joint opening in wide-diameter versus standard-diameter hex-type implants.
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Dynamic fatigue properties of the dental implant-abutment interface: joint opening in wide-diameter versus standard-diameter hex-type implants.

机译:牙种植体-基台界面的动态疲劳特性:大直径和标准直径的六角型种植体的关节开口。

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STATEMENT OF PROBLEM: The clinical long-term success of single-tooth implant restorations depends, in part, on a stable connection between the prosthetic restoration and the implant body. PURPOSE: The purpose of this experiment was to investigate the fatigue life of UCLA-style abutment screws in wide-diameter versus conventionally sized dental implant restorations. MATERIAL AND METHODS: Five 3.75 x 15-mm and five 6.0 x 15-mm hexed dental implants were used. Ten frameworks were fabricated, 5 with a single UCLA-style, 3.75-mm hexed gold alloy cylinder, and 5 with a single UCLA-style, 6.0-mm hexed gold alloy cylinder. To simulate a common laboratory procedure, 2 abutment interfaces were relieved with a one-quarter round bur for both diameters. The 3.75-mm implant used a Gold-Tite central abutment screw torqued to 32 Ncm, and the 6.0-mm implant used a titanium central abutment screw torqued to 25 Ncm. Frameworks were dynamically loaded ( approximately 10 Hz) with a 120 +/- 10-N, 4-mm off-axis force. Liquid metal strain gauges were used to measure joint opening. Measurements were made at intervals of 10(3), 10(4), 10(5), and 5x10(5) cycles. Gauge output data were converted to displacement with a conversion factor determined by calibration. Linear regression analysis then was performed. RESULTS: Two observations were made in this study. Two of three 3.75-mm nonadjusted specimens and all three 6.0-mm nonadjusted specimens maintained joint closure (range of opening 0-20 microm) while measured under dynamic loading. The median joint opening at 5x10(5) cycles for 3.75-mm nonadjusted specimens was 14 +/- 7 microm; for 6.0-mm specimens, it was 11 +/- 10 microm. Both 3.75-mm adjusted specimens and 1 nonadjusted specimen failed to maintain joint closure (excess joint opening >50 microm). One of the 3.75-mm adjusted specimens had abutment screw fracture. One of two 6.0-mm adjusted specimens failed to maintain joint closure because of screw fracture. CONCLUSION: The dental implant-abutment interface of 3.75-mm and 6.0-mm externally hexed implants experienced similar joint opening after periods of dynamic loading. Laboratory adjustment of the interface significantly decreased the service life of the abutment screw joint.
机译:问题陈述:单齿种植体修复的临床长期成功部分取决于假体修复体与种植体之间的稳定连接。目的:本实验的目的是研究与常规尺寸的牙种植体修复相比,UCLA型基台螺钉在大直径情况下的疲劳寿命。材料和方法:使用了五个3.75 x 15毫米和五个6.0 x 15毫米的六角形牙科植入物。制作了十个框架,其中五个使用单个UCLA型,3.75毫米六角形金合金圆柱体,另外五个使用单个UCLA型,6.0毫米六角形金合金圆柱体。为了模拟常见的实验室程序,两个直径的四分之一圆钻都松开了两个基台界面。 3.75毫米的植入物使用扭力为32 Ncm的Gold-Tite中央基台螺丝,而6.0毫米的植入物使用扭力为25 Ncm的钛中央中心基台螺丝。框架以120 +/- 10-N,4毫米的离轴力动态加载(大约10 Hz)。液态金属应变仪用于测量接头的开口。以10(3),10(4),10(5)和5x10(5)个周期的间隔进行测量。仪表输出数据通过校准确定的转换系数转换为位移。然后进行线性回归分析。结果:本研究有两个观察结果。在动态载荷下进行测量时,三个3.75毫米未调整样品中的两个和三个三个6.0毫米未调整样品均保持了接头闭合(开口范围为0-20微米)。对于3.75毫米未经调整的标本,在5x10(5)周期的中位关节开口为14 +/- 7微米;对于6.0毫米的样品,其值为11 +/- 10微米。调整后的3.75毫米标本和1个未调整的标本均无法维持关节闭合(关节开口大于50微米)。调整后的3.75毫米标本之一有基台螺丝断裂。由于螺钉断裂,两个调整后的6.0毫米样品中的一个未能保持关节闭合。结论:动态加载一段时间后,3.75毫米和6.0毫米外六角种植体的牙种植体-基台界面经历了相似的关节张开。实验室对接口的调整显着降低了基台螺丝接头的使用寿命。

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